Claims
- 1. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway being in fluid communication with said first internal passageway at a turn through an opening formed in at least on of said end wall and said at least one first sidewall, said second internal passageway being disposed at an angle to said first internal passageway, said second internal passageway including a bellmouth entrance adjacent said opening;
- means disposed adjacent said turn for preventing significant particle-to-particle impacts and particle to wall impacts as the entrained particle flow flows from said first internal passageway to said second internal passageway, said means comprising a diffusion pocket disposed adjacent said turn
- whereby the direction of flow of said entrained particle flow is turned in said turn without significant reduction in size and mass of said entrained particles and without significant erosion of said entrained flow turning device adjacent said turn.
- 2. The entrained particle flow turning device of claim 1, wherein said means comprise means for slowing the speed of at least a portion of the flow of entrained particles adjacent said turn.
- 3. The entrained particle flow turning device of claim 1, wherein said diffusion pocket is disposed downstream from said turn and is generally aligned with said first internal passageway.
- 4. The entrained particle flow turning device of claim 3, wherein said diffusion pocket comprises an extension of said first internal flow passageway beyond said turn.
- 5. The entrained particle flow turning device of claim 1, wherein said entrance has a toroidal profile.
- 6. The entrained particle flow turning device of claim 1, wherein said entrance has an elliptical profile.
- 7. The entrained particle flow turning device of claim 1, wherein said entrance is includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 8. The entrained particle flow turning device of claim 1, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 9. The entrained particle flow turning device of claim 1, wherein said end wall extends in said downstream direction beyond said opening.
- 10. The entrained particle flow turning device of claim 1, wherein said first internal passageway is configured to slow said fluid flow so as to slow the entrained particles.
- 11. The entrained particle flow turning device of claim 1, wherein said first internal passageway is configured to decelerate then accelerate said fluid flow.
- 12. The entrained particle flow turning device of claim 11, wherein said first internal passageway includes a diverging portion.
- 13. The entrained particle flow turning device of claim 11, wherein said first internal passageway includes a converging portion.
- 14. The entrained particle flow turning device of claim 1, wherein said first internal passageway includes an offset between said inlet and said turn.
- 15. The entrained particle flow turning device of claim 1, wherein said end well is curved.
- 16. The entrained particle flow turning device of claim 1, wherein said first internal passageway has a normal cross-sectional shape at at least one location which includes a pair of arcuate sidewalls separated by a pair of spaced apart, substantially flat sidewalls.
- 17. The entrained particle flow turning device of claim 16, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said obround nomrmal cross-sectional shape includes arcuate ends having respective radii approximately equal to the radius of said circle.
- 18. The entrained particle flow turning device of claim 16, wherein at least a portion of said opening is formed in one of said flat sidewalls.
- 19. The entrained particle flow turning device of claim 16, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 20. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall;
- said first internal passageway including a diverging portion located between said inlet and said opening, said first internal passageway being configured to produce, when said entrained particle flow flows therethrough at predetermined operating conditions, a thin boundary layer along a portion of said at least one sidewall of said first internal passageway adjacent said opening.
- 21. The entrained particle flow turning device of claim 20, wherein said first internal passageway includes a converging portion located between said diverging portion and said opening.
- 22. The entrained particle flow turning device of claim 20, wherein said first internal passageway includes a converging portion located between said inlet and said opening.
- 23. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall;
- said second internal passageway including an entrance adjacent said opening, said entrance being a bellmouth entrance.
- 24. The entrained particle flow turning device of claim 23, wherein said first internal passageway is configured to slow said fluid flow so as to slow the entrained particles.
- 25. The entrained particle flow turning device of claim 24, wherein said first internal passageway is configured to decelerate then accelerate said fluid flow.
- 26. The entrained particle flow turning device of claim 23, wherein said first internal passageway has a normal cross-sectional area which changes in the downstream direction.
- 27. The entrained particle flow turning device of claim 24, wherein said first internal passageway has a normal cross-sectional area which increases then decreases in the downstream direction.
- 28. The entrained particle flow turning device of claim 23, wherein said first internal passageway includes an offset between said inlet and said opening.
- 29. The entrained particle flow turning device of claim 23, wherein said entrance has a toroidal profile.
- 30. The entrained particle flow turning device of claim 23, wherein said entrance has an elliptical profile.
- 31. The entrained particle flow turning device of claim 23, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 32. The entrained particle flow turning device of claim 23, wherein said entrance includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 33. The entrained particle flow turning device of claim 23, wherein said end wall is curved.
- 34. The entrained particle flow turning device of claim 33, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said pair of arcuate sidewalls have respective radii approximately equal to the radius of said circle.
- 35. The entrained particle flow turning device of claim 33, wherein at least a portion of said opening is formed in one of said flat sidewalls.
- 36. The entrained particle flow turning device of claim 33, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 37. The entrained particle flow turning device of claim 23, wherein at least a portion of said first internal passageway has a normal cross-sectional shape which includes a pair of arcuate sidewalls separated by a pair of spaced apart, substantially flat sidewalls.
- 38. The entrained particle flow turning device of claim 23, wherein a portion of said first internal flow passageway extends downstream of said opening.
- 39. A method of changing the direction of a fluid flow containing entrained particles, said method comprising the steps of:
- (a) directing said fluid flow through a first internal passageway;
- (b) turning said fluid flow into a second internal passageway at a turn, said first internal passageway being in fluid communication with said second internal passageway;
- (c) slowing the speed of a portion of said particles at said turn such that significant particle-to-particle contacts and particle-to-wall contacts are prevented
- whereby the direction of flow of said entrained particle flow is turned in said turn without significant destruction to said entrained particles and said first and second internal passageways and said turn.
- 40. The method of claim 39, wherein the speed of said portion of said particles is slowed in step (c) to be within an abrupt turn band.
- 41. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall, said first internal passageway having a normal cross-sectional area which changes in the downstream direction; and
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall.
- 42. The entrained particle flow turning device of claim 41, wherein said first internal passageway is configured to slow said fluid flow so as to slow the entrained particles.
- 43. The entrained particle flow turning device of claim 41, wherein said first internal passageway is configured to decelerate then accelerate said fluid flow.
- 44. The entrained particle flow turning device of claim 41, wherein said first internal passageway has a normal cross-sectional area which increases then decreases in the downstream direction.
- 45. The entrained particle flow turning device of claim 41, wherein said first internal passageway includes an offset between said inlet and said opening.
- 46. The entrained particle flow turning device of claim 41, wherein said second internal passageway includes an entrance adjacent said opening, said entrance being arcuate.
- 47. The entrained particle flow turning device of claim 41, wherein said second internal passageway includes an entrance adjacent said opening, said entrance having a toroidal profile.
- 48. The entrained particle flow turning device of claim 41, wherein said entrance has an elliptical profile.
- 49. The entrained particle flow turning device of claim 41, wherein said entrance has a rectangular profile.
- 50. The entrained particle flow turning device of claim 41, wherein said entrance includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 51. The entrained particle flow turning device of claim 41, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 52. The entrained particle flow turning device of claim 41, wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
- 53. The entrained particle flow turning device of claim 41, wherein at least a portion of said first internal passageway has a normal cross-sectional shape which includes a pair of arcuate sidewalls separated by a pair of spaced apart, substantially flat sidewalls.
- 54. The entrained particle flow turning device of claim 53, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said pair of arcuate sidewalls have respective radii approximately equal to the radius of said circle.
- 55. The entrained particle flow turning device of claim 54, wherein at least a portion of said opening is formed in one of said flat sidewalls.
- 56. The entrained particle flow turning device of claim 54, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 57. The entrained particle flow turning device of claim 41, wherein a portion of said first internal flow passageway extends downstream of said opening.
- 58. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall, said first internal passageway being configured to slow said fluid flow so as to slow the entrained particles and to decelerate then accelerate said fluid flow; and
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall.
- 59. The entrained particle flow turning device of claim 58, wherein said first internal passageway has a normal cross-sectional area which increases then decreases in the downstream direction.
- 60. The entrained particle flow turning device of claim 58, wherein said first internal passageway includes an offset between said inlet and said opening.
- 61. The entrained particle flow turning device of claim 58, wherein said second internal passageway includes an entrance adjacent said opening, said entrance being arcuate.
- 62. The entrained particle flow turning device of claim 58, wherein said second internal passageway includes an entrance adjacent said opening, said entrance having a toroidal profile.
- 63. The entrained particle flow turning device of claim 58, wherein said entrance has an elliptical profile.
- 64. The entrained particle flow turning device of claim 58, wherein said entrance has a rectangular profile.
- 65. The entrained particle flow turning device of claim 58, wherein said entrance includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 66. The entrained particle flow turning device of claim 58, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 67. The entrained particle flow turning device of claim 58, wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
- 68. The entrained particle flow turning device of claim 58, wherein at least a portion of said first internal passageway has a normal cross-sectional shape which includes a pair of arcuate sidewalls separated by a pair of spaced apart, substantially flat sidewalls.
- 69. The entrained particle flow turning device of claim 68, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said pair of arcuate sidewalls have respective radii approximately equal to the radius of said circle.
- 70. The entrained particle flow turning device of claim 68, wherein at least a portion of said opening is formed in one of said flat sidewalls.
- 71. The entrained particle flow turning device of claim 68, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 72. The entrained particle flow turning device of claim 58, wherein a portion of said first internal flow passageway extends downstream of said opening.
- 73. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall, said first internal passageway having a normal cross-sectional area which increases then decreases in the downstream direction; and
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall.
- 74. The entrained particle flow turning device of claim 73, wherein said first internal passageway is configured to slow said entrained particles prior to said entrained particle reaching said opening.
- 75. The entrained particle flow turning device of claim 74, wherein said first internal passageway includes an offset between said inlet and said opening.
- 76. The entrained particle flow turning device of claim 74, wherein said second internal passageway includes an entrance adjacent said opening, said entrance being arcuate.
- 77. The entrained particle flow turning device of claim 74, wherein said second internal passageway includes an entrance adjacent said opening, said entrance having a toroidal profile.
- 78. The entrained particle flow turning device of claim 74, wherein said entrance has an elliptical profile.
- 79. The entrained particle flow turning device of claim 74, wherein said entrance has a rectangular profile.
- 80. The entrained particle flow turning device of claim 74, wherein said entrance includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 81. The entrained particle flow turning device of claim 74, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 82. The entrained particle flow turning device of claim 74, wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
- 83. The entrained particle flow turning device of claim 74, wherein at least a portion of said first internal passageway has a normal cross-sectional shape which includes a pair of arcuate sidewalls separated by a pair of spaced apart, substantially flat sidewalls.
- 84. The entrained particle flow turning device of claim 83, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said pair of arcuate sidewalls have respective radii approximately equal to the radius of said circle.
- 85. The entrained particle flow turning device of claim 83, wherein at least a portion of said opening is formed one of said flat sidewalls.
- 86. The entrained particle flow turning device of claim 83, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 87. The entrained particle flow turning device of claim 74, wherein a portion of said first internal flow passageway extends downstream of said opening.
- 88. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlets at least a portion of said first internal passageway being defined by at least one first generally flat sidewall and an end wall; and
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in said at least one first generally flat side wall.
- 89. The entrained particle flow turning device of claim 88, wherein said first internal passageway is configured to slow said fluid flow so as to slow the entrained particles.
- 90. The entrained particle flow turning device of claim 88, wherein said first internal passageway includes an offset between said inlet and said opening.
- 91. The entrained particle flow turning device of claim 88, wherein said second internal passageway includes an entrance adjacent said opening, said entrance being arcuate.
- 92. The entrained particle flow turning device of claim 88, wherein said second internal passageway includes an entrance adjacent said opening, said entrance having a toroidal profile.
- 93. The entrained particle flow turning device of claim 88, wherein said entrance has an elliptical profile.
- 94. The entrained particle flow turning device of claim 88, wherein said entrance has a rectangular profile.
- 95. The entrained particle flow turning device of claim 88, wherein said entrance includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 96. The entrained particle flow turning device of claim 88, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 97. The entrained particle flow turning device of claim 88, wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
- 98. The entrained particle flow turning device of claim 88, wherein said at least a portion of said first internal passageway which is defined by said first generally flat sidewall has a normal cross-sectional shape which includes a pair of arcuate sidewalls separated by said at least one first generally flat sidewall and a second generally flat sidewall spaced apart from said first generally flat sidewall.
- 99. The entrained particle flow turning device of claim 98, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said pair of arcuate sidewalls have respective radii approximately equal to the radius of said circle.
- 100. The entrained particle flow turning device of claim 98, wherein at least a portion of said opening is formed in said end wall.
- 101. The entrained particle flow turning device of claim 98, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 102. The entrained particle flow turning device of claim 88, wherein a portion of said first internal flow passageway extends downstream of said opening.
- 103. The entrained particle flow turning device of claim 88, wherein a portion of said first generally flat sidewall extends downstream of said opening.
- 104. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall, at least a portion of said first internal passageway having a normal cross-sectional shape which includes a pair of arcuate sidewalls separated by a pair of spaced apart, generally flat sidewalls; and
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall;
- wherein at least a portion of one of said pair of spaced apart, generally flat sidewalls comprises at least a portion of said at least one first sidewall.
- 105. The entrained particle flow turning device of claim 104, wherein said first internal passageway is configured to slow said fluid flow so as to slow the entrained particles.
- 106. The entrained particle flow turning device of claim 104, wherein said first internal passageway includes an offset between said inlet and said opening.
- 107. The entrained particle flow turning device of claim 104, wherein said second internal passageway includes an entrance adjacent said opening, said entrance being arcuate.
- 108. The entrained particle flow turning device of claim 104, wherein said second internal passageway includes an entrance adjacent said opening, said entrance having a toroidal profile.
- 109. The entrained particle flow turning device of claim 104, wherein said entrance has an elliptical profile.
- 110. The entrained particle flow turning device of claim 104, wherein said entrance has a rectangular profile.
- 111. The entrained particle flow turning device of claim 104, wherein said entrance includes an upstream portion, and wherein said entrance is configured to produce a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the magnitude of the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance whereby slower streamlines of said fluid flow are turned by being drawn into said second flow passageway through said entrance.
- 112. The entrained particle flow turning device of claim 104, wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 113. The entrained particle flow turning device of claim 104, wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
- 114. The entrained particle flow turning device of claim 104, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said pair of arcuate sidewalls have respective radii approximately equal to the radius of said circle.
- 115. The entrained particle flow turning device of claim 104, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 116. The entrained particle flow turning device of claim 104, wherein a portion of said first internal flow passageway extends downstream of said opening.
- 117. The entrained particle flow turning device of claim 104, wherein a portion of said first generally flat sidewall extends downstream of said opening.
- 118. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway having a normal cross-sectional shape at at least one location which includes a pair of arcuate sidewalls separated by a pair of spaced apart, generally flat sidewalls;
- a second internal passageway extending in an upstream direction from said outlet;
- said second internal passageway being in fluid communication with said first internal passageway at a turn, said second internal passageway being disposed at an angle to said first internal passageway;
- means disposed adjacent said turn for preventing significant particle-to-particle impacts and particle to wall impacts as the entrained particle flow flows from said first internal passageway to said second internal passageway
- whereby the direction of flow of said entrained particle flow is turned in said turn without significant reduction in size and mass of said entrained particles and without significant erosion of said entrained flow turning device adjacent said turn.
- 119. The entrained particle flow turning device of claim 118, wherein said means comprise a diffusion pocket disposed adjacent said turn.
- 120. The entrained particle flow turning device of claim 118, wherein said inlet has a normal cross-sectional shape which is generally a circle, and said arcuate ends have respective radii approximately equal to the radius of said circle.
- 121. The entrained particle flow turning device of claim 118, wherein at least a portion of said opening is formed in one of said flat sidewalls.
- 122. The entrained particle flow turning device of claim 118, wherein said opening is formed approximately equidistant from said arcuate sidewalls.
- 123. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall;
- said first internal passageway including a converging portion located between said inlet and said opening; said first internal passageway being configured to produce, when said entrained particle flow flows therethrough at predetermined operating conditions, a thin boundary layer along a portion of said at least one sidewall of said first internal passageway adjacent said opening.
- 124. The entrained particle flow turning device of claim 123, wherein said first internal passageway has a normal cross-sectional area which increases then decreases in the downstream direction.
- 125. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall, said first internal passageway being configured to decelerate said fluid flow so as to slow the entrained particles;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall.
- 126. The entrained particle flow turning device of claim 125 wherein said first internal passageway includes a diverging portion.
- 127. The entrained particle flow turning device of claim 125, wherein said first internal passageway is configured to decelerate then accelerate said fluid flow.
- 128. The entrained particle flow turning device of claim 125, wherein said first internal passageway includes a diverging portion and a converging portion.
- 129. The entrained particle flow turning device of claim 128, wherein said opening is a bellmouth opening.
- 130. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and an end wall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, at least a portion of said opening being formed in at least one of said end wall and said at least one first side wall;
- said first internal passageway including a diverging-converging portion located between said inlet and said opening.
- 131. The entrained particle flow turning device of claim 130, wherein at least a portion of said opening is formed in said end wall and a portion of said opening is formed in said first sidewall.
- 132. The entrained particle flow turning device of claim 130, wherein said opening is a bellmouth opening.
- 133. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and terminating in a blind end;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, said opening being formed in said at least one first side wall.
- 134. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and terminating in a blind end;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, said opening being formed in said at least one first side wall, said second passageway including a bellmouth entrance adjacent said opening.
- 135. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet:
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and terminating in a blind end;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, said opening being formed in said at least one first side wall;
- said first internal passageway including a diverging-converging portion located between said inlet and said opening.
- 136. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow turning device comprising:
- an inlet;
- an outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall and terminating in a blind end;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, said opening being formed in said at least one first side wall;
- said first internal passageway including a normal cross-sectional area immediately upstream of said opening, second internal passageway including a normal cross-sectional area downstream of said opening, said normal cross-sectional area of said second internal passageway being smaller than said normal cross-sectional area of said first internal passageway.
- 137. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles, said entrained particle flow for use with a converging-diverging flow passageway downstream of said entrained particle flow turning device, said entrained particle flow turning device comprising:
- an inlet;
- an outlet, the converging-diverging flow passageway being disposed downstream of said outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, said opening being formed in said at least one first side wall;
- said first internal passageway, said second internal passageway and said opening being configured to create a lower pressure in said second internal passageway such that said entrained particles are drawn into said second internal passageway from said first internal passageway.
- 138. An entrained particle flow turning device to change the direction of a fluid flow containing entrained particles in combination with a converging-diverging nozzle located downstream of said entrained particle flow turning device, said entrained particle flow turning device comprising:
- an inlet;
- an outlet, said converging-diverging nozzle being disposed downstream of said outlet;
- a first internal passageway extending in a downstream direction from said inlet, said first internal passageway being defined by at least one first sidewall;
- a second internal passageway extending in an upstream direction from said outlet, said second internal passageway being defined by at least one second sidewall;
- said second internal passageway communicating at an angle with said first internal passageway through an opening, said opening being formed in said at least one first side wall;
- said first internal passageway, said second internal passageway and said opening being configured to create a lower pressure in said second internal passageway such that said entrained particles are drawn into said second internal passageway from said first internal passageway.
- 139. A method of changing the direction of a fluid flow containing entrained particles, said method comprising the steps of:
- (a) directing said fluid flow into a first internal passageway;
- (b) decelerating then accelerating said fluid flow in said first internal passageway;
- (c) turning said fluid flow into a second internal passageway at a turn, said first internal passageway being in fluid communication with said second internal passageway;
- (d) slowing the speed of a portion of said particles at said turn such that significant particle-to-particle contacts and particle-to-wall contacts are prevented whereby the direction of flow of said entrained particle flow is turned in said turn without significant destruction to said entrained particles and said first and second internal passageways and said turn.
- 140. A method of changing the direction of a fluid flow containing entrained particles, said method comprising the steps of:
- (a) directing said fluid flow into a first internal passageway;
- (b) turning said fluid flow into a second internal passageway at a turn, said first internal passageway being in fluid communication with said second internal passageway, said turn including an entrance, said entrance having an upstream portion;
- (c) creating a velocity profile perpendicular to said upstream portion in which the speed of the particles decrease from a maximum speed near said upstream portion to a minimum speed distal to said up stream portion.
- 141. The method of claim 140 wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 142. The method of claim 140 wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
- 143. A method of changing the direction of a fluid flow containing entrained particles, said method comprising the steps of:
- (a) directing said fluid flow into a first internal passageway;
- (b) turning said fluid flow into a second internal passageway at a turn, said first internal passageway being in fluid communication with said second internal passageway, said turn including an entrance, said entrance having an upstream portion;
- (c) creating a non-symmetrical fluid velocity distribution normal to said fluid flow wherein the velocity of streamlines of said fluid flow are greatest adjacent said upstream portion of said entrance.
- 144. The method of claim 143 wherein said entrance is configured not to produce separated flow adjacent said entrance.
- 145. The method of claim 143 wherein said first passageway, said entrance and said second passageway are configured not to produce vortical flow adjacent said entrance.
Parent Case Info
This is a continuation of U.S. Ser. No. 08/933,019, filed Sep. 18, 1997, incorporated by reference, now abandoned, which was a continuation of U.S. Ser. No. 08/656,373, filed May 31, 1996, now abandoned.
Non-Patent Literature Citations (1)
Entry |
Titan Pressure Blast Cleaning Equipment Catalog 96, p. 7 Drawing. |
Continuations (2)
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Number |
Date |
Country |
Parent |
933019 |
Sep 1997 |
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Parent |
656373 |
May 1996 |
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