Claims
- 1. In a rotary internal combustion engine of the so-called angle piston type having:
- a. first and second cylinder blocks rotatable about respective central longitudinal axes; said first and second cylinder blocks each having a plurality of radially spaced, substantially parallel cylinders arranged for rotation about respective said central longitudinal axes; the open ends of the respective sets of cylinders being disposed toward each other, aligned, and disposed at an angle with respect to each other so as to form a vee angle .alpha. of at least 90.degree. and less than 180.degree.;
- b. first and second sets of pistons disposed in respective said cylinders, a pair of aligned pistons in aligned said cylinders being connected together at said vee angle .alpha.; each said respective pair of connected pistons being rotatable with and, by angular displacement, reciprocally movable within and with respect to respective cylinders as said pistons are rotated in a generally elliptical path; said pair of connected pistons maintaining their same relative position of top-on-top as they rotate with their respective cylinders;
- c. first and second cylinder heads connected, respectively, with said first and second cylinder blocks and rotatable therewith;
- d. fuel-air admixing means for forming a combustible mixture comprising a combustion supporting gas and fuel;
- e. a plurality of respective inlet ports for intake of said combustible mixture within respective cylinders atop respective said pistons therewithin at least by the time said pistons and cylinders have attained a predetermined first position; said intake ports being connected with and communicating with said cylinders at said first piston;
- f. ignition means for igniting said combustible mixture at a predetermined second position; said ignition means being operatively in communication with the interior of said cylinders intermediate a second end of said cylinders and respective said pistons at said second position for firing;
- g. a plurality of respective discharge ports for discharging combustion products and waste gases, following firing and combustion of said combustible mixture, from within said cylinder and at a predetermined third position of respective said pistons and cylinders; said discharge ports being connected with and communicating with said cylinders at said third position; and
- h. power delivery means connected with said first and second cylinder blocks for delivery of power with respect thereto;
- the improvement comprising a center section compressor and bypass combination that allows rapid acceleration and deceleration without damage to elements of said center section compressor because of high vacuum and that includes:
- i. a plurality of uniformly shaped members connected with respective pistons in at least one said set of pistons in at least one said block and extending to near the connection with respective aligned pistons at said vee angle .alpha.;
- j. radially inner and outer walls and end sealing means defining an annular chamber concentrically disposed about said central longitudinal axis of said at least one block; said annular chamber varying in length from its greatest longitudinal dimension at a first location BDC, equivalent to bottom dead center position, to its smallest longitudinal dimension at a second location TDC, equivalent to a top dead center position; said inner and outer walls being disposed immediately adjacent said uniformly shaped members so as to constrain said members to traverse through said annular chamber and in fluid tight relationship therewith so as to effect compression of a fluid between adjacent said members as they move from said first location to said second location and to effect suction of said fluid into said annular chamber as they move from said second location to said first location;
- k. center section intake port for taking in said combustible mixture; said center section intake port being in fluid communication with said annular chamber upstream of said first location and with said fuel-air admixing means;
- 1. center section discharge port for discharging compressed said combustible mixture; said center section discharge port being in fluid communication with said annular chamber adjacent said second location and with said inlet ports;
- m. bypass manifold connected in fluid communication with said annular chamber adjacent a third location upstream of TDC and upstream of said first location for bypassing compressed said combustible mixture to the suction side of said compressor thereby diverting a portion of said combustible mixture from said cylinders and alleviating high vacuum and attendant damage to said walls and end sealing means of said center section compressor; and
- n. throttle means for controlling the speed and power output; said throttle means including a valve portion within said bypass maanifold and an accelerator portion drivingly operable to effect positioning of said valve portion and operable by an operator so as to position said valve portion as signalled by said operator for fine control of said engine;
- whereby said combustible mixture can be taken into said annular chamber of said center section compressor intermediate said members and be compressed as said members having said combustible mixture trapped therebetween move from said first location to said second location and more efficient combustion and less pollution is effected by said bypass manifold and throttle means; and damage to elements of said center section compressor because of said high vacuum is eliminated.
- 2. The rotary device of claim 1 wherein said uniformly shaped members are uniformly cylindrically shaped; both said first and second said sets of pistons have said uniformly cylindrically shaped members; two sets of radially inner and outer walls defining two respective annular chambers are concentrically disposed about respective central longitudinal axes of respective said cylinder blocks; said two annular chambers define a continuous chamber intermediate said cylinder blocks; said respective inner and outer walls are disposed immediately adjacent respective said cylindrically shaped members so as to constrain said members to traverse through said annular chamber and in fluid tight relationship therewith so as to allow compression of said combustible mixture between adjacent said members as they move from said first location to said second location; each annular chamber varying in longitudinal length from said first location to said second location; said center section intake port and said center section discharge port communicate, respectively, with said continuous chamber upstream of said first location and adjacent said third location; whereby said center section compressor has approximately double the compression capacity of only a single annular chamber.
- 3. The rotary device of claim 2 wherein said center section discharge port is connected with said inlet ports at least at said predetermined first position and said combustible mixture that is compressed in said center section compressor is also compressed within said cylinders.
- 4. The rotary device of claim 1 wherein said uniformly shaped members are uniformly cylindrically shaped.
- 5. The rotary device of claim 1 wherein both said first and second said sets of pistons have said uniformly cylindrically shaped members; two sets of radially inner and outer walls defining two respective annular chambers are concentrically disposed about respective central longitudinal axes of respective said cylinder blocks; said two annular chambers define a continuous chamber intermediate said cylinder blocks; said respective inner and outer walls are disposed immediately adjacent respective said cylindrically shaped members so as to constrain said members to traverse through said annular chamber and in fluid tight relationship therewith so as to allow compression of said combustible mixture between adjacent said members as they move from said first location to said second location; each annular chamber varying in longitudinal length from said first location to said second location; said center section intake port and said center section discharge port communicate, respectively, with said continuous chamber upstream of said first location and adjacent said third location; said inner and outer walls including a coating that is softer and more resilient than said members for better sealing and less leakage therebetween; whereby said center section compressor has approximately double the compressor capacity of only a single annular chamber type compressor.
- 6. The internal combustion engine of claim 1 wherein a mixture passageway comprising a central passageway in each said cylinder block connects said inlet ports with said center section discharge port.
- 7. The internal combustion engine of claim 1 wherein said inlet ports are located radially outwardly from said central passageway of the center line of said cylinders; and each said terminal end comprises a section of passageway that is inclined at a critical angle .theta. within the range of 30.degree.-60.degree. with respect to a plane that is perpendicular to the longitudinal center line of said cylinder and at a critical angle .beta. within the range of 15.degree.-90.degree. with respect to the central planes extending from said central passageway through the respective center lines of respective said cylinders.
- 8. The internal combustion engine of claim 2 wherein each said discharge port is located within a 180.degree. sector that is closest to said central passageway.
- 9. In a rotary internal combustion engine of the so-called angle piston type having:
- a. first and second cylinder blocks rotatable about respective central longitudinal axes; said first and second cylinder blocks each having a plurality of radially spaced, substantially parallel cylinders arranged for rotation about respective said central longitudinal axes; the open ends of the respective sets of cylinders being disposed toward each other, aligned, and disposed at an angle with respect to each other so as to form a vee angle .alpha. of at least 90.degree. and less than 180.degree.;
- b. first and second sets of pistons disposed in respective said cylinders, a pair of aligned pistons in aligned said cylinders being connected together at said vee angle .alpha.; each said respective pair of connected pistons being rotatable with and, by angular displacement, reciprocally movable within and with respect to respective cylinders as said pistons are rotated in a generally elliptical path; said pair of connected pistons maintaining their same relative position of top-on-top as they rotate with their respective cylinders;
- c. first and second cylinder heads connected, respectively, with said first and second cylinder blocks and rotatable therewith;
- d. a plurality of respective inlet ports for intake of at least a combustion supporting gas within respective cylinders atop respective said pistons therewithin at least by the time said pistons and cylinders have attained a predetermined first position; said intake ports being connected with and communicating with said cylinders at said first position;
- e. fuel-air admixing means for forming a combustible mixture comprising said combustion supporting gas and a fuel;
- f. ignition means for igniting said combustible mixture at a predetermined second position; said ignition means being operatively in communication with the interior of said cylinders intermediate a second end of said cylinders and respective said pistons at said second position for firing;
- g. a plurality of respective discharge ports for discharging combustion products and waste gases, following firing and combustion of said combustible mixture, from within said cylinder and at a predetermined third position of respective said pistons and cylinders; said discharge ports being connected with and communicating with said cylinders at said third position; and
- h. power delivery means connected with said first and second cylinder blocks for delivery of power with respect thereto;
- the improvement comprising a center section compressor and bypass combination that allows rapid acceleration and deceleration without damage to elements of said center section compressor because of high vacuum and that includes:
- i. a plurality of uniformly shaped members connected with respective pistons in at least one said set of pistons in at least one said block and extending to near the connection with respective aligned pistons at said vee angle .alpha.;
- j. radially inner and outer walls and end sealing means defining an annular chamber concentrically disposed about said central longitudinal axis of said at least one block; said annular chamber varying in length from its greatest longitudinal dimension at a first location BDC, equivalent to bottom dead center position, to its smallest longitudinal dimension at a second location TDC, equivalent to a top dead center position; said inner and outer walls being disposed immediately adjacent said uniformly shaped members so as to constraim said members to traverse through said annular chamber and in fluid tight relationship therewith so as to effect compression of a fluid between adjacent said members as they move from said first location to said second location and to effect suction of said fluid into said annular chamber as they move from said second location to said first location;
- k. center section intake port for taking in said at least a combustion supporting gas; said center section intake port being in fluid communication with said annular chamber upstream of said first location;
- l. center section discharge port for discharging compressed said at least a combustion supporting gas; said center section discharge port being in fluid communication with said annular chamber adjacent said second location and with said inlet ports;
- m. bypass manifold connected in fluid communication with said annular chamber adjacent a third location upstream of TDC and upstream of said first location for bypassing compressed said at least a combustion supporting gas to the suction side of said compressor and thereby diverting a portion of said at least a combustion supporting gas from said cylinders and alleviating high vacuum and attendant damage to said walls and end sealing means of said center section compressor; and
- n. throttle means for controlling the speed and power output; said throttle means including a valve portion within said bypass manifold and an accelerator portion drivingly operable to effect positioning of said valve portion and operable by an operator so as to position said valve portion as signalled by said operator for fine control of said engine;
- whereby said combustion supporting gas can be taken into said annular chamber of said center section compressor intermediate said members and be compressed as said members having said combustible mixture trapped therebetween move from said first location to said second location for more efficient combustion of a fuel and less pollution is effected by said bypass manifold and throttle means; and damage to elements of said center section compressor because of said high vacuum is eliminated.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of my co-pending patent applications Ser. No. 469,216, filed May 13, 1974, now U.S. Pat. No. 3,902,468, and entitled "Center Section Compressor" and Ser. No. 482,154, filed June 24, 1974, now U.S. Pat. No. 3,905,338, and entitled "Vee Engine With Centrifugally Assisted Scavenging".
US Referenced Citations (6)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
469216 |
May 1974 |
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