The present invention is directed to cooling systems, coolers, and cooler system components. More particularly, the present invention is directed to coolers having internal structural components and process of adjusting internal structural components.
Commercial cooling systems can include coolers that are very large. These coolers can be as much as 200 inches in height. Vertical discharge coolers include an open region or discharge region proximal to the top of the coolers. Maintenance, repair, and cleaning of the discharge region can be difficult due to the height.
Ladders and harnesses can be used for maintenance, repair, and cleaning of the coolers. However, use of ladders and harnesses can provide limited mobility, especially within the discharge region, and can provide safety hazards.
Platform assemblies can be used for maintenance, repair, and cleaning of the coolers. However, known platform assemblies are assembled on-site, welded to the cooler structures, and extend around the outside of the cooler structures, thereby making maintenance, repair, and cleaning of the discharge region difficult and/or unsafe.
Platform assemblies have not traditionally been placed within coolers because the platform could adversely affect operation of the cooler by interfering with the discharge of air, thereby decreasing the efficiency of the cooler.
A cooler, cooler platform assembly, and a process of adjusting a cooler platform that do not suffer from one or more of the above drawbacks would be desirable in the art.
In an exemplary embodiment, a cooler includes a cooling region defined by a support wall, a first wall, a second wall, and a sloped interior section, the sloped interior section extending between the first wall and the second wall and sloping away from the support wall, a discharge region defined by the first wall, the second wall, the sloped interior section, and a vertical wall, the vertical wall being substantially parallel to the support wall, and a cooler platform positioned in the discharge region and proximal to the sloped interior section.
In another exemplary embodiment, a cooler platform assembly includes a cooler platform, a sloped interior section of a cooler proximal to a first end of the cooler platform, and a vertical wall proximal to a second end of the cooler platform.
In another exemplary embodiment, a process of adjusting a cooler platform includes providing a cooler platform assembly, the cooler platform assembly comprising the cooler platform, a sloped interior section of a cooler proximal to a first end of the cooler platform, and a vertical wall proximal to a second end of the cooler platform, and adjusting the cooler platform from a retracted position substantially parallel to the vertical wall to a deployed position substantially perpendicular to the vertical wall.
Other features and advantages of the present invention will be apparent from the following more detailed description of the preferred embodiment, taken in conjunction with the accompanying drawings which illustrate, by way of example, the principles of the invention.
Wherever possible, the same reference numbers will be used throughout the drawings to represent the same parts.
Provided is a cooler, a cooler platform assembly, and a process of adjusting a cooler platform. Embodiments of the disclosure permit simpler and/or safer maintenance, repair, and cleaning of a discharge region of a cooler, permit mobility during maintenance, repair, and cleaning of a discharge region of a cooler, permit assembly of a platform assembly in a cooler at a manufacturing site instead of an operational site, maintain efficient operational characteristics of a cooler, protect internal components of a cooler, and combinations thereof.
The cooler 100 includes a fan 102, such as a forced-draft fan or an induced-draft fan. In one embodiment, the cooler 100 includes a plurality of the fans 102. The fan 102 includes a plurality of blades 103 extending radially about a hub 105. In one embodiment, the fan 102 includes eight of the blades 103. The fan 102 includes a predetermined diameter 107, for example, about 24 inches, about 32 inches, about 36 inches, about 42 inches, about 48 inches, about 54 inches, about 60 inches, about 72 inches, about 81 inches, about 84 inches, about 93 inches, about 96 inches, about 108 inches, about 120 inches, about 132 inches, about 144 inches, about 156 inches, about 168 inches, or above any one of the predetermined diameters 107.
The fan 102 is positioned within a fan support wall 116, such as a vertical wall with an aperture for the fan 102. The fan support wall 116 extends a predetermined length 109, for example, about 28 inches, about 40 inches, about 52 inches, about 64 inches, about 88 inches, about 100 inches, about 112 inches, about 124 inches, about 136 inches, about 160 inches, about 184 inches, about 208 inches, about 232 inches, about 256 inches, about 280 inches, about 304 inches, about 328 inches, or above any of the predetermined lengths 109. The fan support wall 116 extends a predetermined height 111, for example, about 32 inches, about 41 inches, about 46 inches, about 59 inches, about 66 inches, about 80 inches, about 84 inches, about 93 inches, about 103 inches, about 104 inches, about 115 inches, about 122 inches, about 133 inches, about 136 inches, about 147 inches, about 158 inches, about 169 inches, about 172 inches, about 178 inches, about 186 inches, about 197 inches, or above any of the predetermined heights 111.
The fan 102 draws in a gaseous fluid 104, such as air, gas, natural gas, engine exhaust, combustion exhaust, turbine exhaust, any other suitable compression fluid, or combinations thereof, through a fan support structure 101 extending from the fan support wall 116. The fan 102 draws the gaseous fluid 104 into a cooling region 108 defined by the fan support wall 116, a first wall 110, a second wall 112, and a sloped interior section 114. In one embodiment, the first wall 110 and the second wall 112 are parallel to each other, perpendicular to the fan support wall 116, and extend to substantially the predetermined height 111 of the fan support wall 116. The first wall 110 and the second wall 112 each extend from the fan support wall 116 to a vertical wall 115 opposite the fan support wall 116 at a predetermined depth 113, for example, about 33 inches, about 36 inches, about 39 inches, about 44 inches, about 47 inches, about 52 inches, about 54 inches, about 58 inches, about 64 inches, about 69 inches, about 73 inches, about 76 inches, about 80 inches, about 84 inches, about 88 inches, about 90 inches, about 93 inches, about 94 inches, about 96 inches, about 100 inches, about 108 inches, about 113 inches, or above any of the predetermined widths 113.
Referring again to
The sloped interior section 114 includes any suitable features for transporting, compressing, and/or cooling the gaseous fluid 104. For example, in one embodiment, the sloped interior section 114 includes flow control features (not shown), such as adjustable shutters, fixed turning vanes, and combinations thereof. Additionally or alternatively, in one embodiment, the sloped interior section 114, the lower portion 118 opposite the fan support wall 116, and/or the discharge region 106 include features or components susceptible to damage, for example, by environmental hazards such as hail, rain, ice, airborne debris, particulate, other substances encountered during transportation or operation, or combinations thereof.
The gaseous fluid 104 is cooled then vertically expelled through the discharge region 106 of the cooler 100. The discharge region 106 is defined by the first wall 110, the second wall 112, the sloped interior section 114, and the vertical wall 115. The vertical wall 115 is substantially parallel to the fan support wall 116. The vertical wall 115, the first wall 110, the fan support wall 116, and the second wall 112 extend in a substantially rectilinear arrangement to form a cooling structure 122 having a predetermined footprint that, in one embodiment, is not expanded by including a cooler platform 124.
The cooler platform 124 is positioned in the discharge region 106 and has a first end 128 proximal to the sloped interior section 114 and a second end 130 proximal to the vertical wall 115. The cooler platform 124 is any suitable material. In one embodiment, the cooler platform 124 is a grate 136, for example, including steel or aluminum. In this embodiment, the grate 136 permits an individual to stand on the cooler platform 124, permits an individual to look below the discharge region 106 into the cooler 100, permits an individual to repair, maintain, or clean the discharge region 106 of the cooler 100, permits a solid material to be supported during transportation or other period thereby providing protection of interior components (not shown) of the cooler 100, or combinations thereof. In one embodiment, the cooler platform 124 is a solid material 138. In this embodiment, the solid material 138 permits protection of interior components (not shown) of the cooler 100, for example, during transportation or in the environment, permits an individual to stand on the cooler platform 124, permits an individual to repair, maintain, or clean the discharge region 106 of the cooler 100, or combinations thereof. In other embodiments, the cooler platform 124 provides protection otherwise provided by a hailguard, a bug screen, a lint screen, a covering for protection during transportation of the cooler 100, or combinations thereof.
Referring to
In one embodiment, the cooler platform 124 is adjustable from being a deployed cooler platform 202 that is substantially perpendicular to the vertical wall 115 to a retracted cooler platform 204 that is substantially parallel to the vertical wall 115. As will be appreciated, features associated with the cooler platform 124 in the deployed position are also present in embodiments with the cooler platform 124 being fixedly secured in a deployed position within the discharge region 106, for example, with the cooler platform 124 being fixedly secured proximal to the sloped interior section 114, fixedly secured to the sloped interior section 114, or fixedly secured while in contact with the sloped interior section 114.
The adjustability from a refracted position to a deployed position is provided by any suitable mechanism. For example, referring to
The vertical wall engagement portion 308 is secured to the vertical wall 115 (see
Referring again to
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In one embodiment, an adjustable handrail system 440 includes one or more handrail assemblies 442. Each handrail assembly 442 includes a fixed height portion 444 (for example, a bottom) and an adjustable portion 446 (for example, a top). The top elevation of the fixed height portion 444 is at a predetermined height 445, corresponding to a first position 436, for example, for transport. The predetermined height 445 is such as, equal to the height of the vertical wall 115, about equal to the height of the vertical wall 115, or above the height of the vertical wall 115, or any other suitable height elevation. In one embodiment, the predetermined height provides ease in shipping the cooler 100. The adjustable portion 446 extends the handrail assembly height by any suitable mechanism. For example, in one embodiment, the adjustable portion 446 is a separate handrail portion that attaches to the fixed height portion 444. In another embodiment, the adjustable portion 446 is rotatably attached to the fixed height portion 444. In a further embodiment, the adjustable portion 446 is telescoping, or a combination thereof. As the cooler 100 is installed in the field, the adjustable portion 446 is extended, and/or retracted, and/or attached to the fixed height portion 444 to provide at least a predetermined height 448 at a second position 449, for example, for maintenance. The predetermined height 448 of the top of the handrail system 440 above the top surface of the platform 124 is at least such height as to comply with code or safety regulations.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all embodiments falling within the scope of the appended claims.
Number | Date | Country | |
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61505459 | Jul 2011 | US |