A heat exchanger door system includes a heat exchanger and a first rotatable member, proximate to the heat exchanger, that rotates about an axis of rotation. The system includes a first door member rolled around the rotatable member and movable from a rolled position to an unrolled position in which
A heat exchanger door system includes a heat exchanger and a first rotatable member, proximate to the heat exchanger, that rotates about an axis of rotation. The system includes a first door member rolled around the rotatable member and movable from a rolled position to an unrolled position in which the first door member covers more of the heat exchanger than when the door member is in the rolled position.
대표청구항▼
1. An evaporator door system comprising: a first refrigeration-driven evaporator that cools an environment using a compressed refrigerant;a second refrigeration-driven evaporator that cools the environment using the compressed refrigerant;a rotatable member, proximate to each of the first and second
1. An evaporator door system comprising: a first refrigeration-driven evaporator that cools an environment using a compressed refrigerant;a second refrigeration-driven evaporator that cools the environment using the compressed refrigerant;a rotatable member, proximate to each of the first and second evaporators, respectively, that rotates about an axis of rotation;a first door member rolled around the rotatable member and movable from a rolled position to an unrolled position in which the first door member covers more of the first evaporator than when the first door member is in the rolled position;a second door member rolled around the respective rotatable member and movable from the rolled position to the unrolled position in which the second door member covers more of the second evaporator than when the second door member is in the rolled position;a programmable controller including programmed instructions, which when executed, the controller controls the evaporator door system based on a predetermined schedule such that the first door member is in the unrolled position during a defrost operation performed on the first evaporator and the second door member is in the rolled position during the defrost operation performed on the first evaporator anda first scraper disposed in contact with a first face of the first door member. 2. The evaporator door system of claim 1, further comprising a track disposed along at least one side of the first evaporator and through which track the first door member passes when the first door member is moved from the rolled position to the unrolled position. 3. The evaporator door system of claim 2, further comprising a rib disposed on the first door member between opposite ends of the first door member and extending along a horizontal width of the first door member, wherein one of the opposite ends of the first door member is connected to the rotatable member. 4. The evaporator door system of claim 3, wherein the rib extends in a direction parallel to the axis of rotation. 5. The evaporator door system of claim 1, further comprising a motor coupled to the rotatable member, the motor rotating the rotatable member upon receipt of a signal. 6. The evaporator door system of claim 5, further comprising a sensor that detects the first door member when the first door member has moved to the unrolled position. 7. The evaporator door system of claim 6, wherein the controller is connected to the sensor and controls a direction of rotation of the motor. 8. The evaporator door system of claim 1, further comprising a weight attached to one end of the first door member. 9. The evaporator door system of claim 8, wherein the weight is a metal bar extending substantially across one edge of the first door member. 10. The evaporator door system of claim 9, further comprising a portion of the first door member wrapped around the metal bar. 11. The evaporator door system of claim 1, further comprising a second scraper disposed on a second face of the first door member opposite the first face. 12. The evaporator door system of claim 11, wherein the first and second scrapers are offset toward each other such that the first door member forms an S shape around the first and second scrapers. 13. The evaporator door system of claim 1, wherein the first scraper comprises ultra-high molecular weight polyethylene. 14. The evaporator door system of claim 1, further comprising a coating disposed on the first door member. 15. The evaporator door system of claim 14, wherein the coating is polyvinylchloride. 16. The evaporator door system of claim 1, further comprising a hood disposed around the first door member and the rotatable member. 17. The evaporator door system of claim 16, wherein the hood includes a pitched surface so as to drain any moisture in a direction away from the first door member. 18. The evaporator door system of claim 17, wherein the hood comprises a shell and a layer of insulation. 19. The evaporator door system of claim 1, further comprising a duct connected to an evacuation device and configured to evacuate an area between the first door member and the first evaporator during the defrost operation. 20. The evaporator door system of claim 1, wherein the first door member comprises a woven fabric. 21. The evaporator door system of claim 20, wherein the woven fabric is nylon. 22. The evaporator door system of claim 1, further comprising a third door member disposed on a side of the evaporator opposite the first door member such that the first evaporator is disposed between the first and third door members when both of the first and third door members are in an unrolled state. 23. A door system for partially isolating an evaporator, the door system comprising: a first refrigeration-driven evaporator that cools an environment using a compressed refrigerant;a second refrigeration-driven evaporator that cools the environment using the compressed refrigerant;a first rotatable member, configured to be attached proximate to each of the first and second evaporators, respectively, that rotates about an axis of rotation;a first door member rolled around the first rotatable member and movable from a rolled position to an unrolled position in which the first door member extends farther away from the first rotatable member than when the door member is in the rolled position;a second door member rolled around a second rotatable member and movable from the rolled position to the unrolled position in which the second door member covers more of the second evaporator than when the second door member is in the rolled position;a track configured to guide the first door member as the first door member moves from the rolled position to the unrolled position;a programmable controller including programmed instructions, which when executed, the controller controls the evaporator door system based on a predetermined schedule such that the first door member is in the unrolled position during a defrost operation performed on the first evaporator and the second door member is in the rolled position during the defrost operation performed on the first evaporator anda first scraper disposed in contact with a first face of the first door member. 24. The door system according to claim 23, further comprising a second door member rolled around a second rotatable member disposed in parallel with the first rotatable member.
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이 특허에 인용된 특허 (12)
Middleton Richard T. (Northfield MN), Airflow and defrosting system for refrigeration systems and apparatus.
Leivenzon Simon (Caulfield AUX) Leivenzon Steven (Caulfield AUX), Mechanism for stopping the drive or reversing the drive of motors of roller shutter doors.
Sirianni Richard (90 San Juan Ave. Albertson NY 11507) Minutillo Thomas (140 Wentworth Ave. Albertson NY 11507) Yaworski John (59 Peninsula Blvd. Valley Stream NY 11581) Maurer Robert (30 Forset Ave., Shower door protector shade.
Scotchmer Stephen R. (St. Catharines CA) MacGregor Robert D. (Hazeldean CA), Substantially closed fabric made by compressive redistribution of the filaments of at least some yarns of an open mesh f.
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