Claims
- 1. An expansion valve for generating a heat transfer fluid wherein a substantial amount of liquid is separate and apart from a substantial amount of vapor, the expansion valve comprising:
an inlet providing fluid ingress for a heat transfer fluid to a common chamber for expansion of the heat transfer fluid, the common chamber having a first portion adjacent to a second portion, wherein the first portion comprises the inlet and an outlet and the second portion comprises a back wall opposed to the outlet; and an outlet providing fluid egress for the heat transfer fluid from the common chamber.
- 2. The expansion valve of claim 1 wherein the first portion has a length no more than about 75% of the length of the common chamber.
- 3. A vapor compression system comprising:
a compressor for increasing the pressure and temperature of a heat transfer fluid; a condenser for liquefying the heat transfer fluid; an evaporator for transferring heat from ambient surroundings to the heat transfer fluid, the evaporator comprising a first evaporative line, an evaporator coil, and a second evaporative line; a multifunctional valve having an inlet and an outlet for expanding the heat transfer fluid, the multifunctional valve connected to the evaporator; a discharge line connecting the compressor to the condenser; a liquid line connecting the condenser to the inlet of the recovery valve; and a suction line connecting the evaporator to the compressor.
- 4. The vapor compression system of claim 3, wherein the evaporator further comprises a portion of the multifunctional valve.
- 5. The vapor compression system of claim 4, wherein the multifunctional valve is adjacent to the evaporator.
- 6. A vapor compression system for transferring heat from an ambient atmosphere by flowing a heat transfer fluid comprising:
a compressor; a condenser; a discharge line coupling the compressor to the condenser; an evaporator; a suction line coupling the evaporator to the compressor; a multifunctional valve; a liquid line coupling the condenser to the multifunctional valve; and a saturated vapor line coupling the multifunctional valve to the evaporator, wherein the multifunctional valve is positioned in close proximity to the condenser, the saturated vapor line is of relatively great length in relation to the liquid line, the saturated vapor line is characterized by a diameter and by a length, and the diameter and the length is sufficient to substantially convert the heat transfer fluid into a saturated vapor prior to delivery to the evaporator.
Parent Case Info
[0001] This application is a continuation of pending International Application Number PCT/US00/00663, filed Jan. 11, 2001, entitled “Vapor Compression System and Method”, the disclosure of which is hereby incorporated by reference. International Application Number PCT/US00/00663 is a continuation-in-part of the following applications: pending U.S. patent application Ser. No. 09/228,696, filed Jan. 12, 1999, entitled “Vapor Compression System and Method”; issued U.S. Pat. No. 6,185,958, Ser. No. 09/431,830, filed Nov. 2, 1999, entitled “Vapor Compression System and Method”; and pending U.S. patent application Ser. No. 09/443,071, filed Nov. 18, 1999 entitled “Vapor Compression System and Method”, the disclosures of which are hereby incorporated by reference.
Continuations (1)
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Continuation in Parts (2)
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