US2005183437A1PendingUtilityA1
Network cooling system II
Priority: Feb 20, 2004Filed: Feb 15, 2005Published: Aug 25, 2005
Est. expiryFeb 20, 2024(expired)· nominal 20-yr term from priority
Inventors:Matteo B. Gravina
H05K 7/20809F25B 1/00
37
PatentIndex Score
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Claims
Abstract
A cooling device with three interdependent chambers. The middle chamber comprises the heart of a control gas use to transfer heat between two opposite side chambers. An opposing chamber with two openings where passing air is cooled by an evaporator whereby looses its heat content. An opposing chamber with two openings where passing air receives heat energy whereby filter heat is extracted by connected vents. The cooling device repeats this cycle.
Claims
exact text as granted — not AI-modified1 . A heat exchange system comprising:
A center chamber comprising of a compressor located in the rear middle section and arranged between two chambers whereby working as a conductor of heat of one chamber and passing it along to another chamber. A power supply located in the upper middle section whereas electrical wiring is sent to an electrical distributor residing in close proximity. An electrical distributor located in the upper middle section residing in proximity to a power supply whereas electrical wiring is distributed throughout the heat exchange system. A capillary tube located in the middle front of the center chamber whereas it is arrange as a medium for transferring refrigerant; and a meter back panel located at the front end of the chamber use as an indicator of temperature;
2 . A heat exchange system according to claim 1 , wherein compressor uses a refrigerant as medium for transferring heat between two opposing chambers;
3 . A heat exchange system according to claim 2 , wherein opposing chamber transmits heat and expels it by means of refrigerant in said condenser;
4 . A heat exchange system according to claim 1 , wherein power supply transfers electrical energy to electrical distributor;
5 . A heat exchange system according to claim 1 , wherein electrical distributor supplies electrical energy to all electrical components;
6 . A heat exchange system according to claim 1 , wherein capillary tube functions as a valve;
7 . A heat exchange system comprising:
A three chamber heat exchange system whereby the right side chamber is comprised of two level conduits. A right side chamber with upper level conduit allowing flow of air by the use of two fans use to pull air inside. A right side chamber with lower level conduit allowing flow of air by the use of two fans use to push air out. A condenser in the right side chamber at the lower level of the conduit is use to transfer heat energy to passing air;
8 . A heat exchange system according to claim 7 , wherein two level conduit navigates force air to pass through a condenser;
9 . A heat exchange system according to claim 7 , wherein condenser uses refrigerant as a medium for transferring heat between to opposing chambers;
10 . A heat exchange system according to claim 7 , wherein upper level fans draw in force air through the two level conduits;
11 . A heat exchange system according to claim 7 , wherein lower level fans force air out through the two level conduits;
12 . A heat exchange system comprising:
A three chamber heat exchange system whereby the left side chamber is comprised of a fan at the back end opening whereby a fan vents air into the chamber. Left side chamber has two air compressing ducts that compress air flow in a conduit which restricts vented air to flow through an evaporator in the middle of the chamber. A three chamber heat exchange system whereby the left side chamber is comprised of a fan at the front end whereby a fan vents air out the chamber;
13 . A heat exchange system according to claim 12 , wherein fan continuously forcefully vents air into restrictive chamber;
14 . A heat exchange system according to claim 12 , wherein chamber is shape in a manner which compresses air into the middle. The chamber is design with the middle section arising and subsiding toward both ends. The placing both chamber panels between said evaporator restricts air flow, thereby accumulating energy from said evaporator as compress air retains more energy than otherwise uncompress air;
15 . A heat exchange system according to claim 12 , wherein evaporator receives air from ambient air passing through said vented chamber. The evaporator thereby receives heat energy continuously thereby retaining heat and cooling ambient air as it passes to the front end opening whereby a fan vents air out the chamber;
16 . A heat exchange system according to claim 12 , wherein evaporator uses refrigerant to transfer heat to opposing chamber; and
17 . A heat exchange system according to claim 12 , wherein fan at the end open vents cooled air repetitiously.Join the waitlist — get patent alerts
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