IP Library › Granted Patent US 9,389,000
Granted Patent B2
US 9,389,000 · App. 14/189,192 · Granted Jul 12, 2016

Apparatus and methods for pre-heating water with air conditioning unit or heat pump

Inventors: Klint E. Leete (Fort Smith, AR); Timothy B. Hawkins (Fort Smith, AR); Jeremy L. Babb (Fort Smith, AR)
Assignee: Rheem Manufacturing Company
F24H4/04F24D15/04F24D17/0005F24D17/0031F24D17/02F24D19/1054F24F5/0096F24H6/00F25B5/04F25B29/00F25B29/003F25B41/04F24D2200/04F24D2200/08F24D2200/123F24F2221/183F25B2339/047F25B2400/0403Y02B30/12
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Quick Facts
Patent No.
US 9,389,000
App. No.
14/189,192
Granted
Jul 12, 2016
Kind
B2
Abstract

Water heater apparatus includes a tank for storing water; a heat exchanger associated with the tank and being operative to receive refrigerant and transfer heat therefrom to the tank, the heat exchanger representatively being a heat conductive tube externally wrapped around the tank in heat conductive contact therewith; air conditioning apparatus operative to utilize refrigerant flowing through a refrigerant circuit portion of the air conditioning apparatus, the refrigerant circuit portion being in fluid communication with the heat exchanger; and a control system operative to selectively cause a portion of the flowing refrigerant to pass through the heat exchanger, or cause essentially the entire flow of the refrigerant to bypass the heat exchanger.

Claims (49)

1. Apparatus for heating water, comprising:

a first tank for storing water;

a heat exchanger associated with said tank and being operative to receive refrigerant and transfer heat therefrom to said tank;

air conditioning apparatus operative to utilize refrigerant flowing through a refrigerant circuit portion of said air conditioning apparatus to regulate the temperature of air being delivered to a conditioned space, said refrigerant circuit portion being in fluid communication with said heat exchanger;

a control system operative to selectively cause at least a portion of the flowing refrigerant to pass through said heat exchanger; and

a second tank for storing water, said second tank for storing water being piped in series with said first tank for storing water, and

said heat exchanger comprises a heat conductive tube externally wrapped around said first tank in heat conductive contact therewith, and the second tank not being externally wrapped by a heat conductive tube.

2. The apparatus for heating water of claim 1 wherein:

said air conditioning apparatus comprises an air conditioning unit.

3. The apparatus for heating water of claim 1 wherein:

said air conditioning apparatus comprises a heat pump.

4. The apparatus for heating water of claim 1 wherein:

said heat exchanger is the sole source of heating water in said first tank.

5. The apparatus for heating water of claim 4 wherein:

said second tank is devoid of an external refrigerant-to-water heat exchanger.

6. The apparatus for heating water of claim 1 wherein:

said first tank for storing water is a water heater tank.

7. The apparatus for heating water of claim 6 wherein:

said first tank for storing water is a gas-fired water heater tank.

8. The apparatus for heating water of claim 6 wherein:

said first tank for storing water is an electric water heater tank.

9. The apparatus for heating water of claim 1 , wherein said heat exchanger has an inlet and an outlet, the apparatus for heating water comprising a check valve disposed at the outlet of the heat exchanger.

10. A method of heating water stored in a first and a second tank, comprising:

placing a heat exchanger in heat conductive contact with said first tank;

providing air conditioning apparatus operative to utilize refrigerant flowing through a refrigerant circuit portion of said air conditioning apparatus to regulate the temperature of air being delivered to a conditioned space, said refrigerant circuit portion being in fluid communication with said heat exchanger;

controlling said air conditioning apparatus in a manner selectively causing at least a portion of the flowing refrigerant to pass through said heat exchanger and transfer refrigerant to said first tank via a heat conductive tube externally wrapped around said first tank in heat conductive contact therewith; and

storing water in the second tank, the second tank being piped in series with said first tank so that water flows from one of the first and second tanks to the other of the first and second tanks, the second tank not being externally wrapped by a heat conductive tube.

11. The method of claim 10 wherein said providing step includes the step of:

providing an air conditioning unit.

12. The method of claim 10 wherein said providing step includes the step of:

providing a heat pump.

13. An apparatus for heating water, comprising:

an air conditioner comprising:

an indoor evaporator coil unit; and

a refrigerant tubing circuit;

a gas-fired or electric water heater having a tank surrounded and spiral-wrapped by a portion of the refrigerant tubing circuit and serving as a coiled heat exchanger, the coiled heat exchanger having a heat exchanger inlet and a heat exchanger outlet;

a water temperature sensor associated with the water heater to measure a temperature of water disposed therein;

an outdoor condensing unit in communication with the indoor evaporator coil unit via a portion of the refrigerant tubing circuit, the outdoor condensing unit comprising:

a compressor coupled directly to the indoor evaporator coil unit via a portion of the refrigerant tubing circuit;

a condenser coil with an associated condensing fan and coupled directly with the compressor via a portion of the refrigerant tubing circuit so that the compressor is coupled directly between the indoor evaporator coil unit and the condenser coil;

an electronic control system comprising a control circuit comprising:

a first electronically controlled regulator valve disposed along a condenser coil-bypass portion of the refrigerant tubing circuit and arranged to direct refrigerant between the compressor and the condenser coil when in a closed position, and arranged to permit at least some refrigerant to bypass the condenser coil when in an open position;

a second electronically controlled regulator valve disposed in a portion of the refrigerant tubing circuit adjacent the heat exchanger inlet of the coiled heat exchanger; and

a normally open solenoid valve installed in a water tank-bypass portion of the refrigerant tubing circuit between the heat exchanger inlet and the heat exchanger outlet,

the electronic control system being configured to receive information from the water temperature sensor, and based on the water temperature sensor, operate the first and second electronically controlled regulator valves and the solenoid valve to direct heated refrigerant to the coiled heat exchanger.

14. The apparatus for heating water of claim 13 , comprising an expansion valve in the refrigerant tubing circuit between the indoor evaporator coil unit and the heat exchanger outlet.

15. The apparatus for heating water of claim 13 , comprising a check valve adjacent the heat exchanger outlet to prevent refrigerant from entering the heat exchanger outlet.

16. The apparatus for heating water of claim 13 , wherein the condenser coil comprises an inlet and an outlet, the apparatus for heating water comprising a check valve disposed at the outlet to prevent refrigerant from entering the condenser coil through the outlet.

17. The apparatus for heating water of claim 13 comprising a second tank for storing water, coupled in series with said first tank for storing water, wherein the second tank is not externally wrapped by a heat conductive tube.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2014
From: LEETE, KLINT E.; HAWKINS, TIMOTHY B.; BABB, JEREMY L.
To: RHEEM MANUFACTURING COMPANY
Reel/Frame 032292/0652 →
Continuity (2)
Provisional Application 61779087 · Mar 13, 2013
Related Publication 20140260358A1 · Sep 18, 2014