IP Library › Granted Patent US 9,562,697
Granted Patent B2
US 9,562,697 · App. 13/804,379 · Granted Feb 7, 2017

Circulating hot water system and or appliance

Inventors: Wilson Ng (NSW, AU); David Micallef (NSW, AU)
Assignee: RHEEM AUSTRALIA PTY LIMITED
F24D19/1051E03C1/044F24D17/0078F24H1/107F24H9/128F24J2/345F24J2/42G05D23/19F24D19/1036F24D2200/043Y10T137/0391Y10T137/4673Y10T137/4857Y10T137/6443Y10T137/6497Y10T137/85954Y10T137/85986Y10T137/87362Y10T137/87877
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Quick Facts
Patent No.
US 9,562,697
App. No.
13/804,379
Granted
Feb 7, 2017
Kind
B2
Abstract

A water heating system having a system inlet pipe ( 1.002 ), a hot water delivery pipe ( 1.003 ) and a hot water return pipe ( 1.006 ) connected to a building hot water distribution network ( 1.024 ); the water heating system including one or more water heaters ( 1.001 ), the or each water heater having a heater inlet ( 1.022 ) and a heater outlet ( 1.023 ), a hot water return pipe ( 1.006 ) connected between the system inlet and delivery outlet via the building hot water distribution network to form a close loop hot water supply-return circuit; a pump ( 1.005 ) connected to circulate water through the hot water supply-return circuit whereby the pump can circulate water through one or more of the water heaters; a valve means ( 1.007 ) [a first non-return valve] adapted to prevent inlet water (water delivered to the system inlet) from flowing into the hot water return pipe or the building hot water distribution network.

Claims (18)

1. A water heating system connected to a building hot water distribution network, said water heating system comprising:

a system water inlet;

a water delivery outlet connected to the building hot water distribution network;

a hot water return inlet connected to the building hot water distribution network;

one or more water heaters, each water heater having a heater inlet that is connected to the system water inlet to receive water from a water supply and to the hot water return inlet to receive water from the building hot water distribution network and a heater outlet that is connected to the delivery outlet to deliver water from the water heater to the building hot water distribution network;

an unheated supplemental water flow path connecting the system water inlet to the delivery outlet, the supplemental water flow path bridging the one or more water heaters and including a flow control device adapted to permit flow from the system water inlet to the delivery outlet when a pressure differential across the one or more water heaters exceeds a predetermined pressure differential; and

a storage tank in the supplemental water flow path, whereby water from the storage tank is delivered to the water delivery outlet when the pressure differential across the flow control device opens the flow control device.

2. A system as claimed in claim 1 , including a first non-return valve in the supplemental water flow path on an inlet side of the storage tank from the system water inlet.

3. A system as claimed in claim 2 , including a second non-return valve connecting an outlet of the storage tank to the system water inlet.

4. A system as claimed in claim 1 , wherein the supplemental water flow path connects the system water inlet and the hot water return inlet to the delivery outlet and wherein the storage tank is downstream from the system water inlet and the hot water return inlet in the supplemental water flow path.

5. A water heating system connected to a building hot water distribution network, said water heating system comprising:

a system water inlet;

a water delivery outlet connected to the building hot water distribution network;

a hot water return inlet connected to the building hot water distribution network;

the water heating system including one or more water heaters, each water heater having a heater inlet that is connected to the system water inlet to receive water from a water supply and to the hot water return inlet to receive water from the building hot water distribution network and a heater outlet that is connected to the delivery outlet to deliver water from the water heater to the building hot water distribution network; and

a supplemental water flow path connecting the system water inlet to the delivery outlet, the supplemental water flow path bridging the one or more water heaters and including a flow control device adapted to permit flow from the system water inlet to the delivery outlet when a pressure differential across the one or more water heaters exceeds a predetermined pressure differential, wherein the supplemental water flow path is connected to the hot water return inlet to receive water from the building hot water distribution network at a point in the supplemental water flow path between the system water inlet and the delivery outlet; and

a storage tank in the supplemental water flow path, whereby water from the storage tank is delivered to the water delivery outlet when the pressure differential across the flow control device opens the flow control device.

6. A system as claimed in claim 5 , wherein the storage tank is downstream from the system water inlet and the hot water return inlet in the supplemental water flow path.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2013
From: NG, WILSON; MICALLEF, DAVID
To: RHEEM AUSTRALIA PTY LIMITED
Reel/Frame 029997/0306 →
Priority Claims (1)
AU 2012901168 · Mar 22, 2012 · national
Continuity (1)
Related Publication 20130247997A1 · Sep 26, 2013