IP Library Granted Patent US 10,088,197
Granted Patent B2
US 10,088,197 · App. 15/293,447 · Granted Oct 2, 2018

Water heating apparatus and water heating system

Inventors: Toshihiko Hamagami (Kobe, JP); Yu Fujimoto (Kakogawa, JP); Shota Mizuno (Akashi, JP); Ryo Hasegawa (Kakogawa, JP); Yoshihiro Nunotani (Kakogawa, JP); Akira Iwasaki (Kobe, JP)
Assignee: NORITZ CORPORATION
F24H9/0042F24H1/145F24H9/2035
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Quick Facts
Patent No.
US 10,088,197
App. No.
15/293,447
Granted
Oct 2, 2018
Kind
B2
Abstract

A water heating apparatus includes: a water heating circuit; a heater for heating the water heating circuit; and a controller for controlling the water heating apparatus. The water heating circuit includes a heat exchanger for heating a fluid including water and hot water, and a pipe for supplying the fluid via the heat exchanger. The controller is configured to drive the heater in a cleaning mode in which a cleaning liquid for cleaning an inside of the heat exchanger is supplied to the heat exchanger through the pipe.

Claims (68)

1. A water heating apparatus comprising:

a water heating circuit;

a heater for heating the water heating circuit; and

a controller for controlling the water heating apparatus,

the water heating circuit including

a heat exchanger for heating a fluid including water and hot water, and

a pipe for supplying the fluid via the heat exchanger,

the pipe including a water supply pipe being connected to the heat exchanger for supplying the fluid to the heat exchanger,

the heater including a heater being placed in the water supply pipe,

the controller being configured to drive the heater placed in the water supply pipe to heat a cleaning liquid in the water heating circuit in a cleaning mode in which the cleaning liquid for cleaning an inside of the heat exchanger is supplied to the heat exchanger through the pipe.

2. The water heating apparatus according to claim 1 , wherein

the heater further includes

a burner for heating the heat exchanger, and

the controller is configured to drive the burner in the cleaning mode.

3. The water heating apparatus according to claim 1 , further comprising a flow rate sensor for measuring an amount of the fluid supplied to the heat exchanger, wherein

the controller is configured to end the cleaning mode when a cumulative value of a flow rate measured by the flow rate sensor from start of the cleaning mode reaches a first threshold value.

4. The water heating apparatus according to claim 2 , further comprising a temperature sensor for measuring a temperature of the fluid in the heat exchanger, wherein

the controller is configured to

control the water heating apparatus so as to perform heating of the heat exchanger by the burner for a predetermined time period while causing the fluid to flow through the heat exchanger in the cleaning mode, and

to end the cleaning mode when an increased value of the temperature measured in a state where the fluid is stopped after an end of the heating is less than a second threshold value.

5. The water heating apparatus according to claim 1 , further comprising a flow rate sensor for measuring an amount of the fluid supplied to the heat exchanger, wherein

the controller is configured to

accumulate, from start of the cleaning mode, a time period in which a flow rate measured by the flow rate sensor is equal to or greater than a third threshold value, to obtain a cumulative time period, and

end the cleaning mode when the cumulative time period is equal to or greater than a predetermined time period.

6. A water heating apparatus comprising:

a burner;

a heat exchanger for heating a fluid with heat from the burner, the fluid including water and hot water contained inside;

a pipe for supplying the fluid; and

a controller for controlling the water heating apparatus,

the pipe including

a supply pipe for supplying the fluid to the heat exchanger,

a delivery pipe for delivering the fluid from the heat exchanger, and

a bypass pipe for causing the fluid in the supply pipe to bypass the heat exchanger so as to be delivered to the delivery pipe,

the water heating apparatus further comprising:

a bypass flow rate regulating valve for regulating a flow rate of the fluid in the bypass pipe,

the controller being configured to control the bypass flow rate regulating valve to be fully closed in a cleaning mode in which the cleaning liquid is supplied from the supply pipe to the heat exchanger, and control the bypass flow rate regulating valve to be half opened in a water-passing mode in which water is supplied in place of the cleaning liquid from the supply pipe to the heat exchanger after the cleaning mode.

7. The water heating apparatus according to claim 6 , further comprising a flow rate sensor for measuring an amount of the fluid supplied to the heat exchanger, wherein

the controller is configured to end the cleaning mode when the controller determines that a cumulative value of a flow rate measured by the flow rate sensor from start of the cleaning mode reaches a first threshold value stored in a storage.

8. The water heating apparatus according to claim 6 , further comprising a flow rate sensor for measuring an amount of the fluid supplied to the heat exchanger, wherein

the controller includes a timer for measuring, from start of the cleaning mode, a time period in which a flow rate measured by the flow rate sensor is equal to or greater than a third threshold value stored in a storage, and

the controller is configured to end the cleaning mode when the controller determines that the measured time period is equal to or greater than a predetermined time period.

9. A water heating system comprising:

a plurality of water heating apparatuses; and

a controller for controlling an operation of each of the plurality of water heating apparatuses based on information from each of the water heating apparatuses,

each of the plurality of water heating apparatuses including

a burner,

a heat exchanger for heating water and hot water with heat from the burner, and

a controller for controlling each of the water heating apparatuses,

the controller being configured to, when a cleaning mode is started, transmit a start notification indicating start of the cleaning mode to the controller, the cleaning mode being for cleaning an inside of the heat exchanger of each of the water heating apparatuses, and

the controller being configured to, when the start notification is received, exclude any one of the water heating apparatuses as a sender of the start notification from a target for which the operation is to be controlled.

10. The water heating system according to claim 9 , wherein

the controller is configured to, when the cleaning mode is ended, transmit an end notification indicating an end of the cleaning mode to the controller, and

the controller is configured to, when the end notification is received, reset any one of the water heating apparatuses as a sender of the end notification back to a target for which the operation is to be controlled.

11. The water heating system according to claim 9 , wherein

the controller is configured to, when the cleaning mode is ended, transmit an end notification indicating an end of the cleaning mode to the controller, and

the controller is configured to

when the start notification is received from one or more of the water heating apparatuses, cause an output unit to start an output of notification data for giving a notification about implementation of the cleaning mode, and

when the end notification is received from each of the one or more of the water heating apparatuses, cause the output unit to end the output of the notification data.

12. The water heating system according to claim 9 , wherein

the controller is configured to

when the start notification is received from one or more of the water heating apparatuses, cause an output unit to start an output of notification data for giving a notification about implementation of the cleaning mode, the notification data including data that changes so as to show a progress of the cleaning mode, and

when the start notification is received in a middle of the cleaning mode, cause the output unit to stop changing of the data showing the progress of the cleaning mode, and again to start changing of the data so as to show a progress from start of the cleaning mode.

13. The water heating system according to claim 9 , wherein

the controller is configured to

when the start notification is received from one or more of the water heating apparatuses, cause an output unit to start an output of notification data for giving a notification about implementation of the cleaning mode, the notification data including data that changes so as to show a progress of the cleaning mode,

each of the water heating apparatuses further comprises a flow rate sensor for measuring an amount of a fluid supplied to the heat exchanger,

the controller is configured to accumulate a flow rate measured by the flow rate sensor from start of the cleaning mode to obtain a cumulative flow rate, and

the data that changes includes data showing a progress of a time in the cleaning mode, or data showing a change in the cumulative flow rate in the cleaning mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2016
From: HAMAGAMI, TOSHIHIKO; FUJIMOTO, YU; MIZUNO, SHOTA; HASEGAWA, RYO; NUNOTANI, YOSHIHIRO; IWASAKI, AKIRA
To: NORITZ CORPORATION
Reel/Frame 040014/0069 →
Priority Claims (1)
JP 2015-204471 · Oct 16, 2015 · national
Continuity (1)
Related Publication 20170108242A1 · Apr 20, 2017
Cited By (14)
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