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US20220373194A1 - Reactive Energy Storage for Instantaneous Hot Water Applications - Google Patents

Reactive Energy Storage for Instantaneous Hot Water Applications
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Publication number
US20220373194A1
US20220373194A1US17/327,353US202117327353AUS2022373194A1US 20220373194 A1US20220373194 A1US 20220373194A1US 202117327353 AUS202117327353 AUS 202117327353AUS 2022373194 A1US2022373194 A1US 2022373194A1
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US
United States
Prior art keywords
water
temperature
demand
hot water
heat
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
US17/327,353
Inventor
Owen A. Cunningham
Adam Fogus
Ryan Hardesty
Daniel G. Karch
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Marley Co LLC
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Marley Co LLC
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Publication date
Application filed by Marley Co LLCfiledCriticalMarley Co LLC
Priority to US17/327,353priorityCriticalpatent/US20220373194A1/en
Assigned to THE MARLEY COMPANY LLCreassignmentTHE MARLEY COMPANY LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: HARDESTY, RYAN, CUNNINGHAM, OWEN A., KARCH, DANIEL G., FOGUS, ADAM
Priority to CA3159485Aprioritypatent/CA3159485A1/en
Publication of US20220373194A1publicationCriticalpatent/US20220373194A1/en
Pendinglegal-statusCriticalCurrent

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Abstract

Systems and methods are directed to water heater systems, including combi boilers and instantaneous water heaters, for initiating pre-heat and energy savings operations. Embodiments of the present invention can include at least one heat exchanger configured to heat water; and a control system in communication with the at least one heat exchanger. The control system can be configured to at least determine an expected flow demand for hot water; sense water temperature at one or more locations, including at a domestic hot water outlet; determine an end to the expected flow demand for hot water; upon receiving an indication to end the flow of hot water, initiate a recovery demand determination; and initiate a pre-heat operation based on the recovery demand determination.

Description

Claims (14)

What is claimed is:
1. A water heater system, comprising:
at least one heat exchanger configured to heat water;
a control system configured to at least:
determine an expected flow demand for hot water;
sense water temperature at one or more locations within the water heater system using the plurality of temperature sensors, wherein a first temperature sensor senses a temperature of heated water at the heated domestic hot water outlet;
determine an end to the expected flow demand for hot water;
upon receiving an indication to end the flow of hot water, initiate a recovery demand determination; and
initiate a pre-heat operation based on the recovery demand determination.
2. The water heater system ofclaim 1, wherein the water heater system is a combi boiler or an instantaneous water heater.
3. The water heater system ofclaim 1, wherein the recovery demand determination is based on an expected recovery temperature threshold or a pattern of usage, where the pattern of usage analyzes water demand based on at least one of a time of day, a demand frequency, an average hot water use over time, anticipated usage, and historic usage.
4. The water heater system ofclaim 1, wherein the recovery demand determination comprises:
estimating an anticipated demand based on the expected recovery temperature threshold or the pattern of usage ; and
determining whether to initiate a heating operation based on the anticipated demand.
5. The water heater system ofclaim 4, wherein the recovery demand determination initiates the pre-heat operation to heat a volume of water to meet the anticipated demand.
6. The water heater system ofclaim 4, wherein the pre-heat operation causes one or both of the first heat exchanger and second heat exchanger to heat a volume of water based on the anticipated demand.
7. The water heater system ofclaim 4, wherein the recovery demand determination reduces an amount of time required for the water temperature to reach a set point for a subsequent demand.
8. A method, comprising:
determining an expected flow demand for hot water;
sensing water temperature, using a plurality of temperature sensors, at one or more locations within a water heater system comprising at least one heat exchanger, wherein a first temperature sensor senses a temperature of heated water at a heated domestic hot water outlet;
determining an end to the expected flow demand for hot water;
initiating a recovery demand determination; and
initiating a pre-heat operation based on the recovery demand determination.
9. The method ofclaim 8, wherein the at least one heat exchanger is part of a combi boiler or an instantaneous water heater.
10. The method ofclaim 8, wherein the recovery demand determination is based on either an expected recovery temperature threshold or a pattern of usage, wherein the pattern of usage analyzes water demand based on at least one of a time of day, a demand frequency, an average hot water use over time, anticipated usage, and historic usage.
11. The method ofclaim 8, wherein the recovery demand determination comprises:
estimating an anticipated demand based on the pattern of usage; and
determining whether to initiate a heating operation based on the anticipated demand.
12. The method ofclaim 11, wherein the recovery demand determination initiates the pre-heat operation to heat a volume of water to meet the anticipated demand.
13. The method ofclaim 11, wherein the pre-heat operation causes one or both of the first heat exchanger and second heat exchanger to heat a volume of water based on the anticipated demand.
14. The method ofclaim 11, wherein the recovery demand determination reduces an amount of time required for the water temperature to reach a set point for a subsequent demand.
US17/327,3532021-05-212021-05-21Reactive Energy Storage for Instantaneous Hot Water ApplicationsPendingUS20220373194A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US17/327,353US20220373194A1 (en)2021-05-212021-05-21Reactive Energy Storage for Instantaneous Hot Water Applications
CA3159485ACA3159485A1 (en)2021-05-212022-05-19Reactive energy storage for instantaneous hot water applications

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US17/327,353US20220373194A1 (en)2021-05-212021-05-21Reactive Energy Storage for Instantaneous Hot Water Applications

Publications (1)

Publication NumberPublication Date
US20220373194A1true US20220373194A1 (en)2022-11-24

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Family Applications (1)

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US17/327,353PendingUS20220373194A1 (en)2021-05-212021-05-21Reactive Energy Storage for Instantaneous Hot Water Applications

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US (1)US20220373194A1 (en)
CA (1)CA3159485A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN120063037A (en)*2025-04-252025-05-30四川川润环保能源科技有限公司Control method and system for molten salt energy storage system
US12366380B2 (en)2021-05-212025-07-22The Marley Company LlcModulation systems and methods for instantaneous hot water applications

Citations (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20100326646A1 (en)*2008-06-272010-12-30Yong-Bum KimMethod for controlling a hot water temperature using low flux in hot water supply system
US20140229022A1 (en)*2013-02-142014-08-14Sridhar DeivasigamaniAdaptive heating control system for a water heater
US9228759B2 (en)*2013-10-072016-01-05Rinnai CorporationCirculating-type hot-water supply device
US20210123610A1 (en)*2016-09-142021-04-29Lochinvar, LlcMethods And System For Controlling A Combination Boiler
US20240102696A1 (en)*2021-02-072024-03-28Octopus Energy Heating LimitedEnergy storage arrangement and installations

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20100326646A1 (en)*2008-06-272010-12-30Yong-Bum KimMethod for controlling a hot water temperature using low flux in hot water supply system
US20140229022A1 (en)*2013-02-142014-08-14Sridhar DeivasigamaniAdaptive heating control system for a water heater
US9228759B2 (en)*2013-10-072016-01-05Rinnai CorporationCirculating-type hot-water supply device
US20210123610A1 (en)*2016-09-142021-04-29Lochinvar, LlcMethods And System For Controlling A Combination Boiler
US20240102696A1 (en)*2021-02-072024-03-28Octopus Energy Heating LimitedEnergy storage arrangement and installations

Cited By (2)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US12366380B2 (en)2021-05-212025-07-22The Marley Company LlcModulation systems and methods for instantaneous hot water applications
CN120063037A (en)*2025-04-252025-05-30四川川润环保能源科技有限公司Control method and system for molten salt energy storage system

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Publication numberPublication date
CA3159485A1 (en)2022-11-21

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