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US20130125546A1 - Thermal energy storage and recovery system comprising a storage arrangement and a charging/discharging arrangement being connected via a heat exchanger - Google Patents

Thermal energy storage and recovery system comprising a storage arrangement and a charging/discharging arrangement being connected via a heat exchanger
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Publication number
US20130125546A1
US20130125546A1US13/674,176US201213674176AUS2013125546A1US 20130125546 A1US20130125546 A1US 20130125546A1US 201213674176 AUS201213674176 AUS 201213674176AUS 2013125546 A1US2013125546 A1US 2013125546A1
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US
United States
Prior art keywords
thermal energy
fluid
arrangement
storage
energy storage
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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.)
Abandoned
Application number
US13/674,176
Inventor
Till Barmeier
Gildas Jean Courtet
Aidan Cronin
Hans Laurberg
Jesper Elliot Petersen
Henrik Stiesdal
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Siemens AG
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Siemens AG
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Siemens AGfiledCriticalSiemens AG
Assigned to SIEMENS WIND POWER A/SreassignmentSIEMENS WIND POWER A/SASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: STIESDAL, HENRIK, Courtet, Gildas Jean, Barmeier, Till, Petersen, Jesper Elliot, Cronin, Aidan, LAURBERG, HANS
Assigned to SIEMENS AKTIENGESELLSCHAFTreassignmentSIEMENS AKTIENGESELLSCHAFTASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SIEMENS WIND POWER A/S
Publication of US20130125546A1publicationCriticalpatent/US20130125546A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A thermal energy storage and recovery system including a storage arrangement having a thermal energy storage device for temporarily storing thermal energy, a charging/discharging arrangement having a fluid energy machine for exchanging mechanical work with a working fluid cycling through the charging/discharging arrangement, and a heat exchanger which is arranged between the storage arrangement and the charging/discharging arrangement and which thermodynamically couples a heat transfer fluid cycling through the storage arrangement with the working fluid is provided. The storage arrangement is configured in such a manner that the heat transfer fluid is under a first pressure and the charging/discharging arrangement is configured in such a manner that the working fluid is at least partially under a second pressure, wherein the second pressure is higher than the first pressure.

Description

Claims (16)

We claim:
1. A thermal energy storage and recovery system comprising
a storage arrangement having a thermal energy storage device for temporarily storing thermal energy;
a charging/discharging arrangement having a fluid energy machine for exchanging mechanical work with a working fluid cycling through the charging/discharging arrangement; and
a heat exchanger arranged between the storage arrangement and the charging/discharging arrangement and thermodynamically couples a heat transfer fluid cycling through the storage arrangement with the working fluid,
wherein the storage arrangement is configured in such a manner that the heat transfer fluid is under a first pressure,
wherein the charging/discharging arrangement is configured in such a manner that the working fluid is under a second pressure, and
wherein the second pressure is higher than the first pressure.
2. The thermal energy storage and recovery system as claimed inclaim 1, wherein the first pressure is an ambient pressure of the thermal energy storage and recovery system.
3. The thermal energy storage and recovery system as claimed inclaim 1, wherein the storage arrangement comprises means for driving a flow of heat transfer fluid through the storage arrangement.
4. The thermal energy storage and recovery system as claimed inclaim 1,
wherein in a first operational mode, in which the thermal energy storage device receives thermal energy from the heat transfer fluid, the storage arrangement is configured for circulating the heat transfer fluid in a first direction, and
wherein in a second operational mode, in which the thermal energy storage device transfers thermal energy to the heat transfer fluid, the storage arrangement is configured for circulating the heat transfer fluid in a second direction being opposite to the first direction.
5. The thermal energy storage and recovery system as claimed inclaim 4,
wherein in the first operational mode the charging/discharging arrangement is configured for circulating the working fluid in a further first direction, and
wherein in the second operational mode the charging/discharging arrangement is configured for circulating the working fluid in a further second direction being opposite to the first direction.
6. The thermal energy storage and recovery system as claimed inclaim 4,
wherein the charging/discharging arrangement further comprises a further fluid energy machine, and
wherein with respect to a flow direction of the working fluid the fluid energy machine is located upstream of the heat exchanger and the further fluid energy machine is located downstream of the heat exchanger.
7. The thermal energy storage and recovery system as claimed inclaim 6,
wherein the fluid energy machine and the further fluid energy machine are configured such that in the first operational mode, the fluid energy machine generates thermal energy for the heat exchanger and the further fluid energy machine receives thermal energy from the heat exchanger, whereby the generated thermal energy is larger than the received thermal energy, and
wherein the fluid energy machine and the further fluid energy machine are configured such that in the second operational mode, the fluid energy machine receives thermal energy from the heat exchanger and the further fluid energy machine generates thermal energy for the heat exchanger, whereby the received thermal energy is larger than the generated thermal energy.
8. The thermal energy storage and recovery system as claimed inclaim 7,
wherein the charging/discharging arrangement further comprises a mechanical energy transmission arrangement, which is connected between the fluid energy machine and the further fluid energy machine, and
wherein the mechanical energy transmission arrangement is configured for directly exchanging mechanical energy between the fluid energy machine and the further fluid energy machine.
9. The thermal energy storage and recovery system as claimed inclaim 8,
wherein in the first operational mode the further fluid energy machine is configured for producing cold when expanding the working fluid, and
wherein the produced cold is useable for cooling purposes.
10. The thermal energy storage and recovery system as claimed inclaim 1, wherein the charging/discharging arrangement is configured in such a manner that the working fluid when circulating through the charging/discharging arrangement undergoes a change of its state of aggregation.
11. The thermal energy storage and recovery system as claimed inclaim 10, wherein the charging/discharging arrangement is configured in such a manner that in the first operational mode the charging/discharging arrangement is configured for acting as a heat pump and in the second operational mode the working fluid within the charging/discharging arrangement undergoes a steam cycle.
12. The thermal energy storage and recovery system as claimed inclaim 1,
wherein the thermal energy storage device comprises a container having a first fluid terminal for inserting the heat transfer fluid into the interior of the container and a second fluid terminal for extracting the heat transfer medium from the interior of the container and a heat storage material accommodated within the container, and
wherein the heat storage material is spatially arranged within the container in such a manner that heat transfer fluid flowing between the first fluid terminal and the second fluid terminal gets into direct physical contact with the accommodated heat storage material.
13. The thermal energy storage and recovery system as claimed inclaim 12, wherein the heat storage material comprises rock material and/or sand material.
14. The thermal energy storage and recovery system as claimed inclaim 13, wherein the heat storage material comprises concrete.
15. The thermal energy storage and recovery system as claimed inclaim 1, wherein the heat transfer fluid and/or the working fluid is a gas.
16. The thermal energy storage and recovery system as claimed inclaim 15, wherein the working gas is air.
US13/674,1762011-11-212012-11-12Thermal energy storage and recovery system comprising a storage arrangement and a charging/discharging arrangement being connected via a heat exchangerAbandonedUS20130125546A1 (en)

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
EP11189939.92011-11-21
EP11189939.9AEP2594753A1 (en)2011-11-212011-11-21Thermal energy storage and recovery system comprising a storage arrangement and a charging/discharging arrangement being connected via a heat exchanger

Publications (1)

Publication NumberPublication Date
US20130125546A1true US20130125546A1 (en)2013-05-23

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US13/674,176AbandonedUS20130125546A1 (en)2011-11-212012-11-12Thermal energy storage and recovery system comprising a storage arrangement and a charging/discharging arrangement being connected via a heat exchanger

Country Status (4)

CountryLink
US (1)US20130125546A1 (en)
EP (1)EP2594753A1 (en)
JP (1)JP2013127245A (en)
CN (1)CN103133071A (en)

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US11286804B2 (en)2020-08-122022-03-29Malta Inc.Pumped heat energy storage system with charge cycle thermal integration
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US11852043B2 (en)2019-11-162023-12-26Malta Inc.Pumped heat electric storage system with recirculation
US11846197B2 (en)2020-08-122023-12-19Malta Inc.Pumped heat energy storage system with charge cycle thermal integration
US11982228B2 (en)2020-08-122024-05-14Malta Inc.Pumped heat energy storage system with steam cycle
US11840932B1 (en)2020-08-122023-12-12Malta Inc.Pumped heat energy storage system with generation cycle thermal integration
US11454167B1 (en)2020-08-122022-09-27Malta Inc.Pumped heat energy storage system with hot-side thermal integration
US11578650B2 (en)2020-08-122023-02-14Malta Inc.Pumped heat energy storage system with hot-side thermal integration
US11885244B2 (en)2020-08-122024-01-30Malta Inc.Pumped heat energy storage system with electric heating integration
US11396826B2 (en)2020-08-122022-07-26Malta Inc.Pumped heat energy storage system with electric heating integration
US11286804B2 (en)2020-08-122022-03-29Malta Inc.Pumped heat energy storage system with charge cycle thermal integration
US11486305B2 (en)2020-08-122022-11-01Malta Inc.Pumped heat energy storage system with load following
US12123347B2 (en)2020-08-122024-10-22Malta Inc.Pumped heat energy storage system with load following
US12123327B2 (en)2020-08-122024-10-22Malta Inc.Pumped heat energy storage system with modular turbomachinery
US11480067B2 (en)2020-08-122022-10-25Malta Inc.Pumped heat energy storage system with generation cycle thermal integration
US12173643B2 (en)2020-08-122024-12-24Malta Inc.Pumped heat energy storage system with hot-side thermal integration
US12173648B2 (en)2020-08-122024-12-24Malta Inc.Pumped heat energy storage system with thermal plant integration
US12428989B2 (en)2020-08-122025-09-30Malta Inc.Pumped heat energy storage system with load following
US12428979B2 (en)2021-12-142025-09-30Malta Inc.Pumped heat energy storage system integrated with coal-fired energy generation unit

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Publication numberPublication date
CN103133071A (en)2013-06-05
EP2594753A1 (en)2013-05-22
JP2013127245A (en)2013-06-27

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