MA40122B1 - Tours solaires à sel fondu modulaires à accumulateur thermique destinées à un traitement, à une production ou à une production combinée d'électricité - Google Patents
Tours solaires à sel fondu modulaires à accumulateur thermique destinées à un traitement, à une production ou à une production combinée d'électricitéInfo
- Publication number
- MA40122B1 MA40122B1 MA40122A MA40122A MA40122B1 MA 40122 B1 MA40122 B1 MA 40122B1 MA 40122 A MA40122 A MA 40122A MA 40122 A MA40122 A MA 40122A MA 40122 B1 MA40122 B1 MA 40122B1
- Authority
- MA
- Morocco
- Prior art keywords
- salt
- molten salt
- generation
- storage tanks
- reduce
- Prior art date
Links
- 238000011282 treatment Methods 0.000 title abstract 3
- 230000005611 electricity Effects 0.000 title abstract 2
- 150000003839 salts Chemical class 0.000 abstract 10
- VEXZGXHMUGYJMC-UHFFFAOYSA-M Chloride anion Chemical compound [Cl-] VEXZGXHMUGYJMC-UHFFFAOYSA-M 0.000 abstract 1
- 229910045601 alloy Inorganic materials 0.000 abstract 1
- 239000000956 alloy Substances 0.000 abstract 1
- 238000005260 corrosion Methods 0.000 abstract 1
- 230000007797 corrosion Effects 0.000 abstract 1
- 238000010612 desalination reaction Methods 0.000 abstract 1
- 238000009434 installation Methods 0.000 abstract 1
- 238000000034 method Methods 0.000 abstract 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Chemical compound O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 abstract 1
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03G—SPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
- F03G6/00—Devices for producing mechanical power from solar energy
- F03G6/06—Devices for producing mechanical power from solar energy with solar energy concentrating means
- F03G6/065—Devices for producing mechanical power from solar energy with solar energy concentrating means having a Rankine cycle
- F03G6/067—Binary cycle plants where the fluid from the solar collector heats the working fluid via a heat exchanger
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03G—SPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
- F03G6/00—Devices for producing mechanical power from solar energy
- F03G6/071—Devices for producing mechanical power from solar energy with energy storage devices
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03G—SPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
- F03G6/00—Devices for producing mechanical power from solar energy
- F03G6/098—Components, parts or details
- F03G6/108—Components, parts or details of the heat transfer system
- F03G6/111—Heat transfer fluids
- F03G6/114—Molten salts
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S20/00—Solar heat collectors specially adapted for particular uses or environments
- F24S20/20—Solar heat collectors for receiving concentrated solar energy, e.g. receivers for solar power plants
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S40/00—Safety or protection arrangements of solar heat collectors; Preventing malfunction of solar heat collectors
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S40/00—Safety or protection arrangements of solar heat collectors; Preventing malfunction of solar heat collectors
- F24S40/50—Preventing overheating or overpressure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S40/00—Safety or protection arrangements of solar heat collectors; Preventing malfunction of solar heat collectors
- F24S40/80—Accommodating differential expansion of solar collector elements
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S80/00—Details, accessories or component parts of solar heat collectors not provided for in groups F24S10/00-F24S70/00
- F24S80/20—Working fluids specially adapted for solar heat collectors
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S23/00—Arrangements for concentrating solar-rays for solar heat collectors
- F24S23/70—Arrangements for concentrating solar-rays for solar heat collectors with reflectors
- F24S2023/87—Reflectors layout
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F28—HEAT EXCHANGE IN GENERAL
- F28D—HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
- F28D20/00—Heat storage plants or apparatus in general; Regenerative heat-exchange apparatus not covered by groups F28D17/00 or F28D19/00
- F28D20/0034—Heat storage plants or apparatus in general; Regenerative heat-exchange apparatus not covered by groups F28D17/00 or F28D19/00 using liquid heat storage material
- F28D2020/0047—Heat storage plants or apparatus in general; Regenerative heat-exchange apparatus not covered by groups F28D17/00 or F28D19/00 using liquid heat storage material using molten salts or liquid metals
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A20/00—Water conservation; Efficient water supply; Efficient water use
- Y02A20/124—Water desalination
- Y02A20/138—Water desalination using renewable energy
- Y02A20/142—Solar thermal; Photovoltaics
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
- Y02E10/46—Conversion of thermal power into mechanical power, e.g. Rankine, Stirling or solar thermal engines
Landscapes
- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Life Sciences & Earth Sciences (AREA)
- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Engine Equipment That Uses Special Cycles (AREA)
- Heat Treatment Of Water, Waste Water Or Sewage (AREA)
Abstract
La présente invention concerne des procédés consistant à agencer et à faire fonctionner un système d'énergie solaire thermique à sel fondu. Du sel fondu s'écoule à partir d'un ensemble de réservoirs de stockage froid vers des récepteurs solaires qui chauffent le sel fondu à une température maximale d'environ 850 °f. Le sel fondu chauffé est envoyé vers un ensemble de réservoirs de stockage chaud. Le sel fondu chauffé est ensuite pompé vers un système de génération de vapeur afin de produire de la vapeur d'eau en vue d'un traitement et/ou d'une production d'électricité. Des températures de sel inférieures sont utiles dans des traitements faisant appel à des températures de vapeur inférieures, tels que le dessalement thermique. Des températures de sel inférieures et un sel fondu à faible teneur en chlorure réduisent le potentiel de corrosion, ce qui permet l'utilisation d'alliages de coût inférieur pour les récepteurs solaires, les réservoirs de stockage chaud, les pompes à sel, le système de tuyauterie, d'instruments de mesure et de génération de vapeur. De multiples ensembles de réservoirs de stockage modulaires et assemblés en usine sont utilisés pour réduire la quantité de tuyauterie à sel, pour simplifier le drainage et pour réduire le montage sur place et le coût d'installation.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201462060561P | 2014-10-06 | 2014-10-06 | |
| PCT/US2015/054019 WO2016057404A1 (fr) | 2014-10-06 | 2015-10-05 | Tours solaires à sel fondu modulaires à accumulateur thermique destinées à un traitement, à une production ou à une production combinée d'électricité |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| MA40122A1 MA40122A1 (fr) | 2018-01-31 |
| MA40122B1 true MA40122B1 (fr) | 2018-09-28 |
Family
ID=55632505
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| MA40122A MA40122B1 (fr) | 2014-10-06 | 2015-10-05 | Tours solaires à sel fondu modulaires à accumulateur thermique destinées à un traitement, à une production ou à une production combinée d'électricité |
Country Status (9)
| Country | Link |
|---|---|
| US (1) | US10113536B2 (fr) |
| CN (1) | CN106796051A (fr) |
| AU (1) | AU2015328376A1 (fr) |
| BR (1) | BR112017006658A2 (fr) |
| IL (1) | IL251273A0 (fr) |
| MA (1) | MA40122B1 (fr) |
| MX (1) | MX2017004314A (fr) |
| WO (1) | WO2016057404A1 (fr) |
| ZA (1) | ZA201702040B (fr) |
Families Citing this family (19)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| AU2018347410B2 (en) * | 2017-10-13 | 2024-06-13 | Haynes International, Inc. | Solar tower system containing molten chloride salts |
| WO2020200457A1 (fr) * | 2019-04-04 | 2020-10-08 | General Electric Technology Gmbh | Agencement de récepteur central de sel fondu et procédé de fonctionnement |
| US11912572B1 (en) | 2023-03-03 | 2024-02-27 | EnhancedGEO Holdings, LLC | Thermochemical reactions using geothermal energy |
| CN113464221B (zh) * | 2021-06-10 | 2024-03-08 | 华电电力科学研究院有限公司 | 一种基于熔融盐蓄放热蒸汽扩容增效以及灵活性调峰系统 |
| US12326278B2 (en) | 2022-02-28 | 2025-06-10 | EnhancedGEO Holdings, LLC | Geothermal power from superhot geothermal fluid and magma reservoirs |
| US11852383B2 (en) | 2022-02-28 | 2023-12-26 | EnhancedGEO Holdings, LLC | Geothermal power from superhot geothermal fluid and magma reservoirs |
| US12055131B2 (en) | 2022-02-28 | 2024-08-06 | EnhancedGEO Holdings, LLC | Geothermal power from superhot geothermal fluid and magma reservoirs |
| US11905797B2 (en) | 2022-05-01 | 2024-02-20 | EnhancedGEO Holdings, LLC | Wellbore for extracting heat from magma bodies |
| US11918967B1 (en) | 2022-09-09 | 2024-03-05 | EnhancedGEO Holdings, LLC | System and method for magma-driven thermochemical processes |
| US12429252B2 (en) | 2023-02-10 | 2025-09-30 | EnhancedGEO Holdings, LLC | Geothermal system with a pressurized chamber in a magma wellbore |
| US11913679B1 (en) | 2023-03-02 | 2024-02-27 | EnhancedGEO Holdings, LLC | Geothermal systems and methods with an underground magma chamber |
| US11897828B1 (en) | 2023-03-03 | 2024-02-13 | EnhancedGEO, Holdings, LLC | Thermochemical reactions using geothermal energy |
| US11912573B1 (en) | 2023-03-03 | 2024-02-27 | EnhancedGEO Holdings, LLC | Molten-salt mediated thermochemical reactions using geothermal energy |
| US12486832B2 (en) | 2023-06-11 | 2025-12-02 | Holtec International | Solar power generation system |
| US12429036B2 (en) | 2023-07-07 | 2025-09-30 | Holtec International | Hybrid power generation system |
| US12060765B1 (en) | 2023-07-27 | 2024-08-13 | EnhancedGEO Holdings, LLC | Float shoe for a magma wellbore |
| US12291965B2 (en) | 2023-09-08 | 2025-05-06 | EnhancedGEO Holdings, LLC | Detecting entry into and drilling through a magma reservoir |
| US11905814B1 (en) | 2023-09-27 | 2024-02-20 | EnhancedGEO Holdings, LLC | Detecting entry into and drilling through a magma/rock transition zone |
| US12180820B1 (en) | 2023-09-27 | 2024-12-31 | EnhancedGEO Holdings, LLC | Drilling a wellbore into a magma reservoir |
Family Cites Families (22)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4421662A (en) * | 1982-09-13 | 1983-12-20 | Olin Corporation | Nonaqueous purification of mixed nitrate heat transfer media |
| DE10228868B4 (de) * | 2002-06-27 | 2005-11-17 | Enginion Ag | Dampfmaschine mit geschlossenem Kreislauf |
| IL155665A (en) * | 2003-04-29 | 2009-05-04 | Pessach Seidel | Donating energy storage |
| US7169599B2 (en) * | 2003-06-20 | 2007-01-30 | Groton Biosystems, Llc | Fluid interface for bioprocessor systems |
| US7296410B2 (en) * | 2003-12-10 | 2007-11-20 | United Technologies Corporation | Solar power system and method for power generation |
| US7640746B2 (en) * | 2005-05-27 | 2010-01-05 | Markon Technologies, LLC | Method and system integrating solar heat into a regenerative rankine steam cycle |
| US8365719B2 (en) * | 2007-08-07 | 2013-02-05 | Angeles Technologies, Inc. | Multi-receiver heliostat system architecture |
| US20100258112A1 (en) * | 2009-04-10 | 2010-10-14 | Victory Energy Operations LLC | Generation of steam from solar energy |
| US9995507B2 (en) * | 2009-04-15 | 2018-06-12 | Richard Norman | Systems for cost-effective concentration and utilization of solar energy |
| EP2554804B1 (fr) * | 2009-06-18 | 2016-12-14 | ABB Research Ltd. | Système de stockage d'énergie avec un réservoir de stockage intermédiaire et procédé de stockage d'énergie thermoélectrique |
| WO2011025930A1 (fr) * | 2009-08-28 | 2011-03-03 | Michael Newman | Système d'énergie solaire sous pression |
| WO2011067773A1 (fr) * | 2009-12-06 | 2011-06-09 | Heliofocus Ltd. | Systèmes de génération thermique |
| WO2011077248A2 (fr) * | 2009-12-23 | 2011-06-30 | Goebel, Olaf | Génération d'énergie solaire à cycles combinés |
| EP2547976A2 (fr) * | 2010-03-16 | 2013-01-23 | Bell Independent Power Corporation | Récipient de stockage d'énergie, systèmes et procédés |
| CN113776203A (zh) * | 2010-09-16 | 2021-12-10 | 威尔逊太阳能公司 | 用于太阳能接收器的集中器 |
| EP2525051A1 (fr) * | 2011-05-20 | 2012-11-21 | Alstom Technology Ltd | Centrale solaire thermique |
| EP2751481A2 (fr) * | 2011-08-30 | 2014-07-09 | Abengoa Solar LLC | Champ solaire hybride |
| EP2587005A1 (fr) * | 2011-10-31 | 2013-05-01 | ABB Research Ltd. | Système de stockage d'énergie thermoélectrique avec échange thermique régénératif et procédé de stockage d'énergie thermoélectrique |
| CN202659430U (zh) * | 2012-05-09 | 2013-01-09 | 石家庄中大力诺太阳能工程有限公司 | 一种联合发电系统 |
| CN203053050U (zh) * | 2012-12-07 | 2013-07-10 | 上海工电能源科技有限公司 | 一种太阳能热发电站的罐区 |
| CN203010564U (zh) * | 2012-12-24 | 2013-06-19 | 东方电气集团东方锅炉股份有限公司 | 一种塔式太阳能吸热器的管屏结构 |
| CN103485990A (zh) * | 2013-09-29 | 2014-01-01 | 北京首航艾启威节能技术股份有限公司 | 一种提高熔盐塔式太阳能热发电站发电效率的装置和方法 |
-
2015
- 2015-10-05 BR BR112017006658A patent/BR112017006658A2/pt not_active Application Discontinuation
- 2015-10-05 WO PCT/US2015/054019 patent/WO2016057404A1/fr not_active Ceased
- 2015-10-05 US US14/875,122 patent/US10113536B2/en not_active Expired - Fee Related
- 2015-10-05 MX MX2017004314A patent/MX2017004314A/es unknown
- 2015-10-05 MA MA40122A patent/MA40122B1/fr unknown
- 2015-10-05 AU AU2015328376A patent/AU2015328376A1/en not_active Abandoned
- 2015-10-05 CN CN201580054093.9A patent/CN106796051A/zh active Pending
-
2017
- 2017-03-19 IL IL251273A patent/IL251273A0/en unknown
- 2017-03-23 ZA ZA2017/02040A patent/ZA201702040B/en unknown
Also Published As
| Publication number | Publication date |
|---|---|
| US10113536B2 (en) | 2018-10-30 |
| AU2015328376A1 (en) | 2017-04-13 |
| US20160097376A1 (en) | 2016-04-07 |
| MX2017004314A (es) | 2017-07-19 |
| ZA201702040B (en) | 2018-05-30 |
| CN106796051A (zh) | 2017-05-31 |
| BR112017006658A2 (pt) | 2017-12-26 |
| MA40122A1 (fr) | 2018-01-31 |
| WO2016057404A1 (fr) | 2016-04-14 |
| IL251273A0 (en) | 2017-05-29 |
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