Knowledge Resource Center for Ecological Environment in Arid Area
DOI | 10.1063/5.0029639 |
Saving Water on Concentrated Solar Power Plants: the Holistic Approach of the WASCOP Project | |
Bourdon, Delphine; Wolfertstetter, Fabian; Fernandez-Garcia, Aranzazu; Sansom, Christopher; Azpitarte, Itziar; Bouaddi, Sahar; Perez, Gema; Maccari, Augusto; van Nijnatten, Peter; Surquin, Eric; Perrotta, Fabrizio | |
通讯作者 | Bourdon, D (corresponding author), Univ Grenoble Alpes UGA, CEA Liten DTBH, CEA Grenoble, F-38000 Grenoble, France. |
会议名称 | International Conference on Concentrating Solar Power and Chemical Energy Systems (SolarPACES) |
会议日期 | OCT 01-04, 2019 |
会议地点 | Daegu, SOUTH KOREA |
英文摘要 | CSP plant are facing the new challenge of being water thrifty because of their desert, hot and arid usual location. Actually, the water consumption of a CSP plant can reach around 2500 m(3)/GWh. Solutions have to be found to face the constraint of a reducing water availability in the concerned areas. Regarding the different water use items (power block's cooling : 90% of the total water use, solar field cleaning, up to 5% and steam generation), the WASCOP project is aiming at proposing different kind of solution in a holistic approach that will support the reduction of the water used by the whole plant without affecting its profitability. Regarding cooling, dry cooling is turning to zero the water use but the plant efficiency and profitability is significantly affected due to capacity limitations under high ambience and additional utilities costs. The solutions proposed in WASCOP are turned to increase the efficiency of the cooling systems under high ambience, through the addition of heat storage for delayed heat exhaust, the addition of water spray for enthalpic air refreshment of dry cooling systems and their increased efficiency and the optimized management of hybrized cooling system (wet/dry). For the cleaning needs of the plant, WASCOP proposes to develop different cleaning strategies. Firstly, limitation of the dust settlement on the optical surfaces is done through dust barriers and antisoiling coatings (both for reflectors and absorber's glasses). Secondly detection of the soiling level, for adapted cleaning frequencies at different locations within the solar field, is proposed thanks to different kind of soiling sensors : at low cost for a wide distribution, or with a capacity to discriminate soiling to mirror permanent degradation, or for specifically absorbers glasses. Thirdly, innovative cleaning devices using very few water, are proposed such as an ultrasonic cleaner, removing settled dust with a thin water layer thanks to cavitation properties, and a heliostat cleaner using the optical surface condensed water, and the rotating properties of the heliostat to remove dust with an adapted rotating cleaning lip. All the solutions developed in WASCOP are supported by numerical modelling as to be able to propose them within a single toolbox, selecting the most adapted solutions, depending on the plant technologies (type of solar field : PTC, LFR or ST and type of current cooling : WCC,ACC, Hybridized...) and locations (DNI, soiling rate...). Current results show that the proposed solutions are able to reduce the water use significantly both for cooling and cleaning purposes without affecting the plant global efficiency. Additional works have whatever to be done to better quantify the associated water reduction of individual solution and their synergy potentials. |
来源出版物 | INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS (SOLARPACES 2019) |
ISSN | 0094-243X |
出版年 | 2020 |
卷号 | 2303 |
ISBN | 978-0-7354-4037-1 |
出版者 | AMER INST PHYSICS |
类型 | Proceedings Paper |
语种 | 英语 |
开放获取类型 | Bronze |
收录类别 | CPCI-S |
WOS记录号 | WOS:000679378800165 |
WOS关键词 | PRESSURE-DROP ; BED ; FLOW ; FLUID |
WOS类目 | Energy & Fuels |
WOS研究方向 | Energy & Fuels |
资源类型 | 会议论文 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/365555 |
作者单位 | [Bourdon, Delphine] Univ Grenoble Alpes UGA, CEA Liten DTBH, CEA Grenoble, F-38000 Grenoble, France; [Wolfertstetter, Fabian] DLR German Aerosp Ctr, Inst Solar Res, Plataforma Solar Almeria, Almeria 04200, Spain; [Fernandez-Garcia, Aranzazu] CIEMAT PSA, Senes Rd,K 4-5, Almeria 04200, Spain; [Sansom, Christopher] Cranfield Univ, Bedford MK43 0AL, Beds, England; [Azpitarte, Itziar] Fdn Tekniker, Eibar 20600, Gipuzkoa, Spain; [Bouaddi, Sahar] Moroccan Agcy Solar Energy SA, Rabat 10000, Morocco; [Perez, Gema] Rioglass Solar SA, Pola De Lena 33695, Asturias, Spain; [Maccari, Augusto] Archimede Solar Energy SRL, I-06056 Massa Martana, PG, Italy; [van Nijnatten, Peter] OMT Solut BV, High Tech Campus 9, NL-5656 AE Eindhoven, Netherlands; [Surquin, Eric] Hamon dHondt, F-59970 Fresnes Sur Escau, France; [Perrotta, Fabrizio] AMIRES SRO, Evropska 115, Prague 16000 6, Czech Republic |
推荐引用方式 GB/T 7714 | Bourdon, Delphine,Wolfertstetter, Fabian,Fernandez-Garcia, Aranzazu,et al. Saving Water on Concentrated Solar Power Plants: the Holistic Approach of the WASCOP Project[C]:AMER INST PHYSICS,2020. |
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