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Exergy and thermo-economic analysis of solar thermal cycles powered multi-stage flash desalination process

机译:太阳热循环驱动的多级闪蒸脱盐过程的火用和热经济分析

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摘要

Solar thermal power cycles assisted multi-stage flash brine recycle (MSF-BR) distillation process are thermo-economically analyzed and evaluated. In this work, the analyses are compared according to three different configurations via two techniques of solar thermal power cycles. The first technique is considered for only desalination process; however, the second is considered for desalination and electric power generation via organic Rankine cycle. Solar parabolic trough concentrator (PTC) field is considered to dominate sufficient thermal power for MSF plant. Water steam working fluid is used for a direct vapor generation (DVG); however, Therminol-VP1 working substance is used for an indirect vapor generation (IDVG) through the PTC field. Moreover, the optimized configuration from the first technique is compared with the power generation and desalination (the second technique). The comparisons are proceeding for the MSF-BR desalination plant with total productivity in the range of 5,000m /d which the gain ratio is increased up to 12 with 40 stages. The thermo-economic results reveal that first technique achieves remarkable results related to the PTC area, the SPC, kWh/m~3, and the thermo-economic product cost, $/GJ.
机译:对太阳能热循环辅助的多级闪蒸盐水循环(MSF-BR)蒸馏过程进行了热经济分析和评估。在这项工作中,通过两种太阳热能循环技术,根据三种不同的配置对分析进行了比较。仅将第一种技术用于脱盐工艺;然而,第二种方法被认为是通过有机朗肯循环进行脱盐和发电。太阳能抛物线槽式集中器(PTC)领域被认为是MSF工厂足够的热能。水蒸汽工作流体用于直接产生蒸汽(DVG);但是,Therminol-VP1工作物质可通过PTC场间接产生蒸气(IDVG)。此外,将第一技术的优化配置与发电和海水淡化(第二技术)进行了比较。正在对MSF-BR海水淡化厂进行比较,该厂的总生产率在5,000m / d的范围内,其中40个阶段的增益比提高到12。热经济结果表明,第一种技术取得了与PTC面积,SPC(kWh / m〜3)和热经济产品成本$ / GJ相关的显着结果。

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