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The cost of integration of parabolic trough CSP plants in isolated Mediterranean power systems

机译:在孤立的地中海电力系统中整合抛物线槽式CSP设备的成本

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In this work, a technical and economic analysis concerning the integration of parabolic trough concentrated solar power (CSP) technologies, with or without thermal storage capability, in an existing typical small isolated Mediterranean power generation system, in the absence of a feed-in tariff scheme, is carried out. In addition to the business as usual (BAU) scenario, five more scenarios are examined in the analysis in order to assess the electricity unit cost with the penetration of parabolic trough CSP plants of 50MWe or 100MWe, with or without thermal storage capability. Based on the input data and assumptions made, the simulations indicated that the scenario with the utilization of a single parabolic trough CSP plant (either 50 MWe or 100 MWe and with or without thermal storage capability) in combination with BAU will effect an insignificant change in the electricity unit cost of the generation system compared to the BAU scenario. In addition, a sensitivity analysis on natural gas price, showed that increasing fuel prices and the existence of thermal storage capability in the CSP plant make this scenario marginally more economically attractive compared to the BAU scenario.
机译:在这项工作中,一项技术和经济分析涉及在没有上网电价的情况下,在现有典型的小型地中海独立发电系统中集成有或没有蓄热能力的抛物线槽聚光太阳能发电(CSP)技术计划,执行。除了照常营业(BAU)方案外,在分析中还检查了另外五个方案,以评估具有或不具有蓄热能力的50MWe或100MWe的抛物槽式CSP电厂的电容量成本。根据输入的数据和所做的假设,模拟表明,使用单个抛物槽式CSP工厂(50 MWe或100 MWe且具有或不具有蓄热能力)与BAU结合使用的方案将对BAU的影响不大。与BAU方案相比,发电系统的电力单位成本。另外,对天然气价格的敏感性分析表明,与BAU方案相比,CSP工厂中燃料价格的上涨和储热能力的存在使该方案在经济上更具吸引力。

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