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Comparative Assessment of an Innovative Dry-Cooled CSP System

机译:创新的干式CSP系统的比较评估

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A comparative optimization assessment is carried out in order to identify the competitiveness of an innovative modular air-cooled condenser (MACC) system in relation to conventional water- or air-cooled condensers. Specifically, the technoeconomic performance of the combined cycle gas turbine (CCGT) technology, the parabolic trough concentrated solar power (CSP) technology, and the solar tower CSP technology are compared when all are integrated (a) with a MACC condenser of an optimum tube geometry and size, (b) with a conventional water-cooled condenser, and (c) with a conventional dry-cooled condenser. The comparison is performed across three different solar potential levels. The simulations are carried out using an optimization model based on the IPP v2.1 algorithm for the calculation of the electricity unit cost and other financial indicators of each technology under investigation. The results demonstrate that, under certain parameters, the investigated MACC condenser system can become a cost-competitive alternative to water- or dry-cooled condensers in various solar potential environments.
机译:为了确定创新的模块化风冷冷凝器(MACC)系统相对于常规水冷或风冷冷凝器的竞争力,进行了比较优化评估。具体来说,比较了联合循环燃气轮机(CCGT)技术,抛物槽式槽式太阳能发电(CSP)技术和太阳能塔式CSP技术在全部集成时(a)与最佳管的MACC冷凝器的技术经济性能。几何形状和尺寸,(b)使用常规水冷冷凝器,(c)使用常规干冷冷凝器。比较是在三种不同的太阳能电势水平上进行的。使用基于IPP v2.1算法的优化模型进行仿真,以计算所研究的每种技术的电力单位成本和其他财务指标。结果表明,在某些参数下,所研究的MACC冷凝器系统可以在各种太阳能潜在环境中成为具有成本竞争力的水冷或干冷冷凝器的替代产品。

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