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Thermodynamic Optimization Tools for Power Tracking in a Multistage Concentrated Solar Power Rankine Plant

机译:用于多级集中式太阳能兰金电厂功率跟踪的热力学优化工具

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摘要

The object of the study is to present a method of thermodynamic optimization of power generating plants, in a mode that consolidates and simplifies the analysis of data on heat-work interaction of the plant components. The optimization scheme identifies the technical and process parameters that can improve the thermodynamic performance of the plant with respect to an objective variable, and further, the required thermodynamic measures necessary to improve the operating condition of the plant. Simple but effective tools are used to evaluate the optimal and suboptimal power generating capacities vis-a-vis the fundamental variablesnamely, the thermodynamic quantity ratio (TQR) and the power-energy quantity ratio (PQR)without routing optimization procedures. Beyond the optimal value of the objective variable, the power generation capacity of the plant is affected. The determination of the optimal value of the objective variable can also be approached by computerization; for fixed prescriptions of the boiler, superheater, and turbine parameters, variables such as boiler pressure and temperature can be optimally selected. (C) 2016 American Society of Civil Engineers.
机译:该研究的目的是提出一种发电设备的热力学优化方法,该方法可以巩固和简化有关设备部件热功相互作用数据的分析。该优化方案确定相对于目标变量可以改善设备的热力学性能的技术和过程参数,并且还确定改善设备的运行条件所必需的所需热力学措施。使用简单但有效的工具来评估最优和次优发电能力,而不需要基本优化参数,即热力学量比(TQR)和功率-能量量比(PQR),而无需进行路线优化程序。除了目标变量的最佳值之外,工厂的发电能力也会受到影响。也可以通过计算机化来确定目标变量的最佳值。对于锅炉,过热器和涡轮机参数的固定规定,可以最佳选择锅炉压力和温度等变量。 (C)2016年美国土木工程师学会。

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