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Quasi-steady state simulations of thermal vapor compression multi-effect distillation plants coupled to parabolic trough solar thermal power plants

机译:热蒸汽压缩多效蒸馏装置的准稳态模拟耦合到抛物面槽太阳能热电厂

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The evaluation of the coupling of a 50MW(e) parabolic trough solar thermal power plant (PT-STP) and a 10,000m(3)/d multi-effect distillation plant with thermal vapor compression (MED-TVC) was performed. To that end, a model for the entire system has been developed and implemented within Engineering Equation Solver (EES) and Matlab software environments. Two coupling arrangements between the PT-STP plant and the MED-TVC unit were selected: one taking low-pressure steam (at 1.224bar) from the power block to feed the MED-TVC and the other one taking high-pressure steam (at 20.6bar), and the simulations of the electricity and fresh water production of the PT-STP+MED-TVC plant to be located in Spain were carried out during three days in summer (21-23 June) and three days in winter (21-23 December). Results obtained showed that the use of the low-pressure steam to feed the MED-TVC plant reduces the electricity penalization compared with the use of high-pressure steam but also decreases the fresh water production. Since in Spain the electricity demand is lower in summer than in winter, and the contrary occurs with the fresh water demand, the optimum coupling arrangement in summer was using high-pressure steam to feed the MED-TVC (enough steam available in the turbines) and that one in winter was to feed the MED-TVC with low-pressure steam having the lower electricity penalization at the cost of the decrease of the fresh water production.
机译:对50MW(e)抛物线太阳能热电厂(PT-STP)和10,000M(3)/ D多效蒸馏装置进行热蒸汽压缩(MED-TVC)的评估。为此,已经在工程方程求解器(EES)和MATLAB软件环境中开发和实现了整个系统的模型。选择PT-STP工厂和MED-TVC单元之间的两个耦合装置:从电源块采用低压蒸汽(1.224bar),以馈送MED-TVC,另一个采用高压蒸汽(在20.6bar),在夏季(六月二十六年六月二十九日)和三天内,在西班牙进行PT-STP + MED-TVC工厂的电力和淡水生产的模拟,并在冬季三天(21 -23 12月)。得到的结果表明,与使用高压蒸汽相比,使用低压蒸汽以供给医疗蒸汽的电力损失,但也降低了淡水生产。由于在西班牙以来,夏天的电力需求比冬季更低,并且随着夏季的淡水需求,夏季的最佳耦合安排在夏季的情况下,使用高压蒸汽来供应使用的MED-TVC(涡轮机中可用的足够蒸汽)并且在冬天的那个是用低压蒸汽喂养MED-TVC,其电力损失较低,以淡水产量降低。

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