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Modeling and Simulation of Solar Thermal Electric Energy and Water Production Systems

机译:太阳能热能发电系统的建模与仿真

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The modeling and simulation of a solar thermal renewable energy system to produce water and electricity in a remote village is investigated in this paper. This system is composed of parabolic solar collectors, a packed-bed thermal storage tank, a Stirling engine and a multiple-effect evaporator (MEE) desalination plant. The operation is controlled by an Energy Management System (EMS), for an extended period of time, e.g. a year. The solar collectors are modeled by their heat rate loss equations. The packed bed storage system is discretized into layers reflecting the stratification in the tank, which allowed its partial differential equation to be transformed into several ordinary differential equations that are solved using the modified Euler method. The Stirling engine is modeled using a set of work rate equations representing its phases of operation. The MEE is modeled using a set of material and energy balance equations. The components' models are implemented and integrated into a system's model using an EMS, which is capable of simulating the operation of the system, given the design parameters, the meteorological data, and the electricity and water demand profiles. This software tool has been developed in MATLAB and is used to assess the sizes of the various components of the system based on their energy analysis requirement. These sizes are tuned using a sensitivity analysis approach, which would allow an estimation of the investment plant cost. The results of this tool will quantify the total energy supplied by the collectors to the Stirling engine and to the MEE desalination plant, the electric energy and the fresh water produced, and the components and overall system efficiencies. The operational cost is then calculated by carrying out a simulation of the system over an extended period of time, typically a year. Finally, a case study of a real-like system in a remote village, with no access to water or electricity, is investigated to determine the sizes of the different system components, the capital cost, the operating expenses, and the unit cost of water and electricity.
机译:本文研究了偏远村庄太阳能热可再生能源系统生产水和电的建模和仿真。该系统由抛物线型太阳能集热器,填充床储热罐,斯特林发动机和多效蒸发器(MEE)脱盐厂组成。该操作由能源管理系统(EMS)控制一段较长的时间,例如一年。太阳能集热器通过其热率损失方程建模。填充床存储系统被离散为多个层,以反映罐中的分层,从而将其偏微分方程式转化为几个普通的微分方程式,并使用改进的Euler方法对其进行求解。斯特林发动机使用一组代表其运行阶段的工作速率方程进行建模。使用一组材料和能量平衡方程对ME​​E进行建模。使用EMS实施组件的模型并将其集成到系统模型中,该EMS能够在给定设计参数,气象数据以及电力和用水需求概况的情况下模拟系统的运行。该软件工具已在MATLAB中开发,用于根据其能量分析要求评估系统各个组件的大小。使用敏感度分析方法可以调整这些大小,从而可以估算投资工厂的成本。该工具的结果将量化收集器提供给斯特林发动机和MEE海水淡化厂的总能量,所产生的电能和淡水,以及组件和整体系统效率。然后,通过在延长的时间段(通常为一年)中对系统进行仿真来计算运营成本。最后,研究了一个偏远村庄中没有水或电的真实系统的案例研究,以确定不同系统组件的大小,资金成本,运营费用以及水的单位成本。和电力。

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