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首页> 外文期刊>International journal of thermal & environmental engineering >Simulation and Economic Analysis of Solar Thermal Cogeneration System for Production of Heat and Pure Water using Membrane Distillation
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Simulation and Economic Analysis of Solar Thermal Cogeneration System for Production of Heat and Pure Water using Membrane Distillation

机译:膜蒸馏法生产热纯水的太阳能热电联产系统的仿真与经济分析

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摘要

In this paper, a novel solar thermal cogeneration (termed as solar combi MD; SCMD) system for production of clean water and domestic hot water is modeled and analyzed for the weather conditions of United Arab Emirates (UAE). The system comprises of solar collectors for production of thermal energy, thermal storage for domestic hot water generation and membrane distillation (MD) modules for clean water production gaining energy through a plate heat exchanger. The performance of cogeneration is analyzed with two different solar collectors used for domestic heating - flat plate collectors (FPC) and evacuated tube collector (ETC). The system is modeled and dynamically simulated using TRNSYS software for optimization of various design parameters like collectors tilt angle, mass flow rate through MD loop, thermal store volume and heat exchanger effectiveness. Cogeneration system efficiencies and collector areas has been determined for optimum conditions. Economic benefits are analyzed for FPC collectors and fuel costs savings compared to individual system operation. Total investment cost of SCMD system for single family application would be around 5000$ with an impressive payback period of 5.5 years which is 30% lower than regular SDHW installations.
机译:在本文中,针对阿拉伯联合酋长国(UAE)的天气状况,对一种新型的用于生产清洁水和生活热水的太阳能热电联产(称为Solar Combi MD; SCMD)系统进行了建模和分析。该系统包括用于生产热能的太阳能收集器,用于生活热水生产的热能储存器和用于清洁水生产的膜蒸馏(MD)模块,它们通过板式热交换器获得能量。利用两种用于家庭供热的太阳能集热器(平板集热器(FPC)和真空管集热器(ETC))分析了热电联产的性能。使用TRNSYS软件对该系统进行建模和动态仿真,以优化各种设计参数,例如收集器倾斜角,通过MD回路的质量流率,蓄热器体积和热交换器效率。热电联产系统的效率和集热器面积已确定用于最佳条件。与单个系统操作相比,分析了FPC收集器的经济效益和节省的燃料成本。单户应用的SCMD系统的总投资成本约为5000美元,投资回收期为5.5年,比常规SDHW安装低30%。

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