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Experimental analysis of solar thermal integrated MD system for cogeneration of drinking water and hot water for single family villa in dubai using flat plate and evacuated tube solar collectors

机译:利用平板和真空管太阳能集热器对迪拜单户别墅饮用水热水热电联产太阳能热集成mD系统的实验分析

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摘要

This paper presents the experimental analysis performed on solar thermal integrated membrane distillation (MD) system using flat plate and evacuated tube collectors. The system will be utilized for cogeneration of drinking water and domestic hot water for single family in Dubai comprising of four to five members. Experiments have been performed in Ras Al Khaimah Research and Innovation Centre (RAKRIC) facility. The experimental setup has been installed to achieve the required production of 15–25 L/d of drinking water and 250 L/d of hot water for domestic purposes. Experiments have been performed on MD setup at optimized flow rates of 6 L/min on hot side and 3 L/min on cold side for producing the desired distillate. The hot side and cold side MD temperature has been maintained between 60°C and 70°C, and 20°C and 30°C. The total annual energy demand comes out to be 8,223 kWh (6,000 kWh is for pure water and 2,223 kWh for hot water). The optimum aperture areas for flat plate and evacuated tube collector field have been identified as 8.5 and 7.5 m2, respectively. Annual energy consumption per liter for pure water production is 1, 0.85 and 0.7 kWh/L for different MD hot and cold inlet temperatures.
机译:本文介绍了在使用平板和真空管收集器的太阳能热膜蒸馏(MD)系统上进行的实验分析。该系统将用于由四到五个成员组成的迪拜单身家庭的饮用水和生活热水的热电联产。实验已在Ras Al Khaimah研究与创新中心(RAKRIC)的设施中进行。已经安装了实验装置,以实现家用日产量为15–25 L / d的饮用水和250 L / d的热水。已经在MD装置上进行了实验,以热侧6 L / min和冷侧3 L / min的优化流速生产所需的馏出液。热侧和冷侧MD温度已保持在60℃至70℃以及20℃至30℃之间。每年的总能源需求为8,223 kWh(纯水为6,000 kWh,热水为2,223 kWh)。平板和真空管集热器领域的最佳孔径分别为8.5和7.5平方米。在不同的MD冷热进水温度下,纯水生产每升的年能耗为1、0.85和0.7 kWh / L。

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