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Numerical simulation of solar-assisted multi-effect distillation (SMED) desalination systems

机译:太阳能辅助多效蒸馏(SMED)脱盐系统的数值模拟

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We present a simulation model for the transient behavior of solar-assisted seawater desalination plant that employs the evacuated-tube collectors in conjunction with a multi-effect distillation plant of nominal water production capacity of 16m~3/day. This configuration has been selected due to merits in terms of environment-friendliness and energy efficiency. The solar-assisted multi-effect distillation system comprises 849 m~2 of evacuated-tube collectors, 280 m~3 water storage tanks, auxiliary heater, and six effects and a condenser. The present analysis employs a baseline configuration, namely; (ⅰ) the local solar insolation input (Jeddah, Saudi Arabia), (ⅱ) a coolant flow rate through the headers of collector based on ASHRAE standards, (ⅲ) a heating water demand, and (ⅳ) the augmentation of water temperature by auxiliary when the supply temperature from the solar tank drops below the set point. It is observed that the annual collector efficiency and solar fraction decrease from 57.3 to 54.8% and from 49.4 to 36.7%, respectively, with an increase in the heating water temperature from 80 to 90 ℃. The overall water production rate and the performance ratio increase slightly from 0.18 to 0.21 kg/s and from 4.11 to 4.13, respectively.
机译:我们提出了一个太阳能辅助海水淡化厂的瞬态行为的仿真模型,该装置采用了真空管集热器和标称生产能力为16m〜3 / day的多效蒸馏厂。选择该配置是由于在环保和能源效率方面的优点。太阳能辅助多效蒸馏系统包括849 m〜2的真空管收集器,280 m〜3的储水罐,辅助加热器,六个效果器和一个冷凝器。本分析采用基线配置,即; (ⅰ)当地的日照输入(沙特阿拉伯吉达),(ⅱ)基于ASHRAE标准的通过集热管集管的冷却剂流速,(ⅲ)加热水需求,以及(ⅳ)通过当太阳能水箱的供气温度降至设定点以下时,可使用辅助设备。观察到,随着热水温度从80℃升高到90℃,年集热效率和太阳分率分别从57.3降低到54.8%和从49.4降低到36.7%。总体产水率和性能比分别从0.18到0.21 kg / s和从4.11到4.13略有增加。

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