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Dynamic solar-powered multi-stage direct contact membrane distillation system: Concept design, modeling and simulation

机译:动态太阳能多级直接接触膜蒸馏系统:概念设计,建模和仿真

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This paper presents a theoretical analysis of the monthly average daily and hourly performances of a solar powered multi-stage direct contact membrane distillation (SMDCMD) system with an energy recovery scheme and dynamic operating system. Mid-latitude meteorological data from Busan, Korea is employed, featuring large climate variation over the course of one year. The number of module stages used by the dynamic operating scheme changes dynamically based on the inlet feed temperature of the successive modules, which results in an improvement of the water production and thermal efficiency. The simulations of the SMDCMD system are carried out to investigate the spatial and temporal variations in the feed and permeate temperatures and permeate flux. The monthly average daily water production increases from 0.37 m(3)/day to 0.4 m(3)/day and thermal efficiency increases from 31% to 45% when comparing systems both without and with dynamic operation in December. The water production with respect to collector area ranged from 350 m(2) to 550 m2 and the seawater storage tank volume ranged from 16 m(3) to 28.8 m(3), and the solar fraction at various desired feed temperatures from 50 degrees C to 80 degrees C have been investigated in October and December.
机译:本文介绍了具有能量回收方案和动态操作系统的太阳能多级直接接触膜蒸馏(SMDCMD)系统的月平均日常和每小时​​性能的理论分析。从釜山,韩国的中际气象数据受雇,在一年的过程中具有很大的气候变化。动态操作方案使用的模块级的数量基于连续模块的入口进料温度动态变化,从而提高了水生产和热效率。进行SMDCMD系统的模拟,以研究饲料和渗透温度和渗透通量的空间和时间变化。每月平均水产产量从0.37米(3)/日增加至0.4米(3)/天,热效率从12月份的系统进行比较时从31%增加到45%。相对于集电极面积的水产生范围从350米(2)至550平方米,海水储罐量为16米(3)至28.8米(3),以及各种所需进料温度的太阳能馏分从50度到50度C至80度C已在10月和12月进行调查。

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