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Solar-assisted multi-stage vacuum membrane distillation system with heat recovery unit

机译:带有热回收装置的太阳能辅助多级真空膜蒸馏系统

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This paper describes the development of a solar-assisted multi-stage vacuum membrane distillation (SMVMD) system. The proposed system employs heat recovery unit (HRU) for the energy recovery from the permeate vapor to the feed seawater. Temperature modulating (TM) scheme is also implemented for the attenuation of temperature fluctuations of the feed seawater. A commercial shell-and-tube capillary membrane module consisting of an array of polypropylene hydrophobic fibers has been adopted for the system design and mathematical model development. The SMVMD system is studied for the different numbers of HRUs using a mathematical model. For a solar-assisted VMD system with 24-stage, the total water production of SMVMD system with 10 HRUs is found to be 3.37 m(3)/day, which is about 34% higher as compared to the system with a single HRU. For a VMD system without solar-thermal unit, the overall specific thermal energy consumption (OSTEC) decreases by 20% with an increase in the number of HRUs from 1 to 10. For the different numbers of HRUs in the range of 110, the system OSTECs with solar-thermal system having 150 m(2) of evacuated-tube collectors and 16 m(3) seawater storage tanks are 28%-36% lower compared to those without the solar thermal system. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了太阳能辅助多级真空膜蒸馏(SMVMD)系统的开发。拟议的系统采用热回收单元(HRU)从渗透蒸气到进料海水的能量回收。还实施了温度调节(TM)方案,以减少进料海水的温度波动。系统设计和数学模型开发已采用由聚丙烯疏水性纤维阵列组成的商业壳管式毛细管膜组件。使用数学模型研究了SMVMD系统中不同数量的HRU。对于具有24级的太阳能辅助VMD系统,发现具有10个HRU的SMVMD系统的总产水量为3.37 m(3)/天,这比具有单个HRU的系统高约34%。对于不带太阳热能单元的VMD系统,随着HRU的数量从1增加到10,总体比热能消耗(OSTEC)降低20%。对于110范围内的不同HRU数量,系统与没有太阳能热系统的OSTEC相比,具有150 m(2)的真空管集热器和16 m(3)的海水储罐的太阳能热系统的OSTEC降低了28%-36%。 (C)2015 Elsevier B.V.保留所有权利。

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