Experimental Investigation of Solar Desalination System Using Evacuated Tube Collector

IF 0.7 Q4 THERMODYNAMICS
S. Kedar, A. Kumaravel, A. Bewoor
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引用次数: 12

Abstract

Received: 23 July 2018 Accepted: 15 May 2019 An experimental investigation is carried out for softening of hard water by using solar desalination system with an evacuated tube collector. The experimental study mainly involves various parameters such as the temperature of hard and soft water, an ambient temperature of water, water flow rate, intensity of solar radiation and wind velocity. The primary purpose for an experimental study to get a maximum amount of soft water using evacuated tube collector. It is observed that in evacuated tube solar collector system gives the higher outlet temperature of water and has the better results for the thermal performance of the energy system. The entire test is done for environmental and climatic conditions of Pune city which is located in the western region in India. The experimental analysis show that evacuated tube solar collector system gives 27-28 liters of soft water per day.
真空集热器太阳能海水淡化系统的实验研究
研究了带真空管集热器的太阳能海水淡化系统对硬水的软化作用。实验研究主要涉及软水和硬水的温度、水的环境温度、水流速率、太阳辐射强度和风速等参数。利用真空管集热器获得最大数量的软水是本实验研究的主要目的。结果表明,真空管太阳能集热器系统出水温度较高,对能源系统的热性能有较好的改善效果。整个测试是针对位于印度西部地区的浦那市的环境和气候条件进行的。实验分析表明,真空管太阳能集热器系统每天可提供27 ~ 28升的软水。
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来源期刊
CiteScore
1.60
自引率
22.20%
发文量
144
期刊介绍: The IJHT covers all kinds of subjects related to heat and technology, including but not limited to turbulence, combustion, cryogenics, porous media, multiphase flow, radiative transfer, heat and mass transfer, micro- and nanoscale systems, and thermophysical property measurement. The editorial board encourages the authors from all countries to submit papers on the relevant issues, especially those aimed at the practitioner as much as the academic. The papers should further our understanding of the said subjects, and make a significant original contribution to knowledge. The IJHT welcomes original research papers, technical notes and review articles on the following disciplines: Heat transfer Fluid dynamics Thermodynamics Turbulence Combustion Cryogenics Porous media Multiphase flow Radiative transfer Heat and mass transfer Micro- and nanoscale systems Thermophysical property measurement.
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