Simulation Study of the Thermal Performance of MSF Desalination Unit Operating by Solar Vacuum Tube Collectors

M. Abdunnabi, A. Ramadan
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引用次数: 2

Abstract

The Center for Solar Energy Research and Studies (CSERS) has a good experience in operating and evaluating the thermal performance of small scale 5 m3/day Multi-Stage Flushing (MSF) desalination plant connected to solar pond according to the local weather conditions of Tajoura area. However, a new project has been suggested to run the desalination plant with vacuum tubes solar thermal collectors utilizing available technology and experience. In this study an attempt was made to make the best use of readily available components to operate the MSF desalination unit with field of solar thermal collectors. Several configurations of collectors and tank arrangements were designed and examined through the use of simulation software, TRNSYS. The study has shown that the layout-3 (two 500 litre storage tanks each of them connected to 9x5 vacuum tube collectors) gives the best performance with an annual solar fraction over 77% at load temperature of 70 °C with flow rate of 2500 lit/hr, and over 68% at load temperature of 80 °C for working condition of 8 hours daily. The study has also shown that running the desalination plant for 24 hours a day reduces the solar fraction of the solar collector field to 25%
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太阳能真空管集热器运行的MSF海水淡化装置热性能模拟研究
太阳能研究中心(CSERS)根据Tajoura地区当地的天气条件,在与太阳能池连接的小型5 m3/d多级冲洗(MSF)海水淡化厂的运行和热性能评估方面具有良好的经验。然而,一个新的项目已经被建议利用现有的技术和经验,用真空管太阳能集热器来运行海水淡化厂。在这项研究中,试图充分利用现成的组件来运行带有太阳能集热器的MSF脱盐装置。通过使用模拟软件TRNSYS,设计和检查了几种集热器和储罐的配置。研究表明,布局3(两个500升的储罐,每个连接9x5真空管集热器)在负载温度为70°C,流量为2500 lit/hr时,太阳能年利用率超过77%,负载温度为80°C,每天工作8小时,太阳能年利用率超过68%,具有最佳性能。研究还表明,每天24小时运行海水淡化厂可以将太阳能集热器的太阳能部分减少到25%
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