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Dynamic Simulation of Solid Adsorption Solar Refrigerator System with AC/CH3OH as a Working Pair

机译:以AC / CH3OH为工作对的固体吸附太阳能冰箱系统的动态仿真

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Solid adsorption system, one of alternative refrigeration systems, is utilized to provide cold for refrigerator or air-conditioner and can be operated by assistance of solar heat. System performance study through computer usage to develop simulation program and simulate behaviors of system operation can give designed system which suits for user’s need. Also, the present study aims to develop dynamic simulation program of solid adsorption refrigeration system operated by solar assistance to simulate behaviors of system operation and its performance. Flat plate collectror is utilized to provide thermal energy for system’s adsorber and activated carbon/methanol is used to be a suitable working pair. Simulation procedure starts with various solar radiation intensities as input energy on solar collector and water is used as collector working fluid. Behavior of system operation can be considered to be 4 steps as isosteric heating, isobaric desorption, isosteric cooling and isobaric adsorption, respectively. This research studies the effect of varying solar radiation intensity on temperature, pressure of adsorber, adsorption ratio at each steps of system operated ranging from 6:00 am (the first day) to 6:00 am (the next day) and system performance which is defined as coefficient of performance, COP. In addition, the simulation result shows monthly average COP of 0.43 compared to a result of another previous research work under the same operating condition and the percentage error is 7.5%.
机译:固体吸附系统是替代制冷系统之一,用于为冰箱或空调提供冷量,并且可以借助太阳能来运行。通过计算机用途来研究系统性能,以开发仿真程序并模拟系统操作行为,从而可以设计出满足用户需求的系统。此外,本研究的目的是开发由太阳能辅助操作的固体吸附式制冷系统的动态仿真程序,以模拟系统的运行行为及其性能。平板集热器用于为系统的吸附器提供热能,而活性炭/甲醇则是合适的工作对。模拟过程从各种太阳辐射强度开始,作为太阳能收集器上的输入能量,水被用作收集器工作流体。系统操作的行为可以分为等温加热,等压脱附,等温冷却和等压吸附四个步骤。这项研究研究了变化的太阳辐射强度对温度,吸附剂压力,系统工作各步骤从上午6:00(第一天)到第二天6:00(第二天)的吸附比以及系统性能的影响。定义为性能系数COP。此外,模拟结果显示,在相同的工作条件下,与其他先前的研究结果相比,每月平均COP为0.43,百分比误差为7.5%。

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