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A Year Around System Simulation for An Experimental Set-Up of A Thermosyphon Solar Water Heater in Thailand

机译:在泰国的热水旋流太阳能热水器的实验设置围绕系统仿真的一年

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Due to the high cost and environmental impacts fossil fuel, solar energy remains the most efficient alternative source of energy for water heating. A Solar Water Heater is a widely used apparatus in Thailand as an application of solar thermal energy. In this project a prevailing experimental set up of a thermosyphon solar water heater was used to experiment, model and simulate the yearly performance. The results of the simulations were based on a solar water with a collector surface of 2.16 m2, facing south with a tilt angle of 14° and a storage tank of 150 litres, operated at SIIT, Thammasat University in Pathum Thani. After the experimental data modelling a yearly simulation was carried using solar radiation levels and ambient temperatures as inputs to the simulation. After the yearly simulation, the average collector efficiency is 49 %, average collector temperature is 48 °C and average Storage temperature is 47°C.
机译:由于成本高,环境影响化石燃料,太阳能仍然是水加热最有效的替代能源来源。太阳能热水器是泰国广泛使用的设备作为太阳能热能的应用。在该项目中,使用热旋流水运过度热水器的普遍实验设施来试验,模型和模拟年度性能。模拟结果基于太阳能水,收集器表面为2.16米 2 面对南方,倾斜14°的倾斜角,150升的储罐,在托马斯特大学的SIIT,泰特大学运营。在使用太阳辐射水平和环境温度作为模拟的输入进行了一年模拟的实验数据。年仿真后,平均收集器效率为49%,平均收集器温度为48°C,平均储存温度为47°C。

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