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首页> 外文期刊>Energies >Performance Evaluation of a Continuous Operation Adsorption Chiller Powered by Solar Energy Using Silica Gel and Water as the Working Pair
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Performance Evaluation of a Continuous Operation Adsorption Chiller Powered by Solar Energy Using Silica Gel and Water as the Working Pair

机译:以硅胶和水为工作对的太阳能连续运行吸附式制冷机的性能评估

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In the present study, dynamic analysis and performance evaluation of a solar-powered continuous operation adsorption chiller are introduced. The adsorption chiller uses silica gel and water as the working pair. The developed mathematical model represents the heat and mass transfer within the reactor coupled with the energy balance of the collector plate and the glass cover. Moreover, a non-equilibrium adsorption kinetic model is taken into account by using the linear driving force equation. The variation of solar radiation, wind speed, and atmospheric temperature along a complete cycle are considered for a more realistic simulation. Based on the case studied and the baseline parameters, the chiller is found to acquire a coefficient of performance of 0.402. The average thermal efficiency of the solar collector is estimated to be 62.96% and the average total efficiency approaches a value of 50.91%. Other performance parameters obtained are 363.8 W and 1.82 W/kg for the cooling capacity and the specific cooling power of the chiller, respectively. Furthermore, every 1 kg of silica gel inside the adsorption reactor produces a daily chilled water mass of 3 kg at a temperature of 10 °C. In addition, the cooling system harnesses 25.35% of the total available solar radiation and converts it to a cooling effect.
机译:在本研究中,介绍了太阳能连续运行吸附式制冷机的动态分析和性能评估。吸附式冷却器使用硅胶和水作为工作对。建立的数学模型代表了反应器内的传热和传质,以及集热板和玻璃盖的能量平衡。此外,通过使用线性驱动力方程,考虑了非平衡吸附动力学模型。为了进行更真实的模拟,可以考虑太阳辐射,风速和大气温度沿整个周期的变化。根据研究的案例和基准参数,发现冷却器的性能系数为0.402。太阳能收集器的平均热效率估计为62.96%,平均总效率接近50.91%。获得的其他性能参数分别是冷却器的制冷量和制冷量的363.8 W / kg和1.82 W / kg。此外,吸附反应器内部每1 kg硅胶在10°C的温度下每天产生3 kg的冷冻水量。此外,冷却系统利用了总可用太阳辐射的25.35%,并将其转换为冷却效果。

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