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首页> 外文期刊>International Journal of Refrigeration >Study on a waste heat-driven adsorption cooling cum desalination cycle
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Study on a waste heat-driven adsorption cooling cum desalination cycle

机译:余热驱动吸附冷却暨脱盐循环研究

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This article presents the performance analysis of a waste heat-driven adsorption cycle. With the implementation of adsorption-desorption phenomena, the cycle simultaneously produces cooling energy and high-grade potable water. A mathematical model is developed using isotherm characteristics of the adsorbent/adsorbate pair (silica gel and water), energy and mass balances for the each component of the cycle. The cycle is analyzed using key performance parameters namely (i) specific cooling power (SCP), (ii) specific daily water production (SDWP), (iii) the coefficient of performance (COP) and (iv) the overall conversion ratio (OCR). The numerical results of the adsorption cycle are validated using experimental data. The parametric analysis using different hot and chilled water temperatures are reported. At 85℃ hot water inlet temperature, the cycle generates 3.6 m~3 of potable water and 23 Rton of cooling at the produced chilled water temperature of 10℃.
机译:本文介绍了废热驱动吸附循环的性能分析。随着吸附-解吸现象的实现,该循环同时产生冷却能量和高级饮用水。利用吸附剂/被吸附物对(硅胶和水)的等温线特性,循环的每个组成部分的能量和质量平衡来开发数学模型。使用关键性能参数对周期进行分析,这些性能参数是(i)特定冷却功率(SCP),(ii)特定每日水产量(SDWP),(iii)性能系数(COP)和(iv)总转化率(OCR) )。使用实验数据验证了吸附循环的数值结果。报告了使用不同热水和冷水温度的参数分析。在85℃的热水进口温度下,该循环在产生的10℃的冷冻水温度下产生3.6 m〜3的饮用水和23 Rton的冷却。

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