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Computer Simulation of an Ammonia-Water Absorption Cycle for Refrigeration: Using a Distillation Tower to Replace the Generator

机译:制冷氨吸收循环的计算机模拟:使用蒸馏塔更换发电机

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By using a distillation tower as the regenerator, the coefficient of performance (COP) of the ammonia-water absorption refrigeration cycle is calculated in this work. Two types of distillation towers, namely an equilibrium-stage tower with a total condenser and a packed-bed tower with a partial condenser, are used in the cycle. From the simulation results, it is found that both types of distillation towers can successfully increase the COP of the cycle due to increased ammonia concentration in the vapor phase of the ammonia-water refrigerant. It was also found that the tower equipped with a partial condenser provides higher COP than that of the tower equipped with a total condenser. The value of COP can be further increased when the generator is replaced by the packed-bed tower in this water-ammonia absorption cycle. The effects of the mass flow rate ratio of NH _( 3 ) /H _( 2 ) O, stage number, reflux ratio and energy duty of the tower on the COP of the cycle are also studied in the present paper.
机译:通过使用蒸馏塔作为再生器,在这项工作中计算了氨 - 吸水制冷循环的性能系数(COP)。在循环中使用两种类型的蒸馏塔,即具有总电容器的平衡阶段塔,具有部分冷凝器的填充床塔。从模拟结果来看,发现两种类型的蒸馏塔由于氨水制冷剂的气相中的氨浓度增加而成功地增加了循环的COP。还发现配备有局部电容器的塔提供高于配备有总电容器的塔的高级警察。当发电机被在该水氨吸收循环中的填充床塔代替时,可以进一步增加警察的值。在本文中还研究了NH _(3)/ h _(2)O,塔架上的塔的阶段数,回流比和能量占空比的影响。

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