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Modeling the Performance of Water-Zeolite 13X Adsorption Heat Pump

机译:水沸石13X吸附热泵性能建模

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The dynamic performance of cylindrical double-tube adsorption heat pump is numerically analysed using a non-equilibrium model, which takes into account both heat and mass transfer processes. The model includes conservation equations for: heat transfer in heating/cooling fluids, heat transfer in the metal tube, and heat and mass transfer in the adsorbent. The mathematical model is numerically solved using the method of lines. Numerical simulations are performed for the system water-zeolite 13X, chosen as the working pair. The effect of the evaporator and condenser temperatures on the adsorption and desorption kinetics is examined. The results of the numerical investigation show that both of these parameters have a significant effect on the adsorption heat pump performance. Based on computer simulation results, the values of the coefficients of performance for heating and cooling are calculated. The results show that adsorption heat pumps have relatively low efficiency compared to other heat pumps. The value of the coefficient of performance for heating is higher than for cooling.
机译:使用非平衡模型对圆柱形双管吸附式热泵的动态性能进行了数值分析,该模型同时考虑了传热和传质过程。该模型包括以下守恒方程式:加热/冷却流体中的热传递,金属管中的热传递以及吸附剂中的热和质量传递。使用线法对数学模型进行数值求解。对选择为工作对的水沸石13X进行了数值模拟。检查了蒸发器和冷凝器温度对吸附和解吸动力学的影响。数值研究的结果表明,这两个参数对吸附热泵的性能都有重要影响。根据计算机仿真结果,计算加热和冷却性能系数的值。结果表明,与其他热泵相比,吸附式热泵效率较低。用于加热的性能系数的值高于用于冷却的性能系数的值。

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