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Numerical modeling of combined heat and mass transfer in the adsorbent bed of a zeolite/water cooling system

机译:沸石/水冷却系统吸附床中传热传质联合的数值模型

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A zeolite-13X/water adsorption-cooling system based on cylindrical double-tube adsorbent beds, heated or cooled by an external fluid is studied numerically. A two-dimensional non-equilibrium numerical model describing the combined heat and mass transfer in adsorbent bed is presented. As the performance of this system is mainly influenced by the heat and mass transfer properties, three sub-models of heat and mass transfer properties (gas flow in adsorbent bed model, lineal force driven model and equivalent heat transfer conductivity of adsorbent bed model) of the adsorbent bed are proposed in this model. The effect of main configuration parameters such as the heat and mass transfer coefficients, thickness of the bed, diameter of the particle and porosity, on the thermal performance of the system are investigated. It is found that the performance can be strongly influenced by the adsorbent thickness and porosity of the adsorbent bed, while the variation of particle size has minimal effect on the performance. Furthermore, the effect of generation temperature on thermal performance was also investigated.
机译:数值研究了一种基于圆柱形双管吸附床的沸石13X /水吸附-冷却系统,该床被外部流体加热或冷却。建立了二维非平衡数值模型,描述了吸附床传热传质的综合过程。由于该系统的性能主要受传热和传质特性的影响,因此存在以下三个传热和传质特性的子模型(吸附剂床模型中的气体流量,线性力驱动模型和吸附剂床模型的等效传热系数)。该模型提出了吸附床。研究了主要结构参数,例如传热和传质系数,床层厚度,颗粒直径和孔隙率,对系统热性能的影响。已经发现,吸附床的吸附剂厚度和孔隙率对性能的影响很大,而粒径的变化对性能的影响很小。此外,还研究了生成温度对热性能的影响。

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