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Numerical investigation of coupled heat and mass transfer inside the adsorbent bed of an adsorption cooling unit

机译:吸附冷却装置吸附床内部传热传质耦合的数值研究

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In this study, the influence of several design parameters on the transient distributions of temperature, pressure and amount adsorbed in the radial direction of a cylindrical adsorbent bed of an adsorption cooling unit using silica gel/water have been investigated numerically. For this purpose, a transient one-dimensional local thermal non-equilibrium model that accounts for both internal and external mass transfer resistances has been developed using the local volume averaging method. For the conditions investigated, the validity of the local thermal equilibrium and spatially isobaric bed assumptions have been confirmed. To improve the performance of the bed considered, efforts should be focused on reducing heat transfer resistances and intra-particle (interior) mass transfer resistances but not inter-particle (exterior) mass transfer resistances.
机译:在这项研究中,数值研究了使用硅胶/水的吸附冷却装置的圆柱形吸附床径向上温度,压力和径向吸附量的瞬时分布的影响。为此,已经使用局部体积平均法建立了一个考虑内部和外部传质阻力的瞬态一维局部热非平衡模型。对于所研究的条件,已经确认了局部热平衡和空间等压床假设的有效性。为了改善所考虑的床的性能,应集中精力减少传热阻力和颗粒内(内部)传质阻力,而不是颗粒间(外部)传质阻力。

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