首页> 外文期刊>International Journal of Thermal Sciences >Mathematical modelling of a LiBr-H_2O absorption chiller including two-dimensional distributions of temperature and concentration fields for heat and mass exchangers
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Mathematical modelling of a LiBr-H_2O absorption chiller including two-dimensional distributions of temperature and concentration fields for heat and mass exchangers

机译:LIBR-H_2O吸收冷却器的数学建模,包括热和质量交换器的温度和浓度田的二维分布

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The paper presents the results of a theoretical analysis performed for a single-stage, water-lithium bromide absorption chiller at steady-state conditions. The model takes into consideration crosscurrent flow of fluids for heat and mass exchangers, two-dimensional distribution of temperature and concentration fields, local values of heat and mass transfer coefficients, thermal-parameter-dependent physical properties of working fluids and operation limits due to the danger of the LiBr-water hydrates and ice crystallisation. The main practical advantage of the model is the possibility to assess the influence of both the geometry parameters and operation parameters on thermal performance of the absorption chiller. The results derived from the implementation of the water vapour absorption process model for a horizontal tube absorber are consistent with the experimental measurements found in the literature.
机译:本文介绍了在稳态条件下对单级水锂溴化物吸收冷却器进行的理论分析的结果。 该模型考虑了热量和质量交换器的横流流量,温度和浓度场的二维分布,热量和传质系数的局部值,工作流体的热参数依赖性物理性质和由于所造成的操作限制 Lib水水合物和冰结晶的危险。 该模型的主要实际优势是评估几何参数和操作参数对吸收冷却器的热性能的影响。 源自水平管吸收器的水蒸汽吸收过程模型的实施结果与文献中发现的实验测量相一致。

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