首页> 外文期刊>International Journal of Heat and Mass Transfer >Design and performance evaluation of a multilayer fixed-bed binder-free desiccant dehumidifier for hybrid air-conditioning systems: Part Ⅱ - Theoretical analysis
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Design and performance evaluation of a multilayer fixed-bed binder-free desiccant dehumidifier for hybrid air-conditioning systems: Part Ⅱ - Theoretical analysis

机译:混合空调系统多层固定床无粘结剂干燥剂除湿器的设计与性能评估:第二部分-理论分析

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The interdependent physics involved in the transport, adsorption, and thermal phenomena within desiccant-based dehumidifiers makes the construction of theoretical models essential to investigate intrinsic mechanisms. In Part II of this series, a computational model is established that increases an understanding of transient mass and heat transfer phenomena in a multilayer fixed-bed binder-free desiccant dehumidifier (MFBDD). A two-dimensional (2D) model incorporating the principles of momentum, mass and heat conservation is constructed. A modification of Darcy's law is employed to evaluate the fric-tional resistance due to the presence of Micro Sphere Gel (M. S. Gel) beads in the desiccant bed. In the study, the moisture adsorption characteristics of M. S. Gel are theoretically described by employing a Linear Driving Force (LDF) model and a modified Langmuir-Sips model (based on the local relative humidity RH) owing to the unique sigmoid-shape of its adsorption isotherm at various temperature levels. The energy conservation is considered to estimate phase transition latent heat because of the moisture adsorption and heat loss to surroundings through the metal frames at different process air conditions. The validity of the model is tested by comparing the theoretical predictions with experimental observations. The results indicate that the predicted adsorbed water within the MFBDD, dehumidification capacity, temperature increase, and pressure decrease based on the simulation are in quantitative agreement with the experimental results obtained in Part I. The experimentally observed transient transloca-tion of maximum temperature inside the M. S. Gel bed is theoretically reproduced and analyzed.
机译:在基于干燥剂的除湿机中,涉及传输,吸附和热现象的相互依赖的物理学使得构造理论模型对于研究内在机理至关重要。在本系列的第二部分中,建立了计算模型,该模型增加了对多层固定床无粘合剂干燥剂除湿机(MFBDD)中瞬态质量和传热现象的理解。建立了包含动量,质量和热量守恒原理的二维(2D)模型。由于干燥床中存在Micro Sphere Gel(M. S. Gel)磁珠,因此采用了达西定律的修改方法来评估摩擦阻力。在这项研究中,由于其吸附的独特的S型曲线,通过线性驱动力(LDF)模型和改进的Langmuir-Sips模型(基于局部相对湿度RH)从理论上描述了MS Gel的水分吸附特性在各种温度水平下的等温线。能量守恒被认为是估计相变潜热的原因,因为在不同的工艺空气条件下,水分的吸收和热量通过金属框架流失到周围环境中的热量。通过将理论预测与实验观察相比较,测试了模型的有效性。结果表明,基于模拟的MFBDD内预测的吸附水,除湿能力,温度升高和压力降低与第一部分中的实验结果在定量上吻合。从理论上复制和分析了MS凝胶床。

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