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Studying the heat and mass transfer process of liquid desiccant for dehumidification and cooling

机译:研究用于干燥和冷却的液体干燥剂的传热传质过程

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摘要

Desiccant-based dehumidification has gained significant attention in recent years to develop the energy efficient hybrid air-conditioning systems particularly for the tropical climate. Thus far, complex and tedious theoretical models have been developed to analyze the heat and mass transfer phenomena involved in liquid desiccant dehumidification processes. In the present study, a simple theoretical model has been presented to quantify the heat and mass transfer rates of the water-cooled liquid desiccant dehumidification and cooling processes for air-conditioning applications. Seven coupled ordinary differential equations have been developed to describe the complex heat and mass transfer processes. As far as the solution approach and practical application are concerned, the governing equations are solved simultaneously using the numerically stable 4th order Runge-Kutta scheme while preserving its accuracy to 6% in construct to full-scale model simulation. The developed model is rationally modified to study the performance of adiabatic dehumidifiers. The dehumidification and cooling performances of the adiabatic and water-cooled dehumidifiers are analyzed over a wide range of operating conditions. Finally, the energy performance enhancement potentials of the hybrid liquid desiccant air-conditioning system have been demonstrated. By analyzing the dehumidification and cooling performance, an energy saving of up to 25% can be achieved using the hybrid air-conditioning systems.
机译:近年来,以干燥剂为基础的除湿已经得到了广泛的关注,以开发节能型混合空调系统,特别是针对热带气候。迄今为止,已经开发出复杂而乏味的理论模型来分析液体干燥剂除湿过程中的传热和传质现象。在本研究中,已经提出了一种简单的理论模型来量化用于空调应用的水冷式液体干燥剂除湿和冷却过程的传热和传质速率。已经开发了七个耦合的常微分方程来描述复杂的传热和传质过程。就解决方法和实际应用而言,使用数值稳定的四阶Runge-Kutta方案同时求解控制方程,同时在构造至全面模型仿真时将其精度保持在6%。对开发的模型进行了合理修改,以研究绝热除湿机的性能。绝热和水冷式除湿机的除湿和冷却性能在各种运行条件下进行了分析。最后,已经证明了混合液体干燥剂空调系统的能量性能增强潜力。通过分析除湿和制冷性能,使用混合空调系统可节省多达25%的能源。

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