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Design and Simulation of an Air Conditioning Project in a Hospital Based on Computational Fluid Dynamics

机译:基于计算流体力学的医院空调工程设计与仿真

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This study aims to design a novel air cleaning facility which conforms to the current situation in China, and moreover can satisfy our demand on air purification under the condition of poor air quality, as well as discuss the development means of a prototype product. Air conditions in the operating room of a hospital were measured as the research subject of this study. First, a suitable turbulence model and boundary conditions were selected and computational fluid dynamics (CFD) software was used to simulate indoor air distribution. The analysis and comparison of the simulation results suggested that increasing the area of air supply outlets and the number of return air inlets would not only increase the area of unidirectional flow region in main flow region, but also avoid an indoor vortex and turbulivity of the operating area. Based on the summary of heat and humidity management methods, the system operation mode and relevant parameter technologies as well as the characteristics of the thermal-humidity load of the operating room were analyzed and compiled. According to the load value and parameters of indoor design obtained after our calculations, the airflow distribution of purifying the air-conditioning system in a clean operating room was designed and checked. The research results suggested that the application of a secondary return air system in the summer could reduce energy consumption and be consistent with the concept of primaiy humidity control. This study analyzed the feasibility and energy conservation properties of cleaning air-conditioning technology in operating rooms, proposed some solutions to the problem, and performed a feasible simulation, which provides a reference for practical engineering.
机译:这项研究旨在设计一种符合中国当前情况的新型空气净化设备,并且在满足空气质量差的条件下,可以满足我们对空气净化的需求,并讨论原型产品的开发方法。医院手术室的空气状况被测量为该研究的研究对象。首先,选择合适的湍流模型和边界条件,并使用计算流体力学(CFD)软件来模拟室内空气分布。仿真结果的分析与比较表明,增加送风口面积和回风口数量,不仅会增加主流区内单向流区的面积,而且还会避免室内涡流和运行湍流。区。在总结热量和湿度管理方法的基础上,对系统的运行模式和相关参数技术以及手术室的热湿负荷特性进行了分析和整理。根据我们计算后获得的室内设计的负荷值和参数,设计并检查净化手术室中净化空调系统的气流分布。研究结果表明,夏季使用二次回风系统可以减少能耗,并且与基本湿度控制的概念一致。该研究分析了手术室清洁空调技术的可行性和节能特性,提出了解决方案,并进行了可行的仿真,为实际工程提供参考。

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