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Implementation and Experimental Study of Medical Ward Air Conditioning System Control

机译:医疗区空调系统控制的实施与实验研究

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This paper focuses on the design, implementation, and micro dusty experimental and analysis of the medical ward air conditioning system control. The original air conditioning cycle design airflow rate must not only be maintained, but also the same amount of supply air and return air. It is mainly directed toward the environmental quality of the air conditioning renovation, including micro dusty, temperature, humidity, indoor differential pressure, and air speed impact experimental analysis. Hospitals need long-term air conditioning operation to maintain cleanliness indoor with temperature and humidity control. As a result, the hospital will have a heavy electricity loading. Therefore, the medical ward must reduce the air conditioning cycle times to reach a comfortable indoor environment with constant temperature and humidity, using an individual air conditioning control and inverter control motor system. This process will add to automatic fan valve maintenance temperature, humidity, micro dusty in ISO 14644-1 standard class 10,000 and indoor air quality improvement. Moreover, this process will reduce air conditioning loading and improve good environmental quality.
机译:本文侧重于医疗区空调系统控制的设计,实施和微尘的实验和分析。最初的空调循环设计气流率不仅必须保持,而且不仅相同的供应空气和返回空气。主要针对空调改造的环境质量,包括微尘密,温度,湿度,室内差压和空气速度影响实验分析。医院需要长期空调操作,以维持温度和湿度控制的清洁度。结果,医院将具有沉重的电力载荷。因此,使用单独的空调控制和逆变器控制电动机系统,医疗病房必须减少空调循环时间以达到恒温和湿度的舒适室内环境。该过程将增加自动风扇阀维修温度,湿度,ISO 14644-1标准10,000级和室内空气质量改进。此外,该过程将减少空调装载并提高良好的环境质量。

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