首页> 外文期刊>Environmental engineering and management journal >THERMAL COMFORT AND VENTILATION CONDITIONS IN HEALTHCARE FACILITIES - PART 2: IMPROVING INDOOR ENVIRONMENT QUALITY (IEQ) THROUGH VENTILATION RETROFITTING
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THERMAL COMFORT AND VENTILATION CONDITIONS IN HEALTHCARE FACILITIES - PART 2: IMPROVING INDOOR ENVIRONMENT QUALITY (IEQ) THROUGH VENTILATION RETROFITTING

机译:医疗保健设施的热舒适和通风条件 - 第2部分:通过通风改装改善室内环境质量(IEQ)

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摘要

The basic purpose of a hospital is to provide a cure to the ailing patients. Since the patients are already suffering from ailments, the hospital must be a place for comfort and mental peace. Indoor Environmental Quality plays a vital role in maintaining that comfort. The hospital building must be designed on the standards to provide the required thermal comfort. If the building is already built and operational, retrofitting techniques are used to maintain the standard values of indoor environmental quality. In this study, three indoor environmental quality parameters (temperature, relative humidity, and CO2) are identified after quantitative analysis. Each of the parameters correlates with ventilation rates of the selected location. Based on that relation, the required range of ventilation rates was calculated by simulation of equations, identified from the literature. AnyLogic7 was used for the modeling and simulation of the equations. For the required ventilation rates, retrofitting techniques providing optimum cost and efficiency were identified for each location. It was concluded that the existing indoor environmental quality of hospital buildings can be improved with suitable retrofitting techniques, which can increase the efficiency of the HVAC system, resulting in overall reduced energy consumption.
机译:医院的基本目的是为疾病患者提供治愈。由于患者已经患有疾病,因此医院必须是一个舒适和精神和平的地方。室内环境质量在维持这种舒适方面发挥着至关重要的作用。医院建筑必须设计在标准上,以提供所需的热舒适度。如果建筑物已经构建并运行,则使用改装技术来维持室内环境质量的标准值。在本研究中,定量分析后鉴定了三种室内环境质量参数(温度,相对湿度和CO2)。每个参数与所选位置的通风速率相关联。基于该关系,通过鉴定从文献中鉴定的方程来计算所需的通风率范围。 AnyLogic7用于方程的建模和仿真。对于所需的通风速率,为每个位置识别提供提供最佳成本和效率的改造技术。得出的结论是,现有的室内环境质量的住院建筑物可以采用合适的改造技术来改善,这可以提高HVAC系统的效率,从而整体降低能耗。

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