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Energy efficient design and simulation of a demand controlled heating and ventilation unit in a metro vehicle

机译:地铁车辆中按需控制的加热和通风单元的节能设计和模拟

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This paper presents a new control scheme for a heating and ventilation (HV) unit of metro vehicles and a realistic thermal simulation of the HV-unit's power consumption during operation. The model consists of the vehicle body with HV-unit, control scheme, operational and weather conditions, respectively. An additional model for the CO2-level in the vehicle is utilized to design the proposed control structure, which aims at controlling both indoor temperature and CO2-level. The simulation is performed for realistic operational and weather data over one year for a given geographical location in order to assess the energy saving potential of the proposed HV-control. Simulation results indicate that savings of some 325MWh or 150t CO2 greenhouse gas can be expected per train and year (12 HV-units per train).
机译:本文提出了一种用于地铁车辆的加热和通风(HV)单元的新控制方案,并对该运行期间HV单元的功耗进行了实际的热模拟。该模型分别由带有HV单元的车身,控制方案,操作和天气条件组成。利用车辆中CO 2 水平的附加模型来设计所提出的控制结构,该控制结构旨在同时控制室内温度和CO 2 水平。针对给定地理位置在一年内针对真实的操作和天气数据进行了仿真,以评估所提议的HV控制装置的节能潜力。模拟结果表明,每列火车每年可节省325MWh或150t CO 2 温室气体(每列火车12个HV单位)。

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