带电器的简化建筑模型热参数辨识

Herie Park, M. Ruellan, A. Bouvet, E. Monmasson, R. Bennacer
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引用次数: 50

摘要

为了降低住宅建筑的热能需求,保温和室内气密性变得越来越重要。然而,在绝缘良好的环境中,由太阳辐射、家用电器(如冰箱、灯、电视等)的新陈代谢和损耗引起的内部热增益可能是家庭全球能源管理的主导因素。为了量化和模拟由家用电器引起的热增益,我们在一个隔热良好的房间里开始实验测量。这项工作的第一步是鉴定房间。本文提出了一种1R1C集总参数电路,该电路采用热电类比法建立了建筑热模型。然后,我们从热平衡方程和实验结果中确定了电路元件(全局热敏电阻和全局热电容)。根据模型和得到的参数,利用Matlab/Simulink对模型的室内温度进行了仿真。为了验证其准确性,我们将实测数据与仿真结果进行了比较,并计算了它们的误差率。
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Thermal parameter identification of simplified building model with electric appliance
In order to reduce heat energy demand in residential building, thermal insulation and indoor air tightness become more important. However, in a well-insulated environment, internal heat gain caused by solar radiation, metabolism and losses of home electric appliance (i.e. refrigerator, lamp, television, etc.) can be dominant to home global energy management. To quantify and to modelize the heat gain due to home appliances, we begin experimental measurements in a well-insulated room. The first step in this work is the identification of the room. In this paper we suggest a 1R1C lumped parameter circuit which presents a building thermal model using thermal-electric analogy. Then, we identify the circuit components (the global thermal resistor and the global thermal capacitor) from the heat balance equation and experimental results. Based on the model and the obtained parameters, we simulate the indoor temperature of the model using Matlab/Simulink. To check its accuracy we compare the measured data and simulation results and calculate their error ratio.
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