简单建筑能源系统的建模与仿真

V. Harish, Arun Kumar
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引用次数: 7

摘要

建立了建筑能源系统(BES)的数学模型,该模型映射了建筑空间内发生的能量传递过程。构成建筑空间的建筑元素以及为居住者提供热舒适的供暖和制冷设备也被建模。这涉及量化温度和湿度条件与建筑空间内的占用水平(占用人数、占用时间表)之间的联系。模拟了建筑元素每个表面的导热、对流和辐射热平衡以及建筑空间的对流热平衡的热能传递过程。对建筑空间区域的显热能和潜热传递进行了建模。采用状态空间方法对墙体等建筑构件进行建模,参数估计采用带约束的非线性时不变优化算法。暖通空调系统采用控制阀,热辐射器,占用驱动通风,通过PID控制器控制。提出了一种基于建筑物理第一性原理的完整的建筑能源系统(BES)建模方法。利用MATLAB/Simulink对BES模型进行了仿真,结果表明该模型在较短的计算时间内就能较好地描述建筑空间内的温度变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and simulation of a simple building energy system
A mathematical model for building energy systems (BES) is developed which maps the energy transfer processes occurring within the building space. Construction elements making up the building space and the heating and cooling plant responsible for thermal comfort of the occupants are also modeled. This involved quantification of linkages between temperature and humidity conditions and level occupancy (number of occupants, occupancy schedule) within building space. Thermal energy transfer processes of conductive, convective, and radiative heat balance for each surface of the construction elements and a convective heat balance for the building space are modeled. Building space zone is modelled for both sensible and latent thermal energy transfer. State space approach is used to model the building construction elements such as walls, with the parameters estimated using a nonlinear time invariant optimization algorithm with constraints. HVAC system is modelled with a control valve, heat emitter, occupancy driven ventilation controlled through a PID controller. A complete building energy system (BES) modeling procedure based on first principles of building physics is presented. BES model is simulated using MATLAB/Simulink and the results depict the temperature variations within the building space at less computational times.
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