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Causality issue in the heat balance method for calculating the design heating and cooling load

机译:计算设计加热和冷却负荷的热平衡方法中的因果关系问题

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Thermal load calculation based on dynamic models is widely used in simulation software and it is the method recommended by ASHRAE (American Society of Heating, Refrigeration and Air-Conditioning Engineers) and CEN (European Committee for Standardization, in French: Comite European de Normalisation). The principle is to make the heat balance for the air volume of a room space considered at uniform temperature and to calculate from this equation the load, i.e. the power needed to obtain the required indoor temperature. The problem is that, by doing so, the physical causality is not respected. If the model is approximated by a piece-wise linear dynamical system, this procedure results in an improper transfer function in the case of non-negligible thermal capacity of the indoor air. In order to point out this problem, a method to obtain state-space and transfer function models from thermal networks is introduced. Then, the transfer function representation is employed to show that changing the physical causality results in an improper transfer function. The practical consequence is that when the space temperature has a step variation, the calculated load tends to infinity if the simulation time step approaches zero. The issue of causality may be a problem in equation-based simulation software, such as Modelica, in which the equations do not represent causal relations: a wrong choice of the causality in a balance equation may result in an improper transfer functions.
机译:基于动态模型的热负荷计算已广泛用于仿真软件中,是ASHRAE(美国加热,制冷和空调工程师协会)和CEN(欧洲标准化委员会,法语:Comite European de Normalization)推荐的方法。 。原理是在考虑均匀温度的情况下,使房间空间的空气量达到热平衡,并根据此方程计算负载,即获得所需室内温度所需的功率。问题在于,这样做不遵守物理因果关系。如果通过分段线性动力学系统对模型进行近似,则在室内空气的热容不可忽略的情况下,此过程会导致传递函数不正确。为了指出这个问题,介绍了一种从热网络获得状态空间和传递函数模型的方法。然后,使用传递函数表示法来表明更改物理因果关系会导致传递函数不正确。实际的结果是,当空间温度具有阶跃变化时,如果模拟时间阶跃接近零,则计算出的负载趋于无穷大。因果关系的问题可能是基于方程的仿真软件(例如Modelica)中的一个问题,在该软件中,方程式不代表因果关系:在平衡方程中对因果关系的错误选择可能会导致传递函数不正确。

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