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A modular approach to dynamic modelling of heat exchangers in vapor compression cycles

机译:蒸汽压缩循环中热交换器动态建模的模块化方法

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This paper describes a modular approach to the dynamic modelling of heat exchangers (condenser and evaporator) in vapor compression cycles. The model of the heat exchangers is obtained by properly connecting a small number of generic modules where a fluid flows, exchanging heat and, possibly, changing state (from liquid to vapor and vice-versa). The dynamic model of the generic element is phase-independent and is valid in every working condition. Unlike other approaches described in the literature, the mass exchange rate from vapor to liquid is explicitly computed in order to comply with state-trajectories constraints which are defined according to the current phase condition and highlighting when a phase-transition is possible. This leads to an effective representation of constrained evolutions and smooth jumps among different phases. The proposed dynamic elements are characterized by dynamic-orientation of some interface variables; this crucial feature for correct modelling is treated carefully in composing them and a suitable standardized interface is defined.
机译:本文介绍了蒸汽压缩循环中热交换器(冷凝器和蒸发器)的动态建模的模块化方法。通过适当地连接流体流动,更换热量和可能改变状态(从液体到蒸汽和反之亦然)来获得热交换器的模型。通用元素的动态模型是相位无关的,并且在每个工作条件下都有效。与文献中描述的其他方法不同,明确计算来自蒸汽到液体的批量交换速率,以符合根据当前相位状况定义的状态轨迹约束,并在可能的相位转换时突出显示。这导致有效地表示受约束的演变和不同阶段之间的平滑跳跃。所提出的动态元素的特点是某些界面变量的动态定向;正确建模的这种关键特征在组合它们方面仔细进行处理,并且定义了合适的标准化接口。

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