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A static moving boundary modelling approach for simulation of indirect evaporative free cooling systems

机译:用于间接蒸发自然冷却系统仿真的静态运动边界建模方法

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摘要

Evaporative Cooling and Free-Cooling technologies have gained a growing interest in air-conditioning systems and they are suitable in different air conditioning applications: commercial, industrial, residential, and data centers. The Evaporative Cooling technologies are environmentally friendly and they have a very low global warming impact. Moreover, under the right applications, conditions, and operations, these technologies can provide excellent cooling and ventilation with minimal energy consumption. Since computing experiment based on mathematical modelling enables conduction of research in a shorter time and at smaller costs, in this paper first we develop a First-Principle Data-Driven model for an Indirect Evaporative Cooling system with Free Cooling and then we accordingly design a Matlab-based simulation environment. In particular, we model the key component, i.e. the evaporative heat exchanger, by means of a static Moving Boundary approach that segments the heat exchanger depending on the physical phenomena that occur inside it, providing a good balance between model complexity and accuracy. Simulation examples show how the model mimics properly some fundamental thermal aspects of the indirect evaporative cooling process.
机译:蒸发冷却和自由冷却技术已越来越受到空调系统的关注,它们适用于不同的空调应用:商业,工业,住宅和数据中心。蒸发冷却技术环保,对全球变暖的影响很小。此外,在正确的应用,条件和操作下,这些技术可以以最小的能耗提供出色的冷却和通风。由于基于数学建模的计算实验可以在更短的时间内以较低的成本进行研究,因此在本文中,我们首先为具有自然冷却的间接蒸发冷却系统开发了第一性原理数据驱动模型,然后相应地设计了Matlab基于仿真的环境。特别是,我们通过静态移动边界方法对关键组件(即蒸发热交换器)进行建模,该方法根据热交换器内部发生的物理现象对热交换器进行分段,从而在模型复杂性和准确性之间取得了良好的平衡。仿真示例显示了模型如何正确模拟间接蒸发冷却过程的一些基本热方面。

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