对热交换器改进的贡献

Maher Mkhinini, Ameni Dridi
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引用次数: 0

摘要

建筑消耗了世界上很大一部分的能源,并随之产生了重要的二氧化碳排放。建筑能耗的一半以上用于供暖、通风和空调。热交换器是供暖、空调和制冷系统的重要组成部分。它允许两种流体之间的热量传递,而不会混合。这种转移通过具有高导电性的墙壁进行。有不同类型的热交换器,用于不同的领域。在我们的解释下,找出你需要知道的关于热交换器的一切,从它的工作原理到它的效率,包括可以找到的不同类型。在这项工作中,我们将解决两个主要问题:第一是腐蚀引起的复杂性(材料问题),第二是能源成本问题。因此,我们将设计和开发一种基于传递函数的绿色地板系统热交换器替代模型,表明热交换的动态行为比基于有限元方法的旧方法更快。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contribution to the Improvement of a Heat Exchanger
Buildings consume a significant portion of the energy used in the world and subsequently an important CO2 emission. More than half of the energy consumed in buildings goes for heating, ventilation and air conditioning. The heat exchanger is an essential part of heating, air conditioning and refrigeration systems. It allows the transfer of heat between two fluids, without them mixing. This transfer takes place through a wall with high conductive capacities. There are different types of heat exchangers, used in different fields. With our explanations, find out everything you need to know about the heat exchanger, from its operating principle to its efficiency, including the different types that can be found. In this work, we will address two major problems: the first one is the complications caused by corrosion (material problem) and the second one is the energy cost problem. Thus, we will design and develop a Green floorsystem heat exchanger to surrogate model based on transfer functions showing that the dynamic behaviour of the heat exchange is faster than old methods based on the finite element method.
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