关于将相变涂层材料纳入建筑围护结构的经济评估综述

Amal Ahmed, Germin Elgohary, Ashraf Nessim
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摘要

全球范围的能源危机使节能成为几乎每个国家都关注的话题。以往的研究已经探索了使用相变材料(PCM)等热能储存材料(TES)作为一种有效的节能技术。在各种浸泡技术中,宏观封装技术被证明是高效、安全和方便的。然而,由于可用的 PCM 类型、封装材料和封装形状多种多样,选择合适的 PCM 系统可能会很复杂。此外,虽然宏观封装 PCM 系统效率高,但其可行性取决于多个因素,包括能源价格、经济形势和气候条件。因此,本研究旨在提供一个全面的概述,帮助人们更深入地了解宏观封装 PCM 系统的设计和应用。它解释了不同类型的 PCM、封装材料和封装形状,指导人们根据周围环境选择最合适的系统。此外,它还旨在为开展 PCM 等节能系统的可行性研究提供指导。为了找出评估系统可行性的最准确方法,我们对涉及 PCM 热性能和经济评估之间交叉点的 80 篇研究论文进行了分类、研究和分析。通过提供有关系统各要素的各种类型以及选择各要素的相关因素的基础知识,这项研究将有助于工程师合理地设计系统。此外,为系统评估提供详细的指导,将有助于决策者确定系统的可行性,从而促进系统的应用。最后,本研究还调查并解决了未来研究的关键问题。
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مراجعة على التقييم الاقتصادي لدمج المواد المغلفة متغيرة الطور في أغلفة المباني
The worldwide energy crisis has made energy-saving a topic of concern in almost every country. Previous research has explored the use of thermal energy storage materials (TES), such as phase change materials (PCMs), as an effective energy-saving technique. Among various immersion techniques, macro-encapsulation has proven to be efficient, safe, and convenient. However, choosing the right PCM system can be complicated due to the variety of available PCM types, encapsulation materials, and encapsulation shapes. Moreover, while macro-encapsulated PCM systems are efficient, their feasibility depends on several factors, including energy prices, economic situation, and climatic conditions. Therefore, this research aims to provide a comprehensive overview to help create a deeper understanding of the design and application of macro-encapsulated PCM systems. It explains the different types of PCM, encapsulation materials, and encapsulation shapes, guiding the selection for the most appropriate system regarding the surrounding environment. Additionally, it aims to present a guideline for conducting feasibility studies on energy-saving systems such as PCM. A total of 80 research papers covering the intersection between the thermal performance of PCM and the economic assessment have been categorized, studied, and analyzed in order to identify the most accurate method of assessing the system’s feasibility. By providing a base knowledge regarding the various types of each element of the system and the factors that govern the selection of each, this research will help engineers appropriately design the system. In addition, providing a detailed guideline to the assessment of the system shall aid the decision makers in determining the system’s feasibility which encourages its application. Finally, the research investigates and addresses the key issues for future studies. 
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