建筑一体化热电空调——一种潜在的完全环保的建筑服务解决方案

Q1 Engineering
Xiaoli Ma, Han Zhao, Xudong Zhao, Guiqiang Li, Samson Shittu
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引用次数: 10

摘要

传统蒸汽压缩空调系统中使用的制冷剂对全球环境有不利影响。有人提议在未来20年内逐步减少暖通空调设备中的氢氟碳化合物制冷剂。一种热电空调系统,使用简单的固态半导体器件将电能直接转换为热能,具有环保、无制冷剂、非常紧凑、可靠性高、无移动部件(小型风扇除外)的优点,并且可以容易地集成到建筑结构中。然而,现有的热电空调系统存在性能系数低的问题,这限制了其在家用空调中的应用。随着热电技术的发展,上述问题有望得到解决。本文概述了热电材料、热电模块设计以及热电加热和冷却系统设计的最新进展,这些进展将为大大提高热电空调的COP提供潜力。此外,将热电系统的废热用于家庭应用,以提高系统的整体COP,将是促进公众采用TE空调的理想方式,本文对此进行了讨论。本文还概述了现有的建筑集成热电空调系统,并提出了一种新型的建筑集成电热系统,该系统将热电热泵机组集成到双层通风立面中,为建筑提供供暖和制冷、热回收通风以及生活热水或干燥服务,基于热电废热利用。介绍了该系统的几种建筑集成方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building Integrated Thermoelectric Air Conditioners—A Potentially Fully Environmentally Friendly Solution in Building Services
The refrigerants used in conventional vapor-compression air conditioning systems have detrimental effects on the global environment. Phasing-down hydrofluorocarbon (HFC) refrigerants for HVAC equipment over the next 20 years has been proposed. A thermoelectric air conditioning system that directly converts electrical energy to thermal energy using a simple solid-state semiconductor device, has the advantages of environmentally friendly, no refrigerant, very compact, high reliability, no moving parts (except for small fans), and it can be easily integrated into the building structure. However, the existing thermoelectric air conditioning systems have the problem of low Coefficient of Performance (COP), which limits its applications for domestic air conditioning. With the development of the thermoelectric technologies, the above problem is prospected to be solved. The paper presents an overview of recent advances in thermoelectric materials, thermoelectric module design and thermoelectric heating and cooling system design which would provide the potential to greatly improve the COP of the thermoelectric air conditioner. In addition, utilizing the waste heat of the thermoelectric system for domestic applications to improve the overall COP of the system would be an ideal way to promote public adoption of the TE air conditioner, which is discussed in this paper. The paper also presents an overview of the existing building integrated thermoelectric air conditioning systems and proposes a novel building integrated thermoelectric system that integrates a thermoelectric heat pump unit into a double-skin ventilated facade to provide heating and cooling, heat recovery ventilation and domestic hot water or drying services for buildings, based on the thermoelectric waste heat utilization. Several building integration methods of the proposed system are presented.
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来源期刊
Future Cities and Environment
Future Cities and Environment Engineering-Architecture
CiteScore
3.10
自引率
0.00%
发文量
7
审稿时长
17 weeks
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