空腔物理理论在双层外墙施工中的应用

IF 1.1 Q4 MECHANICS Curved and Layered Structures Pub Date : 2021-11-03 DOI:10.1515/cls-2022-0004
B. Bielek, D. Szabó, J. Klem, Kristína Kaniková
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引用次数: 0

摘要

摘要本文论述了双层透明外墙作为一种新的透明外墙技术操作系统的问题。尤其是高层建筑,其运行模式巧妙地使用了可再生太阳能来减少建筑的能源需求。双层外墙正确发挥功能的基本前提是其在室外气候的任何气候条件下的功能空气动力学。在无风的临界状态下,双层表皮立面的气动量化是空腔的总气动阻力,它包括沿空气流线长度的气动摩擦阻力和空腔的局部气动阻力。本文分析了两种常见类型的窄型和走廊型双层外墙的功能空气动力学。最后,通过现场实验获得了功能空气动力学的温度、空气动力学和能量状态的结果。
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Application of physical theory of cavity in the construction of double skin facades
Abstract The article deals with the issue of double skin transparent facades as a new technological-operational system of transparent exterior walls. Especially of high-rise buildings, which with its operating modes ingeniously uses a renewable source of solar energy to reduce the energy needs of the building. The basic precondition for the correct function of the double skin facade is its functional aerodynamics in any climatic conditions of the outdoor climate. In the critical state of windlessness, the aerodynamic quantification of a double skin facade is the total aerodynamic resistance of the cavity, which consists of the aerodynamic frictional resistances along the length of the air flow line and local aerodynamic resistances of the cavity. The article analyses the functional aerodynamics on two frequented types of double skin facades with a narrow type and corridor type cavity. At the end it confronts functional aerodynamics with the results of their temperature, aerodynamic and energy regime obtained from in-situ experiments.
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来源期刊
CiteScore
2.60
自引率
13.30%
发文量
25
审稿时长
14 weeks
期刊介绍: The aim of Curved and Layered Structures is to become a premier source of knowledge and a worldwide-recognized platform of research and knowledge exchange for scientists of different disciplinary origins and backgrounds (e.g., civil, mechanical, marine, aerospace engineers and architects). The journal publishes research papers from a broad range of topics and approaches including structural mechanics, computational mechanics, engineering structures, architectural design, wind engineering, aerospace engineering, naval engineering, structural stability, structural dynamics, structural stability/reliability, experimental modeling and smart structures. Therefore, the Journal accepts both theoretical and applied contributions in all subfields of structural mechanics as long as they contribute in a broad sense to the core theme.
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