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首页> 外文期刊>Energy and Buildings >Study of coupled transient radiation-natural convection heat transfer across rectangular cavities in the vicinity of low emissivity thin films for innovative building envelope applications
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Study of coupled transient radiation-natural convection heat transfer across rectangular cavities in the vicinity of low emissivity thin films for innovative building envelope applications

机译:研究低辐射率薄膜附近矩形腔之间的瞬态辐射-自然对流耦合传热,用于创新建筑围护结构应用

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The coupled natural convection-radiation heat transfer across cavities is an extremely important research issue commonly encountered in many innovative building envelope applications. Extensive both experimental and numerical studies were conducted to analyse the natural convection flow coupled with radiation heat transfer across vertical and inclined rectangular cavities, proposing accurate empirical or regression correlations according to the particularities of the studied cavity problem. Nevertheless, there is a lack of correlations accurate and adapted enough to model coupled natural convection-radiation across cavities in the vicinity of low emissivity surfaces. The present work aims to cover this subject, through an exhaustive numerical analysis validated and evaluated enough with the use of experimental data. A numerical model is firstly updated to simulate infrared radiation and convective heat transfer across a sophisticated innovative building envelope prototype, while 8 different approximations have been implemented in the model in order to evaluate a variety of available correlations on the subject. Formerly the numerical approach presented here used available experimental data for the same prototype. The air's temperature experimental data served as input to the model boundaries in order to exactly impose the same initial conditions for obtaining the results. Furthermore, experimental data regarding the temperature on the sample's interfaces were used for validating the proposed theoretical model. Satisfactory enough agreements are observed between the theoretically simulated and experimentally measured temperatures and the model is afterwards evaluated to determine the most accurate approximation. Finally, the numerical study presented in this paper concluded in the proposition of 2 new updated correlations to model natural convection across vertical cavities in the vicinity of low emissivity surfaces with the perspective to further support their implementation into Computational Fluid Dynamic (CFD) codes. (C) 2016 Elsevier B.V. All rights reserved.
机译:跨腔的自然对流-辐射耦合传热是许多创新建筑围护结构应用中经常遇到的极为重要的研究问题。进行了广泛的实验和数值研究,以分析自然对流流动与辐射热在垂直和倾斜矩形腔体上的传递,并根据所研究腔体问题的特殊性提出了精确的经验或回归相关性。然而,仍然缺乏足够精确的相关性和适应性,无法对低辐射率表面附近腔内的自然对流辐射耦合进行建模。本工作旨在通过使用实验数据进行充分验证和评估的详尽的数值分析来涵盖这一主题。首先更新了一个数值模型,以模拟跨复杂的创新建筑围护结构原型的红外辐射和对流传热,同时在该模型中实现了8种不同的近似值,以评估与该主题相关的各种可用相关性。以前,此处提供的数值方法使用的是相同原型的可用实验数据。空气的温度实验数据用作模型边界的输入,以便精确施加相同的初始条件以获得结果。此外,有关样品界面温度的实验数据用于验证所提出的理论模型。在理论上模拟的温度和实验测量的温度之间观察到足够令人满意的一致性,随后对模型进行评估以确定最准确的近似值。最后,本文提出的数值研究得出以下结论:提出了两个新的更新的相关性,以对低发射率表面附近的垂直腔内的自然对流建模,以进一步支持将其实现为计算流体力学(CFD)代码。 (C)2016 Elsevier B.V.保留所有权利。

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