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On the error of calculation of heat gains through walls by methods using constant decrement factor and time lag values

机译:关于使用恒定减量因子和时滞值的方法计算通过墙的热量获取的误差

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摘要

A transient heat transfer model was developed to numerically predict the thermal behaviour of the external walls of a room under realistic outdoor conditions. The excitation is not simply sinusoidal even though it is considered to have daily periodicity. The numerical model is based on the finite difference method and handles one-dimensional heat conduction through multilayered walls. The boundary condition at the outer surface of the wall is described with the sol-air temperature concept. The temperatures of indoor air and of other internal surfaces in the room are assumed to be equal and constant. The numerical results were used to calculate values of the decrement factor and time lag of several walls. The calculation followed two methods found in literature, in which these parameters are assumed constant, distinguished by the temperature evolution used: the sol-air or the wall's outer surface. Additionally, the inner surface temperature is used in both methods. The walls investigated range from low to high mass construction, face towards various directions and have light or dark coloured sunlit outer surfaces. The heat fluxes at the inner surface of the walls predicted by numerical modelling and estimated by the simplified methods are compared in detail to conclude on the validity of these simplified methods. As a by-product it is also possible to conclude on the dependence of the decrement factor and of the time lag on the outer surface colour and on the orientation of different types of walls. The results show that both simplified methods have poor accuracy in a significant number of cases. Also, it was found that the wall's azimuth significantly affects the time lag.
机译:开发了瞬态传热模型,以数字方式预测实际室外条件下房间外墙的热行为。即使被认为具有每日周期性,激励也不只是正弦的。数值模型基于有限差分法,处理多层壁的一维热传导。用溶胶空气温度概念描述了壁外表面的边界条件。假定室内空气和室内其他内部表面的温度相同且恒定。数值结果用于计算几个墙的减量系数和时滞值。该计算遵循文献中发现的两种方法,其中假定这些参数为常数,并通过所使用的温度演变加以区分:溶胶-空气或墙的外表面。另外,两种方法都使用内表面温度。研究的墙壁从低质量建筑到高质量建筑,面朝不同方向,并具有浅色或深色阳光照射外表面。详细比较了通过数值模型预测和通过简化方法估算的壁内表面处的热通量,以得出这些简化方法的有效性。作为副产品,还可以得出结论,即递减系数和时间滞后取决于外表面颜色以及不同类型的墙的方向。结果表明,在许多情况下,两种简化方法的准确性均较差。此外,还发现墙壁的方位角会显着影响时间延迟。

著录项

  • 来源
    《Energy and Buildings》 |2013年第5期|252-261|共10页
  • 作者单位

    Departamento de Engenharia Mecanica, Instituto Superior de Engenharia, Universidade do Algarve, Campus da Penha, 8005-139 Faro, Portugal,ADAI-LAETA,Departamento de Engenharia Mecanica. Universidade de Coimbra, Rua Luis Reis Santos, 3030-788 Coimbra. Portugal;

    Departamento de Engenharia Mecanica e Industrial, Faculdade de Ciencias e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal;

    UNIDEMI, Faculdade de Ciencias e Tecnologia, Universidade Nova de Lisboa,2829-516 Caparica, Portugal,Departamento de Engenharia Mecanica e Industrial, Faculdade de Ciencias e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multilayer wall; transient heat transfer; decrement factor; time lag;

    机译:多层墙瞬态传热递减系数;时差;

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