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Influence of the optical and geometrical properties of indoor environments for the thermal performances of chilled ceilings

机译:室内环境的光学和几何特性对冷藏天花板的热性能的影响

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摘要

The sizing of radiant ceilings for cooling applications requires the correct evaluation of the dynamic removal thermal loads in indoor environments. The evaluation of thermal power removed by convection, infrared radiation and direct absorption of solar radiation incident on ceiling surface, called direct water load (DWL), for systems with low thermal inertia (chilled ceilings or ceilings made by capillary pipes) has to be carried out. The latter contribution must be evaluated in an accurate way because it is not a thermal load for indoor environment and strongly modifies the thermal balance in the air-conditioned volume. In order to evaluate DWL, a parametric study developed as a function of the main optical and geometrical characteristics of the cavity has been carried out with TRNSYS code. The development of a case study has highlighted the dynamic aspects of the several contributions involved in the thermal loads removal. The obtained results have allowed the definition of a new calculation methodology to evaluate the effective solar radiation absorbed by the cavity and, subsequently, to determine the fraction of solar radiation incident on ceiling surface and removed by DWL Its evaluation has allowed estimation of the DWL incidence on the sizing procedure of light radiant ceiling for cooling applications.
机译:用于制冷应用的辐射天花板的尺寸要求正确评估室内环境中动态去除的热负荷。对于热惯性低的系统(冷藏天花板或毛细管制成的天花板),必须对通过对流,红外辐射和入射到天花板表面的太阳辐射的直接吸收除去的热能进行评估,称为直接水负荷(DWL)。出来。后者的贡献必须以准确的方式进行评估,因为它不是室内环境的热负荷,并且会极大地改变空调空间的热平衡。为了评估DWL,使用TRNSYS代码进行了根据腔体主要光学和几何特性而开发的参数研究。案例研究的发展突出了涉及热负荷消除的若干方面的动态方面。获得的结果允许定义一种新的计算方法,以评估由空腔吸收的有效太阳辐射,然后确定入射到天花板表面并被DWL去除的太阳辐射的比例。其评估可以估算DWL的入射率冷却应用中的辐射天花板的选型程序。

著录项

  • 来源
    《Energy and Buildings》 |2015年第2期|229-237|共9页
  • 作者单位

    Mechanical, Energetic and Management Engineering Department, University of Calabria, Ponte P. Bucci 46/C, ZIP 87036 Arcavacata di Rende, Cosenza, Italy;

    Mechanical, Energetic and Management Engineering Department, University of Calabria, Ponte P. Bucci 46/C, ZIP 87036 Arcavacata di Rende, Cosenza, Italy;

    Mechanical, Energetic and Management Engineering Department, University of Calabria, Ponte P. Bucci 46/C, ZIP 87036 Arcavacata di Rende, Cosenza, Italy;

  • 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

    Chilled ceilings; Solar heat gains; Cooling loads; Buildings dynamic simulation;

    机译:冷冻天花板太阳热量的获取;冷却负荷建筑物动态模拟;

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