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On coupling 1D non-isothermal heat and mass transfer in porous materials with a multizone building energy simulation model

机译:用多区域建筑能量模拟模型耦合多孔材料中的一维非等温传热和传质

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摘要

Hygroscopic materials available in the interior of buildings such as wood, gypsum, paper etc, are able to absorb moisture if the relative humidity of the room increases and release it again if the relative humidity decreases. This moisture buffering phenomenon is often accounted for in a simplified way in Building Energy Simulation programs (BES) e.g. TRNSYS, which limits their applicability. Nevertheless several building applications require an accurate prediction of the indoor relative humidity already from the design stage.rnThis paper presents the development and possibilities of a coupled TRNSYS-HAM model which allows to account for the response of a multizone building on moisture buffering effects in a more detailed way. The HAM (Heat, Air and Moisture) model describes one dimensional transient coupled heat and mass transfer in porous materials. The coupled model agrees well with the analytical solution of two verification exercises. The model is applicable for the design and evaluation of relative humidity controlled HVAC (Heating, Ventilation and Air Conditioning) systems and can be employed in numerous building applications. To illustrate this an evaluation of gypsum cooled ceilings was made using a simplified model and the coupled model. The results show that when non-isothermal vapour transfer in the gypsum layer is neglected, the buffering effect is largely underestimated.
机译:建筑物内部可用的吸湿材料,例如木材,石膏,纸张等,如果房间的相对湿度增加,则能够吸收水分,如果相对湿度降低,则能够再次释放水分。这种湿气缓冲现象通常在建筑物能源模拟程序(BES)中以简化的方式解决,例如, TRNSYS,这限制了它们的适用性。然而,一些建筑物的应用需要从设计阶段就已经对室内的相对湿度进行准确的预测。rn本文介绍了TRNSYS-HAM耦合模型的发展和可能性,该模型可以考虑多区域建筑物对湿度缓冲作用的响应。更详细的方法。 HAM(热,空气和水分)模型描述了多孔材料中的一维瞬态耦合传热和传质。耦合模型与两个验证练习的解析解非常吻合。该模型适用于相对湿度控制的HVAC(供暖,通风和空调)系统的设计和评估,可用于许多建筑应用中。为了说明这一点,使用简化模型和耦合模型对石膏冷却天花板进行了评估。结果表明,当忽略石膏层中的非等温蒸气传递时,缓冲作用被大大低估了。

著录项

  • 来源
    《Building and Environment》 |2010年第4期|865-877|共13页
  • 作者单位

    Ghent University, Department of Architecture and Urban Planning. Jozef Plateaustraat 22, B-9000 Gent, Belgium;

    Ghent University, Department of Architecture and Urban Planning. Jozef Plateaustraat 22, B-9000 Gent, Belgium;

    Ghent University, Department of Flow, Heat and Combustion Mechanics, Sint - Pietersnieuwstraat 41, B-9000 Gent. Belgium;

    Ghent University, Department of Flow, Heat and Combustion Mechanics, Sint - Pietersnieuwstraat 41, B-9000 Gent. Belgium;

    Ghent University, Department of Flow, Heat and Combustion Mechanics, Sint - Pietersnieuwstraat 41, B-9000 Gent. Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HAM; coupling; multizone model; moisture buffering; non-isothermal; verification;

    机译:火腿;耦合;多区域模型;水分缓冲非等温验证;

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