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HAMT Extension for EnergyPlus Encompasses Moisture Sources due to Air Leakage

机译:LeasueldPlus的Hamt延伸包括漏气引起的水分源

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摘要

As building envelopes become more energy efficient, new buildings are more prone to hygrothermal failure. The combined Heat and Moisture Transfer (HAMT) model in EnergyPlus is able to provide moisture profiles through multiple material layers of an envelope assembly using a coupled, one-dimensional, finite element model simulating the movement and storage of heat and moisture. However, HAMT is currently unable to properly assess the effects of moisture sources inside an assembly to determine impacts on durability, indoor air quality, and energy performance. This paper reviews existing tools for modeling moisture sources due to air leakage and the HAMT model equations in EnergyPlus. A sub-model is then developed that enables air leakage to be applied to a moisture sink/source at an arbitrary location by extending the existing mass transfer equation with a source term that includes water vapor deposit from air flow through an assembly. We demonstrate use of this model, discuss limitations, and make the source code publicly available for external use.
机译:由于建筑信封变得更加节能,新建筑物更容易发生湿热衰竭。 EnergyPlus中的综合热量和湿度转移(HAMT)模型能够通过使用耦合的一维的有限元模型来通过包络组件的多种材料层提供湿气型材。模拟热量和湿度的耦合,一维的有限元模型。然而,HAMT目前无法正确评估湿度源在组件内的影响,以确定对耐用性,室内空气质量和能源性能的影响。本文综述了由于泄漏而导致的湿度源和能量支出中的HAMT模型方程来审查现有工具。然后开发一种子模型,其通过将现有的质量传递方程延伸具有包括从空气流过组件的空气流量的源术语延伸,使得能够将空气泄漏施加到任意位置。我们展示了使用此模型,讨论限制,并使源代码公开可用于外部使用。

著录项

  • 来源
    《ASHRAE Transactions 》 |2019年第1期| 3-10| 共8页
  • 作者单位

    Oak Ridge National Laboratory Oak Ridge Tennessee;

    Oak Ridge National Laboratory Oak Ridge Tennessee;

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  • 原文格式 PDF
  • 正文语种 eng
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