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Wind driven rain and moisture safety of tall timber houses - Evaluation of simulation methods

机译:高大木屋的风雨和湿气安全性-仿真方法的评估

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摘要

The research work presented here belongs to a transnational project which aims at the development of a moisture risk analysis method used for tall timber facades. The major interest covers heat, air and moisture simulation of wind-driven rain-(WDR) exposed multi-story timber-based building envelopes (over their entire cross-section). While available moisture-safety concepts are often rule based with limited performance-oriented parts and are limited to small-scale housing, further exploration involves exposure of tall facades. State-of-the-art research compiles WDR examinations and available field and laboratory data as well as monitoring and simulation results. That is followed by evaluations of simulation methods at a best practice wall cross-section with the aim of examining the sensitivity and uncertainty of different parameters in relation to outdoor climate. This approach is chosen to discern the complex relations between exposure and vulnerability and the number of different facade detailing. The findings hold a categorization model of facade cross-sections that is used for risk analysis to describe moisture impact and reaction of functional layer groups. Furthermore, all WDR models and measured data show a high level of uncertainty and simulation results are strongly dependent on that input. An additional consideration of deficiencies and WDR penetration into the core layer of the facade shows only vague results of moisture accumulation. Under these circumstances failure modes of structural members are hard to determine. Therefore, this research is ongoing with a focus on more suitable exposure parameters and calibration of simulation methods for tall timber facades.
机译:这里提出的研究工作属于一个跨国项目,旨在开发用于高木质外墙的水分风险分析方法。主要兴趣包括风驱动的雨水(WDR)暴露的多层木质建筑围护结构(在整个横截面上)的热,空气和湿度模拟。尽管可用的防潮安全概念通常是基于规则,以有限的性能为导向,并且仅限于小规模的房屋,但进一步的探索涉及暴露高大的外墙。最新的研究汇编了WDR检查以及可用的现场和实验室数据以及监视和模拟结果。随后,在最佳实践的墙体横截面上评估模拟方法,以检查与室外气候有关的不同参数的敏感性和不确定性。选择这种方法是为了识别暴露度和脆弱性之间的复杂关系以及不同立面细节的数量。调查结果包含外墙横截面的分类模型,该模型用于风险分析以描述水分影响和功能层组的反应。此外,所有WDR模型和实测数据都显示出高度的不确定性,并且仿真结果强烈依赖于该输入。缺陷和WDR渗透到外墙核心层的其他考虑仅显示了湿气积聚的模糊结果。在这种情况下,很难确定结构构件的失效模式。因此,这项研究的重点是更合适的暴露参数和高木外墙模拟方法的校准。

著录项

  • 来源
    《Wood material science & engineering》 |2015年第3期|300-311|共12页
  • 作者单位

    Timber Structures and Building Construction, Department of Civil Geo and Environmental Engineering, TU Muenchen, Arcisstrasse 21, 80333 Muenchen, Germany;

    Timber Structures and Building Construction, Department of Civil Geo and Environmental Engineering, TU Muenchen, Arcisstrasse 21, 80333 Muenchen, Germany;

    Timber Structures and Building Construction, Department of Civil Geo and Environmental Engineering, TU Muenchen, Arcisstrasse 21, 80333 Muenchen, Germany;

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

    Moisture safety; building envelope; facade; risk assessment; multi-story wooden buildings;

    机译:防潮安全;建筑围护结构;正面;风险评估;多层木制建筑;

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