...
首页> 外文期刊>Journal of Asian architecture and building engineering >The Hygrothermal Environment and Potential for Mold Growth within a Straw Bale Wall
【24h】

The Hygrothermal Environment and Potential for Mold Growth within a Straw Bale Wall

机译:稻草壁的湿热环境和霉菌生长的潜力

获取原文
           

摘要

The present study is the first investigation in Japan to monitor the interstitial hygrothermal environment of a straw bale wall at various depths and heights. Extensive interstitial monitoring has been conducted on a straw bale building in Kyotango City, Kyoto Prefecture known as ″Shinrinnobokujo-tango″. The purpose of the present study is three-fold: (1) Determine if the interstitial hygrothermal environment of Shinrinnobokujo-tango′s south straw bale wall is homogenous, (2) elucidate the interstitial hygrothermal environment of the south wall, and (3) evaluate the potential for mold growth. As a result of the study, the interstitial hygrothermal environment was found to vary by height and depth. In winter, the interstitial area with the lowest temperature and highest relative humidity was the upper, exterior portion of the wall. In summer, the area with the lowest temperature and highest relative humidity was the lower, interior portion of the wall. Mold growth was predicted within the straw bale wall, with the greatest risk being the upper, exterior portion of the wall in winter and lower, interior portion of the wall in summer. These results suggest the need to control moisture in straw bale walls in Japan.
机译:本研究是日本首次监测不同深度和高度的草捆壁的间隙湿热环境。在京都府京丹后市的一座草捆建筑上进行了广泛的间隙监测,该建筑物被称为“ Shinrinnobokujo-tango”。本研究的目的是三方面的:(1)确定新林野国庄-探戈南草捆的间隙湿热环境是否均匀;(2)阐明南壁的间隙湿热环境,以及(3)评估霉菌生长的潜力。研究的结果是,发现间隙湿热环境随高度和深度而变化。在冬季,温度最低,相对湿度最高的间隙区域是壁的上部外部。在夏季,温度最低,相对湿度最高的区域是墙的下部内部。预测在稻草包壁内霉菌会生长,最大的风险是冬天时壁的上部外部和夏天时壁的下部内部。这些结果表明在日本需要控制草捆壁中的水分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号