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Structural Responses and Finite Element Modeling of Hakka Tulou Rammed Earth Structures.

机译:客家土楼夯土结构的结构响应及有限元建模。

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摘要

Hakka Tulous are rammed earth structures that have survived the effects of aging and natural elements upwards of even over a thousand years. These structures have housed the Hakka people of the Fujian Province, China in natural yet modern housing that has provided benefits over newer building materials. The key building material, rammed earth, which is used for the walls of the Hakka Tulou structures, has provided structural stability along with thermal comfort to the respective inhabitants of the Hakka Tulous.;Through material testing and analysis this study has examined how the Tulou structures have maintained their structural stability while also providing thermal comfort. Reports of self healing cracks in the rammed earth walls were also analyzed for their validity in this study. The study has found that although the story of the self healing crack cannot be validated, there is reason to believe that with the existence of lime, some type of autogenous healing could occur on a small scale. The study has also found, through the use of nondestructive testing, that both the internal wooden systems (flooring, roof, and column support) and the rammed earth walls, are still structurally sound. Also, rammed earth's high thermal mass along with the use of sufficient shading has allowed for a delay release of heat energy from the walls of the Tulous, thus providing thermal comfort that can be felt during both night and day temperatures. The Hakka Tulou structures have been found to resist destruction from natural disasters such as strong earthquakes even when more modern construction has not.;Through finite element modeling, this study has shown that the high volume of rammed earth used in the construction of the Hakka Tulous helps dissipate lateral force energy into much lower stresses for the rammed earth wall. This absorption of lateral force energy allows the rammed earth structures to survive even the strongest of earthquakes experienced in the region. The Hakka Tulou, if rated by the LEED green building certification program, would earn the highest certification as this rammed earth construction has offered efficient living for hundreds of years. As historic as these rammed earth structures are, they present an environmentally friendly option to structures of the future.
机译:客家土楼是夯土结构,在老化和自然因素的影响下,甚至在一千年以上都幸存下来。这些结构将中国福建省的客家人安置在自然而又现代的房屋中,与新型建筑材料相比,这些房屋更具优势。客家土楼结构墙体使用的主要建材夯土为客家土楼民提供了结构稳定性以及热舒适性。通过材料测试和分析,本研究考察了土楼结构既保持了结构稳定性,又提供了热舒适性。在本研究中,还分析了夯土墙中自愈裂缝的报告的有效性。研究发现,尽管无法证实自愈裂纹的故事,但我们有理由相信,由于存在石灰,某些类型的自体愈合可能会小规模发生。该研究还发现,通过使用非破坏性测试,内部木制系统(地板,屋顶和柱子支撑)和夯实的土墙在结构上仍然是健全的。同样,夯土的高热质量以及使用足够的阴影还允许从图卢兹的壁延迟释放热能,从而提供了在夜间和白天都可以感觉到的热舒适感。客家土楼结构即使在没有现代建筑的情况下也能抵抗自然灾害(例如强地震)的破坏。通过有限元建模,研究表明客家土楼的夯土量很大。有助于将侧向力能量耗散到夯实的土墙的低得多的应力中。这种横向力能量的吸收使夯土结构即使在该地区经历的最强地震中也能幸存下来。如果客家土楼获得LEED绿色建筑认证计划的评估,它将获得最高认证,因为这夯土建筑提供了数百年的高效生活。这些夯土结构具有悠久的历史,它们为将来的结构提供了环保的选择。

著录项

  • 作者

    Sranislawski, Daniel.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Engineering Civil.;Engineering Materials Science.;Engineering Environmental.
  • 学位 M.S.
  • 年度 2011
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:50

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