Stability of the “Tensyudai” of a Japanese castle under long-term load

Takeshi Masui, Wen-Shao Chang
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Abstract

Tensyudai is the term used for the truncated masonry base that supports the main tower (Tensyukaku) of a Japanese castle. In response to concerns regarding the structural integrity and conservation of Tensyudai masonry walls, this study seeks to investigate the mechanism of their collapse and load capacity. A reduced scale model of Tensyudai, based on Osaka Castle, was constructed and subjected to a vertical load test to evaluate its three-dimensional mechanical properties. The paper postulates a collapse mechanism, and the equilibrium of forces for the Sumiishi and Hiraishi sections of the Tensyudai are analysed, considering the arch effect. Experimental results are compared, using a series of equations to calculate the collapse burden (q c ). Additionally, the safety factor is determined, based on the active earth pressures at various masses. The findings indicate that the safety factor of a standard Tensyukaku weight is approximately 25, which rises with increased Tensyukaku weight. Moreover, this study contributes to future research and preservation efforts for historical structures, by shedding light on the structural stability and safety of Tensyudai masonry walls. It can also provide basic data for considering the protection of other masonry wall structures from earthquakes.
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日本城堡 "天守台 "在长期负荷下的稳定性
天守台是指支撑日本城堡主塔(天守阁)的截断式砖石基座。为了回应人们对天守阁砖石墙结构完整性和保护的关注,本研究试图对其倒塌机制和承载能力进行调查。研究人员以大阪城为原型,建造了一个缩小比例的天守台模型,并对其进行了垂直荷载试验,以评估其三维机械性能。本文假设了天守台的坍塌机制,并分析了天守台须弥石和平石部分的力平衡,同时考虑了拱效应。通过一系列公式计算坍塌负担(q c),对实验结果进行比较。此外,还根据不同质量的活动土压力确定了安全系数。研究结果表明,标准天书阁重量的安全系数约为 25,随着天书阁重量的增加而上升。此外,这项研究通过揭示天水阁砌体墙的结构稳定性和安全性,为未来的研究和历史建筑保护工作做出了贡献。它还可以为考虑保护其他砌体墙结构免受地震影响提供基本数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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