Ice shell construction in Hokkaido of Japan during 1980–2012

Q1 Arts and Humanities
T. Kokawa
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引用次数: 2

Abstract

This paper summarizes research and development of an ice shell construction carried out in inland Hokkaido of Japan from 1980 to 2012.The ice shell is made of thin-walled curved ice plate and constructed according to the following method. (1) Building up a three-dimensional formwork by inflating a two-dimensional membrane bag covered with ropes anchored to the snow-ice foundation ring. (2) Covering the formwork with a thin saturated snow layer of less than 1 cm thickness by blowing milled snow with a rotary snow blower and spraying water with an adjustable nozzle, and letting it freeze naturally at temperatures below −10°C. (3) Repeating (2) until shell thickness reaches to the design thickness, then removing the bag and ropes for reuse. A number of ice shells were constructed as temporary winter structures while improving the construction technique through the repeated construction experiences. Based on the field experiments of 10–30 m ice domes (“Xm ice dome” means the ice dome constructed by using Xm diameter of circular membrane bag in the formwork before inflation) which measured the deflection and temperature under long term period after the completion and further observed the behavior of the collapse, it was recognized that understanding the creep behavior is extremely important for evaluating the structural safety of the ice shell.
1980-2012年日本北海道的冰壳建造
本文总结了1980年至2012年在日本北海道内陆进行的冰壳建造的研究和开发。冰壳由薄壁弯曲冰板制成,并按照以下方法建造。(1) 通过对固定在冰雪基础环上的覆盖着绳索的二维薄膜袋进行充气,建立三维模板。(2) 用小于1的薄饱和雪层覆盖模板 cm厚,用旋转式吹雪机吹雪,用可调节喷嘴喷水,并在−10°C以下的温度下自然结冰。(3) 重复(2),直到外壳厚度达到设计厚度,然后取出袋子和绳索以重复使用。通过反复施工经验,在提高施工技术的同时,建造了多个冰壳作为冬季临时结构。基于10-30的现场实验 m个冰穹(“Xm冰穹”是指在充气前使用模板中圆形膜袋的Xm直径建造的冰穹),测量了完工后长期的挠度和温度,并进一步观察了坍塌行为,人们认识到,了解冰壳的蠕变行为对于评估冰壳的结构安全性极其重要。
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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来源期刊
International Journal of Space Structures
International Journal of Space Structures Arts and Humanities-Conservation
CiteScore
2.00
自引率
0.00%
发文量
21
期刊介绍: The aim of the journal is to provide an international forum for the interchange of information on all aspects of analysis, design and construction of space structures. The scope of the journal encompasses structures such as single-, double- and multi-layer grids, barrel vaults, domes, towers, folded plates, radar dishes, tensegrity structures, stressed skin assemblies, foldable structures, pneumatic systems and cable arrangements. No limitation on the type of material is imposed and the scope includes structures constructed in steel, aluminium, timber, concrete, plastics, paperboard and fabric.
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