现浇钢筋混凝土明渠侧壁接缝处裂缝的热应力分析

IF 1.9 4区 农林科学 Q2 AGRICULTURAL ENGINEERING Paddy and Water Environment Pub Date : 2024-01-12 DOI:10.1007/s10333-023-00963-5
Haruka Ikadatsu, Hidehiko Ogata, Masahiro Hyodo, Akio Ishigami
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引用次数: 0

摘要

接缝裂缝是现浇钢筋混凝土明渠侧壁出现的一种特征性裂缝。本研究通过热应力分析,对此类渠道侧壁出现接缝裂缝的原因和时间进行了分析。最大主应力的分布表明,先前放置的跨度会约束随后放置的跨度,从而增加产生接缝裂缝的风险。这表明,由于材料年龄造成的强度差异,埋设在先前跨度中的止水带限制了后续跨度的变形。此外,产生接缝裂缝的风险随着浇注间隔的增加而增加。在夏季和冬季施工中,最大主应力都超过了连接部分周围混凝土的抗拉强度。因此,无论施工季节如何,在材料的早期龄期和长期龄期都可能出现接缝裂缝。为了获得更真实的热应力分析,我们提出了能捕捉日本温度数据特征的外部温度模型,这些模型给出了适当的分析结果。
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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Thermal stress analysis of cracks around the joints of the side wall of cast-in-place reinforced concrete open channels

Joint cracks are a type of characteristic crack that occurs in the side walls of cast-in-place reinforced concrete open channels. In this study, thermal stress analysis was performed to analyze the cause and timing of joint cracks in the side walls of such channels. The distribution of maximum principal stress indicated that previously placed spans restrain subsequently placed spans, increasing the risk of generating joint cracks. This suggests that the waterstops buried in the previously placed spans restrain the deformation of the subsequently placed spans due to the difference in strength caused by the material ages. In addition, the risk of generating joint cracks increased with the increase in the casting intervals. The maximum principal stresses exceeded the tensile strength of the concrete around the joint sections for both summer and winter construction. Thus, joint cracks may occur at both early and long-term material ages, regardless of construction season. To obtain a more realistic thermal stress analysis, outside temperature models capturing the features of temperature data in Japan were proposed, and these models gave appropriate analysis results.

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来源期刊
Paddy and Water Environment
Paddy and Water Environment AGRICULTURAL ENGINEERING-AGRONOMY
CiteScore
4.70
自引率
4.50%
发文量
36
审稿时长
2 months
期刊介绍: The aim of Paddy and Water Environment is to advance the science and technology of water and environment related disciplines in paddy-farming. The scope includes the paddy-farming related scientific and technological aspects in agricultural engineering such as irrigation and drainage, soil and water conservation, land and water resources management, irrigation facilities and disaster management, paddy multi-functionality, agricultural policy, regional planning, bioenvironmental systems, and ecological conservation and restoration in paddy farming regions.
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