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Piezoelectric sensing method for segmental joint contact stress during shield tunnel construction
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作者 Guodong Jiang minghao dai +1 位作者 Guozhu Zhang Limin Gao 《Underground Space》 SCIE EI CSCD 2024年第4期82-99,共18页
The emergence of curved shield tunnels poses a significant construction challenge.If the quality of the segment assembly is not guaranteed,many segment cracks and damage will result from the stress concentration.Sensi... The emergence of curved shield tunnels poses a significant construction challenge.If the quality of the segment assembly is not guaranteed,many segment cracks and damage will result from the stress concentration.Sensing the contact stresses between segmental joints is necessary to improve the quality of segments assembled for shield tunnel construction.Polyvinylidene difluoride(PVDF)piezoelectric material was chosen for the sensor because it can convert contact stresses into electrical signals,allowing the state of the segmental joints to be effectively sensed.It matches the working environment between the segmental joints of the shield tunnel,where flexible structures such as rubber gaskets and force transfer pads are present.This study proposes a piezoelectric sensing method for segmental joints in shield tunnels and conducts laboratory tests,numerical analyses,and field tests to validate the feasibility of the method.The results indicate that the PVDF film sensor can effectively sense the entire compression process of the gasket with different amounts of compression.The piezoelectric cable sensor can effectively sense the joint offset direction of the gasket.For differently shaped sections,the variation in the force sensed by the piezoelectric cable sensors was different,as verified by numerical simulation.Through the field test,it was found that the average contact stress between the segmental joints was in the range of 1.2–1.8 MPa during construction of the curved shield tunnels.The location of the segmental joints and the type of segment affect the contact stress value.The field monitoring results show that piezoelectric sensing technology can be successfully applied during assembly of the segments for effective sensing of the contact stress. 展开更多
关键词 Shield tunnel Segmental joint Contact stress Piezoelectric sensor
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氢的高压与液化储运研究及应用进展 被引量:29
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作者 蒲亮 余海帅 +3 位作者 代明昊 何永琛 孙若凡 严童童 《科学通报》 EI CAS CSCD 北大核心 2022年第19期2172-2191,共20页
氢能是优势显著的可再生能源,大力发展氢能是我国实现碳达峰、碳中和发展目标的有效途径.我国支持、鼓励制氢、储氢、加氢基础设施的建设,氢能产业已经进入快车道.在氢能全产业链中,氢储运环节成本占比高达30%,是最为关键的一环.技术、... 氢能是优势显著的可再生能源,大力发展氢能是我国实现碳达峰、碳中和发展目标的有效途径.我国支持、鼓励制氢、储氢、加氢基础设施的建设,氢能产业已经进入快车道.在氢能全产业链中,氢储运环节成本占比高达30%,是最为关键的一环.技术、经济性、可靠性和安全性都是氢储运技术发展需要考虑的影响因素.物理储氢是目前唯一可大规模商用的存储技术,其中高压气氢储存具有氢充放速度快、成本低等优点,低温液态储氢具有体积能量密度大、加注时间短等优点.氢的输运主要依靠管道运输和交通工具搭载氢储罐运输,其中管道运输是满足未来巨大氢能需求的有效途径.高压气氢储运和低温液氢储运是较为成熟且具有规模应用潜质的技术.本文从储存技术原理、储存设备、运输方式、应用情况以及安全标准等方面对高压和液化氢储运的研究进展进行了介绍.最后,总结了氢储运现状和面临的主要问题,提出了未来氢储运技术发展的建议,展望了氢能应用的广阔前景. 展开更多
关键词 高压氢 液氢 氢储存 氢输运
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