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基于混凝土强度的高地热隧道隔热层厚度研究
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作者 郭利民 段俊哲 +1 位作者 夏才初 常文江 《铁道标准设计》 北大核心 2024年第4期161-167,共7页
随着“长大深”隧道的发展,越来越多高地热隧道得以建设。高地热作为典型的不良地质之一,不仅会给隧道施工带来不便,还会严重危害隧道结构的安全。为减小高温对高地热隧道的不利影响,首先,调研相关文献,明确了温度与衬砌混凝土强度之间... 随着“长大深”隧道的发展,越来越多高地热隧道得以建设。高地热作为典型的不良地质之一,不仅会给隧道施工带来不便,还会严重危害隧道结构的安全。为减小高温对高地热隧道的不利影响,首先,调研相关文献,明确了温度与衬砌混凝土强度之间的关系;然后,以西部高原地区某高地热隧道为依托,使用Comsol数值模拟软件建立该隧道的温度场计算模型。通过数值计算得到各工况下衬砌混凝土的平均养护温度,并将其与强度相对应,并从保护衬砌混凝土强度的角度研究了各工况下不同厚度隔热层的作用。研究得到以下结论:(1)根据他人试验结果总结发现,隧道施工时应保证混凝土养护温度低于40℃,否则会严重降低衬砌混凝土的强度;(2)提出高地热环境隧道施工时隔热层的选取方案,55℃以下的地温段,无需使用隔热层;55~65℃地段,推荐使用3 cm隔热层;65~75℃地温段,使用5 cm隔热层;75~85℃地温段,若能保证洞内气温维持在28℃以内,使用5 cm隔热层,否则使用10 cm隔热层;高于85℃的地段,推荐使用10 cm隔热层。 展开更多
关键词 高地热隧道 隔热层厚度 Comsol数值模拟 混凝土强度 养护温度
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Interface bond degradation and damage characteristics of full-length grouted rock bolt in tunnels with high temperature 被引量:1
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作者 Yunpeng Hu Mingming Zheng +5 位作者 Wenkai Feng Jianjun Tong Yicheng Wang Qiling Wang Kan Liu Longzhen Ye 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第10期2639-2657,共19页
Full-length grouted bolts play a crucial role in geotechnical engineering thanks to their excellent stability.However,few studies have been concerned with the degrading performance of grouted rock bolts caused by exte... Full-length grouted bolts play a crucial role in geotechnical engineering thanks to their excellent stability.However,few studies have been concerned with the degrading performance of grouted rock bolts caused by extensive and continuous heat conduction from surrounding rocks in high-geothermal tunnels buried more than 100 m(temperature from 28C to 100C).To investigate the damage mechanism,we examined the time-varying behaviors of grouted rock bolts in both constant and variable temperature curing environments and their damage due to the coupling effects of high temperature and humidity through mechanical and micro-feature tests,including uniaxial compression test,pull-out test,computed tomography(CT)scans,X-ray diffraction(XRD)test,thermogravimetric analysis(TGA),etc.,and further analyzed the relationship between grout properties and anchorage capability.In order to facilitate a rapid assessment and control of the anchorage performance of anchors in different conditions,results of the interface bond degradation tests were correlated to environment parameters based on the damage model of interfacial bond stress proposed.Accordingly,a thermal hazard classification criterion for anchorage design in high-geothermal tunnels was suggested.Based on the reported results,although high temperature accelerated the early-stage hydration reaction of grouting materials,it affected the distribution and quantity of hydration products by inhibiting hydration degree,thus causing mechanical damage to the anchorage system.There was a significant positive correlation between the strength of the grouting material and the anchoring force.Influenced by the changes in grout properties,three failure patterns of rock bolts typically existed.Applying a hot-wet curing regime results in less reduction in anchorage force compared to the hot-dry curing conditions.The findings of this study would contribute to the design and investigations of grouted rock bolts in high-geothermal tunnels. 展开更多
关键词 high-geothermal tunnels Anchoring structure Coupling effect of temperature and humidity Bond degradation Interfacial damage mechanism
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