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多洞并行海底隧道最佳覆岩厚度变化规律研究
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作者 李航达 杨广鹏 韩智铭 《石家庄铁道大学学报(自然科学版)》 2024年第3期40-46,共7页
海底隧道在中国陆运体系中发挥着重要作用,隧道施工建设多采用多洞并行形式,相应的隧道涌水量问题不容忽略,结合涌水量变化来确定最佳覆岩厚度.针对海底隧道多洞并行工况,采用理论分析和数值模拟相结合的方法,从最小涌水量角度,分析最... 海底隧道在中国陆运体系中发挥着重要作用,隧道施工建设多采用多洞并行形式,相应的隧道涌水量问题不容忽略,结合涌水量变化来确定最佳覆岩厚度.针对海底隧道多洞并行工况,采用理论分析和数值模拟相结合的方法,从最小涌水量角度,分析最佳覆盖厚度变化规律.研究结果表明,随着覆岩厚度增大,涌水量呈现“先减小后增加”规律,涌水量最小时即为最佳覆岩厚度;最佳覆岩厚度随海水深度和隧道半径增大而增大;多洞并行隧道之间存在泄压作用是影响最佳覆岩厚度变化的主要因素,双洞隧道中产生的泄压作用随隧道间距增大而减小,最佳覆岩厚度随着泄压作用减小而减小;三洞隧道中服务隧道产生的泄压作用随服务隧道与主隧道半径比增大而增大,最佳覆岩厚度随着泄压作用增大而增大.相关研究可为海底隧道多洞并行下覆岩厚度设计提供参考. 展开更多
关键词 海底隧道 多洞并行 最佳覆岩厚度 涌水量 泄压作用
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海底隧道三孔并行渗流场泄压规律研究 被引量:1
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作者 郑培超 闫科宇 +1 位作者 王雪 韩智铭 《现代隧道技术》 CSCD 北大核心 2022年第S01期353-362,共10页
海底隧道三孔并行是基于隧道施工技术及使用功能性要求设计的。目前对单孔及双孔海底隧道渗流场研究较多,但对三孔并行海底隧道渗流场研究较少,且对由单孔变为多孔隧道之间的泄压规律少有研究。依托青岛胶州湾海底隧道工程,采用FLAC 3D... 海底隧道三孔并行是基于隧道施工技术及使用功能性要求设计的。目前对单孔及双孔海底隧道渗流场研究较多,但对三孔并行海底隧道渗流场研究较少,且对由单孔变为多孔隧道之间的泄压规律少有研究。依托青岛胶州湾海底隧道工程,采用FLAC 3D对三孔并行隧道涌水量及隧道之间泄压作用进行分析。计算结果表明:(1)三孔并行隧道之间的涌水量与渗透系数和隧道面积比存在线性关系;(2)由于隧道间的泄压作用,三孔并行隧道孔隙水压力分布在0~300 kPa范围内的分布形式与单孔不同,主隧道内侧的泄压作用比外侧明显,距离中间隧道越远泄压作用越小;(3)泄压作用的存在使得主隧道最大孔隙水压力方向相对单孔发生偏转约30°,角度随面积比增大而增大,随间距增大而减小;(4)最大孔隙水压力梯度位置在距主隧道圆心2倍半径范围内偏离轴线约30°,在3~7倍半径范围内回到中间隧道轴线处。 展开更多
关键词 海底隧道 三孔并行 涌水量 渗流场 泄压作用
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Numerical Investigation of the Interaction between Mainstream and Tip Shroud Leakage Flow in a 2-Stage Low Pressure Turbine
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作者 JIA Wei LIU Huoxing 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第3期215-222,共8页
The pressing demand for future advanced gas turbine requires to identify the losses in a turbine and to understand the physical mechanisms producing them. In low pressure turbines with shrouded blades, a large portion... The pressing demand for future advanced gas turbine requires to identify the losses in a turbine and to understand the physical mechanisms producing them. In low pressure turbines with shrouded blades, a large portion of these losses is generated by tip shroud leakage flow and associated interaction. For this reason, shroud leakage losses are generally grouped into the losses of leakage flow itself and the losses caused by the interaction between leakage flow and mainstream. In order to evaluate the influence of shroud leakage flow and related losses on turbine performance, computational investigations for a 2-stage low pressure turbine is presented and discussed in this paper. Three dimensional steady multistage calculations using mixing plane approach were performed including detailed tip shroud geometry. Results showed that turbines with shrouded blades have an obvious advantage over unshrouded ones in terms of aerodynamic performance. A loss mechanism breakdown analysis demonstrated that the leakage loss is the main contributor in the first stage while mixing loss dominates in the second stage. Due to the blade-to-blade pressure gradient, both inlet and exit cavity present non-uniform leakage injection and extraction. The flow in the exit cavity is filled with cavity vortex, leakage jet attached to the cavity wall and recirculation zone induced by main flow ingestion. Furthermore, radial gap and exit cavity size of tip shroud have a major effect on the yaw angle near the tip region in the main flow. Therefore, a full calculation of shroud leakage flow is necessary in turbine performance analysis and the shroud geometric features need to be considered during turbine design process. 展开更多
关键词 tip shroud leakage flow entropy rise low pressure turbine aerodynamic loss
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