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Failure mechanism and damage constitutive model of rectangular tunnels under water-rich condition
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作者 Banquan Zeng Jianhang Chen +5 位作者 Wuyan Xu Xiaoyong An Shiji Wang Songsong Hu Kun Wang Yu Chen 《International Journal of Mining Science and Technology》 2025年第12期2245-2264,共20页
To investigate groundwater influence on stability and rockburst mechanism of deep hard-rock rectangular tunnels,water-immersed treatment and uniaxial compressive acoustic emission(AE)experiments were conducted on rect... To investigate groundwater influence on stability and rockburst mechanism of deep hard-rock rectangular tunnels,water-immersed treatment and uniaxial compressive acoustic emission(AE)experiments were conducted on rectangular tunnel specimens.Energy dissipation characteristics,AE evolution characteristics and damage evolution characteristics of rectangular tunnels were analysed under waterimmersed condition.Under water-immersed condition,tunnel specimens were quite sensitive to water.Average peak stress and average peak strain energy exhibited negative exponential decay with waterimmersed time.Among them,after 12 d of water immersion,average peak stress of specimens decreased by 28%.Average total strain energy decreased by 70%.Average elastic strain energy decreased by 71%and average dissipated strain energy decreased by 68%.After 62 d of water immersion,average peak stress of specimens decreased by 34%.Average total strain energy decreased by 78%.Average elastic strain energy decreased by 79%and average dissipated strain energy decreased by 75%.Water weakened bonding among mineral particles.Moreover,it undermined load-bearing capacity and diminished energystorage properties.Under high stress,massive releasable elastic strain energy stored in natural specimens within pre-peak stage may abruptly release after peak stress.This caused rapid crack development and connection in specimens.During accumulation and release of elastic strain energy,initial failure typically occurred at sidewalls.This failure location was not affected by water.Compared with natural specimens,Specimens immersed in water for 62 d had the lowest peak values of cumulative amplitude,cumulative AE energy and cumulative AE count.After 62 d of water immersion,peak values of cumulative amplitude,cumulative AE energy and cumulative AE count of specimens decreased by 84%,97%and 99%.Compared with AE damage model,fitting degree of energy damage model was higher.For natural specimens,fitting degree of energy damage model was 0.96.For specimens immersed in water for 12 d,fitting degree of energy damage model was 0.96.For specimens immersed in water for 62 d,fitting degree of energy damage model was 0.72.Therefore,an energy damage model had more remarkable applicability and reliability.By establishing dynamic mapping relationship between energy and damage in the model,accuracy of rockburst early warning has been significantly improved.This provided scientific basis for support structure design of rectangular tunnels and regulation of high strain energy. 展开更多
关键词 rectangular tunnels Energy dissipation characteristics Evolution characteristics of AE signals Damage evolution characteristics Energy damage model
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Influence of the liquefied soil layer distribution on the seismic response of rectangular tunnel 被引量:6
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作者 Liu Chunxiao Tao Lianjin +4 位作者 Bian Jin Feng Jinhua Zhang Yu Dai Xitong Wang Zhaoqing 《Journal of Southeast University(English Edition)》 EI CAS 2018年第2期259-268,共10页
In order to obtain the seismic responses of the soil-rectangular tunnel structure,based on the PL-Finn constitutive model,four different conditions,namely,the liquefied soil around the rectangular tunnel,the liquefied... In order to obtain the seismic responses of the soil-rectangular tunnel structure,based on the PL-Finn constitutive model,four different conditions,namely,the liquefied soil around the rectangular tunnel,the liquefied soil below the rectangular tunnel,the liquefied soil on either side of the tunnel and the structure on non-liquefied soil,are compared.In accordance to the time at which a large deformation occurs,the possibility of destruction from hard to easy follows a descending order:the liquefied soil all around the structure,the liquefied soil on the bottom of the structure,and the liquefied soil on the two sides of the structure.The area of large deformation is mostly beneath the two arch angles of the tunnel floor.The soil on the two sides,especially close to the structure,is the hardest to liquefy and deform.The large deformation of soil caused by the liquefaction appears after the peak seismic value occurs.The higher the input seismic value is,the easier a large deformation can take place.With the same input of peak ground motion,the total displacement vector of the structure and differential displacement of the side-wall are in accordance with an order from large to small in the three situations:when the saturated sand is on two sides,all around the structure,and on the bottom of the structure. 展开更多
关键词 LIQUEFACTION seismic response rectangular tunnel PL-Finn constitutive model numerical simulation
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Power allocation and mode selection methods for cooperative communication in the rectangular tunnel 被引量:2
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作者 Zhai Wenyan Sun Yanjing +1 位作者 Xu Zhao Li Song 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第2期253-260,共8页
For the multipath fading on electromagnetic waves of wireless communication in the confined areas,the rectangular tunnel cooperative communication system was established based on the multimode channel model and the ch... For the multipath fading on electromagnetic waves of wireless communication in the confined areas,the rectangular tunnel cooperative communication system was established based on the multimode channel model and the channel capacity formula derivation was obtained.On the optimal criterion of the channel capacity,the power allocation methods of both amplifying and forwarding(AF) and decoding and forwarding(DF) cooperative communication systems were proposed in the limitation of the total power to maximize the channel capacity.The mode selection methods of single input single output(SISO) and single input multiple output(SIMO) models in the rectangular tunnel,through which the higher channel capacity can be obtained,were put forward as well.The theoretical analysis and simulation comparison show that,channel capacity of the wireless communication system in the rectangular tunnel can be effectively enhanced through the cooperative technology;channel capacity of the rectangular tunnel under complicated conditions is maximized through the proposed power allocation methods,and the optimal cooperative mode of the channel capacity can be chosen according to the cooperative mode selection methods given in the paper. 展开更多
关键词 rectangular tunnel Multimode channel model Channel capacity Cooperative communication Power allocation Mode selection
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Rectangular tunnel heading stability in three dimensions and its predictive machine learning models
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作者 Jim Shiau Suraparb Keawsawasvong +3 位作者 Van Qui Lai Thanachon Promwichai Viroon Kamchoom Rungkhun Banyong 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第11期4683-4696,共14页
Tunnel heading stability in two dimensions(2D)has been extensively investigated by numerous scholars in the past decade.One significant limitation of 2D analysis is the absence of actual tunnel geometry modeling with ... Tunnel heading stability in two dimensions(2D)has been extensively investigated by numerous scholars in the past decade.One significant limitation of 2D analysis is the absence of actual tunnel geometry modeling with a considerable degree of idealization.Nevertheless,it is possible to study the stability of tunnels in three dimensions(3D)with a rectangular shape using finite element limit analysis(FELA)and a nonlinear programming technique.This paper employs 3D FELA to generate rigorous solutions for stability numbers,failure mechanisms,and safety factors for rectangular-shaped tunnels.To further explore the usefulness of the produced results,multivariate adaptive regression spline(MARS)is used for machine learning of big dataset and development of design equations for practical design applications.The study should be of great benefit to tunnel design practices using the developed equations provided in the paper. 展开更多
关键词 Wide rectangular tunnel Finite element limit analysis(FELA) Multivariate adaptive regression spline(MARS) Three dimensions(3D) Stability analysis
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Analytical solutions of vertical load on deep rectangular jacked pipe considering tunnelling-induced ground loss 被引量:2
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作者 LI Jian-ye FANG Qian +4 位作者 LIU Xiang WANG Gan HUANG Jun DU Jian-ming ZHANG Zi-yi 《Journal of Central South University》 2025年第5期1855-1872,共18页
Determining earth pressure on jacked pipes is essential for ensuring lining safety and calculating jacking force,especially for deep-buried pipes.To better reflect the soil arching effect resulting from the excavation... Determining earth pressure on jacked pipes is essential for ensuring lining safety and calculating jacking force,especially for deep-buried pipes.To better reflect the soil arching effect resulting from the excavation of rectangular jacked pipes and the distribution of the earth pressure on jacked pipes,we present an analytical solution for predicting the vertical earth pressure on deep-buried rectangular pipe jacking tunnels,incorporating the tunnelling-induced ground loss distribution.Our proposed analytical model consists of the upper multi-layer parabolic soil arch and the lower friction arch.The key parameters(i.e.,width and height of friction arch B and height of parabolic soil arch H 1)are determined according to the existing research,and an analytical solution for K l is derived based on the distribution characteristics of the principal stress rotation angle.With consideration for the transition effect of the mechanical characteristics of the parabolic arch zone,an analytical solution for soil load transfer is derived.The prediction results of our analytical solution are compared with tests and simulation results to validate the effectiveness of the proposed analytical solution.Finally,the effects of different parameters on the soil pressure are discussed. 展开更多
关键词 rectangular pipe jacking tunnel vertical load multi-layer parabolic soil arch model soil arching
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Prototype Loading Tests on Full-Ring Segmental Lining of Rectangular Shield Tunnel
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作者 ZHU Yeting ZHANG Zixin +1 位作者 HUANG Xin ZHANG Guanjun 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第6期746-757,共12页
A series of full-scale loading tests are performed for a prospective subway tunnel with a rectangular shape including two reliability tests: one stagger-jointed three-ring reliability test, and one ultimate failure te... A series of full-scale loading tests are performed for a prospective subway tunnel with a rectangular shape including two reliability tests: one stagger-jointed three-ring reliability test, and one ultimate failure test on a single ring. Comprehensive measuring programs are designed to record the deformation of both lining structure and joints and the stresses of concrete, bolts and reinforcements. Experimental results show that in both the single-ring and three-ring loading cases, the long sides of tunnel cross section bend inwards while the short sides of tunnel cross section bend outwards. The inner part of joints opens while the outer part of joints closes at places experiencing positive moment and vice versa. Joint's rotational stiffness varies at different locations. Concrete cracking and crushing are the chief damage modes, and they are closely related to the distribution of bending moment. Stagger-jointed fabrication significantly increases the overall rigidity of lining system, which thereby greatly reduces the deformation of both concrete lining and joints in comparison with the single-ring case. It is shown that the routinely-used uniform rigidity model is conservative and the preliminary design can be optimized by applying an effective rigidity ratio(ERR) of 0.5. 展开更多
关键词 segmental lining prototype loading test rectangular shield tunnel effective rigidity ratio(ERR) ultimate failure
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Reliability analysis of supporting pressure in tunnels based on three-dimensional failure mechanism 被引量:7
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作者 罗卫华 李闻韬 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1243-1252,共10页
Based on nonlinear failure criterion,a three-dimensional failure mechanism of the possible collapse of deep tunnel is presented with limit analysis theory.Support pressure is taken into consideration in the virtual wo... Based on nonlinear failure criterion,a three-dimensional failure mechanism of the possible collapse of deep tunnel is presented with limit analysis theory.Support pressure is taken into consideration in the virtual work equation performed under the upper bound theorem.It is necessary to point out that the properties of surrounding rock mass plays a vital role in the shape of collapsing rock mass.The first order reliability method and Monte Carlo simulation method are then employed to analyze the stability of presented mechanism.Different rock parameters are considered random variables to value the corresponding reliability index with an increasing applied support pressure.The reliability indexes calculated by two methods are in good agreement.Sensitivity analysis was performed and the influence of coefficient variation of rock parameters was discussed.It is shown that the tensile strength plays a much more important role in reliability index than dimensionless parameter,and that small changes occurring in the coefficient of variation would make great influence of reliability index.Thus,significant attention should be paid to the properties of surrounding rock mass and the applied support pressure to maintain the stability of tunnel can be determined for a given reliability index. 展开更多
关键词 rectangular tunnel limit analysis failure mechanism reliability analysis
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Investigating Effect of Tunnel Gate Shapes with Similar Cross Section on Inserted Forces on Its Coverage and Soil Surface Settlement 被引量:2
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作者 Arash Rostami Nima Asghari +2 位作者 Morteza Askari Ziarati Saman Jahani Bahman Shahi 《Open Journal of Civil Engineering》 2016年第3期358-369,共12页
According to technology development and relative facilitation in digging and underground structures, ways, highways, all types of tunnels, underground train network, and other underground settle, storage are number of... According to technology development and relative facilitation in digging and underground structures, ways, highways, all types of tunnels, underground train network, and other underground settle, storage are number of structure built and developed in advanced countries. In most situation, tunnel digging operations are done years after its construction or are not recorded in new structures regulations;therefore, this research investigates soil settlement and inserting force to tunnel coverage by limiting studies about effects of tunnel shapes on soil settlement using Plaxis, Seismo Signal, and Seismo Aspect. This study shows that rectangular tunnel has the most settlement in soil surface and circular tunnel has the least settlement but horseshoe tunnel has similar behavior to circular tunnel;however, earth subsidence level by digging this tunnel is more than circular tunnel. In addition, sectional shape has direct effect on inserting forces on tunnel coverage. 展开更多
关键词 Soil Settlement rectangular tunnel Circular tunnel Horseshoe tunnel Concrete Coverage
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充填体内掘进巷道围岩稳定性分析与控制研究
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作者 罗准 陆光艳 郑志杰 《有色金属(矿山部分)》 2026年第1期77-84,共8页
某磷矿随着开采的进行,需要在充填体掘进巷道,如何维护充填体内巷道的稳定,成为该磷矿面临的重要难题。针对上述问题,采用现场调查、理论分析和现场试验等手段开展了研究。首先,分析了巷道变形和破坏特征及破坏原因,认为受到充填体围岩... 某磷矿随着开采的进行,需要在充填体掘进巷道,如何维护充填体内巷道的稳定,成为该磷矿面临的重要难题。针对上述问题,采用现场调查、理论分析和现场试验等手段开展了研究。首先,分析了巷道变形和破坏特征及破坏原因,认为受到充填体围岩性质和地应力的影响,该矿巷道破坏模式主要有拉裂破坏、局部剪切破坏和局部冒落破坏。其次,根据充填体特征,确定充填体内巷道断面形状为矩形,在此基础上,基于统一强度理论,优化得到了巷道断面尺寸为4 m×4 m;再次,给出了优化的矩形巷道支护方案,采用管缝锚杆支护,长度为1.5 m、支护夹角为45°~50°;最后,将得到的矩形巷道方案应用到该矿的工程实践当中,结果表明,巷道施工后围岩没有发生明显的变形和破坏,取得了良好的施工效果,保证了巷道的稳定性。 展开更多
关键词 充填体 巷道掘进 围岩控制 矩形巷道 统一强度理论
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大断面矩形顶管隧道施工工艺及管节施工力学性能研究
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作者 崔光耀 韩健松 王道远 《高速铁路技术》 2025年第4期127-135,118,共10页
为进一步提高矩形顶管盾构隧道工程施工的安全性及稳定性,本文依托某大断面矩形顶管隧道工程,总结了大断面矩形顶管隧道的施工工艺,建立了大断面矩形顶管施工过程精细化计算模型,并对管节施工力学性能进行了研究。研究结果表明:顶管隧... 为进一步提高矩形顶管盾构隧道工程施工的安全性及稳定性,本文依托某大断面矩形顶管隧道工程,总结了大断面矩形顶管隧道的施工工艺,建立了大断面矩形顶管施工过程精细化计算模型,并对管节施工力学性能进行了研究。研究结果表明:顶管隧道施工过程中,管节最大、最小主应力主要集中在仰拱、拱底内部、左拱肩及右拱肩外侧,剪应力主要集中在仰拱、拱底外部、左拱肩及右拱肩内侧;各管节最大、最小主应力和剪应力最大值均出现于初始顶推时,后顶推管节的最大、最小主应力最大值要大于先顶推管节,剪应力相反;管节接缝的张开度主要体现在仰拱附近,同一接缝的张开度随着顶推管节数的增加而逐渐增加,而错台量则逐渐减小;管节各接缝的错台量与张开度最大值均出现在接缝1处,分别为7.245 mm、0.843 mm。研究成果可为类似矩形顶管隧道工程的设计与施工提供借鉴。 展开更多
关键词 隧道工程 矩形顶管 大断面 施工工艺 施工力学
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矩形截面高层建筑风荷载体型系数风洞试验研究
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作者 全涌 朱之昊 张正维 《建筑结构》 北大核心 2025年第20期127-133,共7页
矩形截面高层建筑是最为常见的高层建筑形式之一,中国规范对其风荷载体型系数给出了便于使用的数值,但目前的取值并未达到安全性与经济性兼顾的目标。利用自行设计的模块化拼装模型系统拼装了33种不同高宽比和厚宽比工况的矩形截面模型... 矩形截面高层建筑是最为常见的高层建筑形式之一,中国规范对其风荷载体型系数给出了便于使用的数值,但目前的取值并未达到安全性与经济性兼顾的目标。利用自行设计的模块化拼装模型系统拼装了33种不同高宽比和厚宽比工况的矩形截面模型,通过刚性模型测压风洞试验,探究了B类地貌下风荷载体型系数随不同工况的变化规律,并与现行规范取值进行对比。研究结果表明:矩形截面高层建筑顺风向整体风荷载体型系数试验结果与规范的变化趋势大体一致,但数值上存在一定偏差,在厚宽比小于1时规范取值偏于危险,大于1时则偏于保守;侧风面风荷载体型系数试验结果与规范存在显著差距,在厚宽比小于2.5时规范取值偏于危险,大于2.5时则偏于保守。给出了以高宽比和厚宽比为变量拟合得到的矩形截面高层建筑风荷载体型系数经验公式,可供工程应用及规范修订参考。 展开更多
关键词 风洞试验 矩形截面 高层建筑 风荷载体型系数 高宽比 厚宽比
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基于土拱效应的粉土地层矩形顶管隧道摩阻力计算方法研究 被引量:1
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作者 胡达 黄俊杰 +4 位作者 向薛娟 黎永索 倪芃芃 杨仙 梁小强 《工程地质学报》 北大核心 2025年第4期1566-1578,共13页
矩形顶管隧道施工过程中,管体周围土体的变形和应力传递是影响周围土压力的重要因素,而土拱效应与土体应力传递机理密切相关。为实现对粉土地层中矩形顶管顶进力的精准预测,本研究提出一种基于土拱效应的矩形顶管隧道摩阻力计算方法。首... 矩形顶管隧道施工过程中,管体周围土体的变形和应力传递是影响周围土压力的重要因素,而土拱效应与土体应力传递机理密切相关。为实现对粉土地层中矩形顶管顶进力的精准预测,本研究提出一种基于土拱效应的矩形顶管隧道摩阻力计算方法。首先,构建了完全和不完全土拱效应下的矩形顶管隧道土体应力传递模型,将其划分为外部稳定区、弹性拱和内部松散体3部分进行独立分析。其次,基于弹性拱局部区域应力传递规律,将存在应力传递的弹性拱区域定义为有效弹性拱区域,提出完全和不完全土拱效应下的摩阻力计算方法。最后,通过3个典型工程案例分析验证,发现在粉土和粉砂地层中,本研究方法的平均绝对误差(MAE)和相关性系数(R^(2))分别为(0.4136,0.97)、(1.2102,0.84)和(0.6893,0.94),在准确性和适应性方面均优于其他方法,可为矩形顶管隧道的设计和施工提供理论参考。 展开更多
关键词 土拱效应 矩形顶管隧道 摩阻力 应力传递
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矩形顶管隧道F承插型接头等效刚度理论研究
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作者 许有俊 张正曦 +2 位作者 张朝 刘天宇 张旭 《岩土工程学报》 北大核心 2025年第3期506-515,共10页
等效刚度是计算隧道纵向变形的重要参数,为探究等效刚度对矩形顶管隧道的影响,以呼和浩特市海亮广场矩形顶管隧道为设计参照,采用纵向变形等效原则,结合Timoshenko梁截面剪切系数,建立了矩形顶管隧道接头等效刚度解析解,以室内试验为验... 等效刚度是计算隧道纵向变形的重要参数,为探究等效刚度对矩形顶管隧道的影响,以呼和浩特市海亮广场矩形顶管隧道为设计参照,采用纵向变形等效原则,结合Timoshenko梁截面剪切系数,建立了矩形顶管隧道接头等效刚度解析解,以室内试验为验证,探究了等效刚度的影响因素。结果标明:(1)剪切作用下接头剪切刚度主要分为弹性阶段、屈服阶段、破坏阶段。(2)等效刚度理论计算结果与模型试验数据基本相同,验证了解析解的合理性。(3)减小管节宽度的同时增加管节高度可以有效增加接头等效刚度;截面尺寸对等效抗剪刚度影响较小,管节设计应将弯曲变形作为重点研究;钢套环与等效刚度成正比,与提升率呈反比,建议钢套环厚度取值13~17 mm。 展开更多
关键词 矩形顶管隧道 等效刚度 接头变形 参数分析
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组合式矩形顶管机上下排渣速率差对地层影响研究
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作者 吴祥 张润麒 +2 位作者 龙伟义 陈建航 苏栋 《地下空间与工程学报》 北大核心 2025年第S2期839-847,共9页
深圳地铁12号线沙三站采用新型上下组合式矩形顶管机进行建造,目前对于该形式顶管机的排渣速率及上下排渣速率的组合方式对掘进过程中地层的力学响应影响缺乏研究。建立该顶管机的等尺寸模型,利用离散元法研究了不同排渣速率大小和上下... 深圳地铁12号线沙三站采用新型上下组合式矩形顶管机进行建造,目前对于该形式顶管机的排渣速率及上下排渣速率的组合方式对掘进过程中地层的力学响应影响缺乏研究。建立该顶管机的等尺寸模型,利用离散元法研究了不同排渣速率大小和上下子顶管机不同排渣速率差对地表沉降和开挖面稳定性的影响规律。结果表明:最佳螺机转速为95 rpm(对应的排渣顶进速度比为9~10 r/mm),该转速下不会发生超排或滞排,对地表沉降影响最小;大于95 rpm转速为超排情况,可导致开挖面局部失稳,最终导致地表坍塌,小于95 rpm转速为滞排情况,可导致地表隆起;相对于上下子顶管机排渣速率差异引起的地表最大位移(3 cm),全开挖面不同排渣速率对地表沉降的影响更显著,所引起的地表位移在-10 cm(沉降)到16 cm(隆起)范围内;总结了浅埋矩形顶管施工开挖面局部失稳破坏的演化规律,分为非满仓局部失稳、局部失稳发展,以及贯通地表破坏三个发展阶段。研究成果可为相关工程提供理论参考。 展开更多
关键词 顶管机 矩形断面 排渣速率 开挖面稳定性 离散元法
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复合地层超大矩形顶管隧道下穿高铁施工加固技术
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作者 崔光耀 韩驰 +1 位作者 麻建飞 宁茂权 《华北水利水电大学学报(自然科学版)》 北大核心 2025年第2期92-101,共10页
为保证复合地层超大矩形顶管隧道近接下穿既有高铁的施工安全,以某超大矩形顶管隧道下穿杭深线高铁工程为背景,采用数值仿真和现场实测方法对复合地层超大矩形顶管隧道近接下穿高铁施工安全及加固技术进行了研究。结果表明:该超大矩形... 为保证复合地层超大矩形顶管隧道近接下穿既有高铁的施工安全,以某超大矩形顶管隧道下穿杭深线高铁工程为背景,采用数值仿真和现场实测方法对复合地层超大矩形顶管隧道近接下穿高铁施工安全及加固技术进行了研究。结果表明:该超大矩形顶管隧道在复合地层中近接下穿既有高铁施工时,轨道沉降超出安全阈值,必须采取施工加固措施;在n(硬岩比)≥0.75的复合地层中掘进时,超前注浆、地下连续墙+D型钢便梁和人工挖孔桩+D型钢便梁3种加固方案均可采用,在n<0.75的复合地层中掘进时,可采用地下连续墙或人工挖孔桩+D型钢便梁加固方案;综合考虑轨道沉降、管节安全系数及加固方案施工对既有高铁的影响程度,对该工程推荐采用人工挖孔桩+D型钢便梁的加固方案;现场监测结果表明,采用人工挖孔桩+D型钢便梁加固方案后,轨道沉降量降至1.46 mm,所有监控指标均处于安全范围内。研究结果可为类似矩形顶管隧道近接施工设计与实施提供参考。 展开更多
关键词 隧道工程 矩形顶管 复合地层 近接施工 加固技术
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大深宽比矩形高层建筑表面脉动风压非高斯特性 被引量:2
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作者 袁家辉 陈水福 刘奕 《哈尔滨工业大学学报》 EI CAS 北大核心 2025年第1期46-55,共10页
为探究大深宽比矩形高层建筑表面脉动风压的非高斯特性,本文对深宽比为1/9~9的矩形高层建筑进行了同步测压风洞试验。基于试验结果,分析了建筑表面风压的三阶和四阶统计矩分布特性,对高层建筑各立面风压进行高斯与非高斯分布的分区;研... 为探究大深宽比矩形高层建筑表面脉动风压的非高斯特性,本文对深宽比为1/9~9的矩形高层建筑进行了同步测压风洞试验。基于试验结果,分析了建筑表面风压的三阶和四阶统计矩分布特性,对高层建筑各立面风压进行高斯与非高斯分布的分区;研究了风压的空间相关系数与非高斯性强度的关系,提出了一种新的估算建筑侧风面平均再附长度的计算方法。结果表明:在建筑侧风面上,脉动风压服从高斯还是非高斯分布取决于测点到迎风前缘的距离;除了以往文献指出的迎风面角部、侧风面分离区和背风面风压呈现非高斯性外,再附区后面的风压也呈现出高度的非高斯性;本文提出的相关系数法在计算平均再附长度时具有良好的准确性,利用该方法获得了矩形高层建筑侧风面的平均再附长度沿高度的变化呈抛物线形状。 展开更多
关键词 矩形高层建筑 非高斯特性 风洞试验 相关系数 平均再附长度
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隧道矩形截面钢管格栅拱架支护构件抗弯性能全尺寸模型实验设计
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作者 宋远 冯守中 +5 位作者 荣传新 蔡海兵 安刚建 李亚峰 刘昊伟 曹艳 《实验技术与管理》 北大核心 2025年第4期59-67,共9页
针对高地应力软岩条件下传统拱架支护结构易失稳破坏的突出技术难题,通过汲取格栅拱架和型钢拱架的性能特点,设计了一种新型矩形截面钢管格栅(RSPG)拱架支护结构。为了揭示不同设计参数下RSPG拱架作为隧道初期支护结构的抗弯承载机理与... 针对高地应力软岩条件下传统拱架支护结构易失稳破坏的突出技术难题,通过汲取格栅拱架和型钢拱架的性能特点,设计了一种新型矩形截面钢管格栅(RSPG)拱架支护结构。为了揭示不同设计参数下RSPG拱架作为隧道初期支护结构的抗弯承载机理与力学行为,研制了一套全尺寸隧道支护结构静力双向加载实验系统,并提出基于有限元分析的RSPG拱架支护构件数值建模方法。基于该实验方法,评估了轴向力对RSPG拱架支护构件抗弯性能的影响规律,揭示了RSPG拱架支护构件的破坏机理与行为特征。通过该试验,为学生展示了新型RSPG拱架支护结构的设计理念、构造特征、实验流程、数据分析等环节,能够使学生更好地开展RSPG拱架支护结构设计与参数优化研究,也为学生进行不同加载条件下类似格栅拱架结构的力学性能实验及仿真提供了创新思路。 展开更多
关键词 隧道支护 矩形截面钢管格栅 抗弯性能 全尺寸试验 有限元分析
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高宽比为4的矩形断面脉动风压的非高斯特性及其极值研究
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作者 阮礼君 阮冠康 +2 位作者 高梓涵 郑超越 刘小兵 《工程力学》 北大核心 2025年第S1期239-243,共5页
通过刚性模型风洞测压试验,研究了高宽比为4的矩形断面表面脉动风压概率密度分布及其非高斯特性,并对高斯分布与非高斯分布的区域进行了划分。在此基础上,采用改进的Hermite法计算了非高斯区域的峰值因子及脉动风压极值。结果表明:高宽... 通过刚性模型风洞测压试验,研究了高宽比为4的矩形断面表面脉动风压概率密度分布及其非高斯特性,并对高斯分布与非高斯分布的区域进行了划分。在此基础上,采用改进的Hermite法计算了非高斯区域的峰值因子及脉动风压极值。结果表明:高宽比为4的矩形断面在侧风面和背风面测点完全位于非高斯区域,其测点的概率密度分布明显偏离高斯分布,呈现出显著的非高斯特性。此外,规范建议峰值因子取值和基于高斯过程的峰值因子均明显低于通过改进的Hermite法确定的峰值因子,建议采用改进的Hermite法来计算非高斯区域的脉动风压极值。 展开更多
关键词 矩形断面 风洞试验 非高斯特性 峰值因子 风压极值
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带连接件矩形顶管隧道F型承插接头抗剪性能
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作者 赵峥嵘 许有俊 +1 位作者 张朝 张旭 《中国铁道科学》 北大核心 2025年第6期152-163,共12页
针对带连接件矩形顶管环缝接头相关研究缺乏试验验证的不足,综合考虑矩形顶管接头构造特征与连接件形式的影响,设计并开展模型试验,研究直螺栓与弯螺栓2种连接形式下矩形顶管接头的抗剪性能。结果表明:2种连接形式的矩形顶管接头剪切变... 针对带连接件矩形顶管环缝接头相关研究缺乏试验验证的不足,综合考虑矩形顶管接头构造特征与连接件形式的影响,设计并开展模型试验,研究直螺栓与弯螺栓2种连接形式下矩形顶管接头的抗剪性能。结果表明:2种连接形式的矩形顶管接头剪切变形均可划分为弹性阶段、强化阶段和屈服阶段,其中强化阶段的接头抗剪刚度最大,比弹性阶段高70%以上;弯螺栓接头对剪力的承载能力达到2061 kN,比直螺栓接头高11%,延性系数达到3.06,比直螺栓接头高15%;钢套环的失效主要表现为倒角位置的屈服及焊缝处的开裂,直螺栓接头的最大钢套环应变为2645με,比弯螺栓接头低20%;弯螺栓接头的混凝土受力区域大于直螺栓接头的,且接头混凝土损伤程度更为严重;直螺栓接头的承口端和插口端连接件受力分别为105和93 kN,而弯螺栓接头的则分别为149和138 kN,弯螺栓受力大于直螺栓,同种接头承口端连接件受力大于插口端;弯螺栓虽能提高接头抗剪刚度,但在抵抗变形过程中接头损伤会比采用直螺栓接头时更严重。 展开更多
关键词 矩形顶管隧道 F型承插接头 纵向连接件 接头试验 抗剪性能
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考虑纵向轴力的矩形盾构隧道纵向抗弯刚度有效率研究
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作者 周晓舟 李志刚 林秀桂 《特种结构》 2025年第1期10-15,共6页
纵向抗弯刚度有效率是分析矩形隧道纵向性能的关键参数,其定义为当受到相同荷载时,均质梁与非均质梁相应位置的位移比。对于矩形盾构隧道,由施工期压力及螺栓预紧力产生的纵向轴力也是隧道纵向结构分析中不可或缺的因素。本文提出一种... 纵向抗弯刚度有效率是分析矩形隧道纵向性能的关键参数,其定义为当受到相同荷载时,均质梁与非均质梁相应位置的位移比。对于矩形盾构隧道,由施工期压力及螺栓预紧力产生的纵向轴力也是隧道纵向结构分析中不可或缺的因素。本文提出一种考虑纵向轴力的矩形盾构隧道纵向抗弯刚度有效率的理论计算方法,并对影响纵向抗弯刚度有效率的相关因素如弯矩轴力之比、截面形状、螺栓分布等进行了分析。研究表明,弯矩轴力之比λ是影响纵向抗弯刚度有效率的决定性因素,其表征着衬砌受拉边缘由弯矩和轴力分别引起的拉压应力之比,当λ=0时,隧道模型退化为无轴力的志波模型,当λ≥1时,纵向抗弯刚度有效率为1,隧道可等效为均质梁。此外,截面形状与螺栓分布对纵向抗弯刚度有效率也有较大的影响,截面形状越扁平,螺栓线刚度越小,纵向抗弯刚度有效率越低。 展开更多
关键词 纵向轴力 矩形盾构 纵向抗弯刚度有效率
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