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981.
In recent years, large shield tunnels with internal double-decked lanes have been developing rapidly in the field of highway tunnels, and prefabricated elements are increasingly adopted in internal structure. Based on the columns-base joint in Zhuguanglu tunnel, which is under construction, 2 full-scale specimens are designed for the quasi-static test, one specimen is connected with grout sleeve splicing and the other is cast in place. The test results show that: the bearing capacity of specimen with grout sleeve splicing is equal to that of cast-in-situ specimen, but its ductility and energy dissipation capacity are worse than that of the cast-in-situ specimen. And for the specimen with grout sleeve splicing, there exists crack concentration on the area above the sleeve. The crack width is too larger in this area. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
982.
Considering the influence of many factors (soil loss, frontal additional thrust, the friction force of the shield shell and the additional grouting force), a method for improving the uniform soil body movement model is pro-posed, and a mechanical calculation model is established to study the calculation method for soil body deformation caused by double-line parallel shield driving. Based on the Mindlin solutions of elastic mechanics, the theoretical solutions for soil body deformations caused by the last three factors are calculated; considering the uniform soil body movement model, the theoretical solutions for soil body deformations caused by soil loss are calculated, then the to-tal theoretical solutions for soil body deformations under multiple factors are obtained by means of superposition. The vertical surface settlement, vertical horizontal displacement, and vertical displacements of the soil body at different depths of Hangzhou Metro Line 1 are calculated to analyze the variation laws. Meanwhile the influential factors for horizontal displacement variation are studied. The research shows that with a change of depth, the settlement of the soil body changes within the scope of 10 to 13 m in the horizontal direction near where the maximum settlement occurs;the direction of the horizontal displacement of the soil body changes with a change of the positional relationship be-tween the calculation points and the tunnel; and with an increase of interval J for the two tunnels, the horizontal dis-placement of the soil body of a deep double-line tunnel decreases while the displacement near the surface changes slightly. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
983.
Based on the Sutong GIL utility tunnel project, which is constructed by the shield machine under the river, and as for the overloading problem at the river bank slope during operating period, the refined threedimensional finite element model was established to study the deformation and cracking characteristics of the tunnel segment structure under different forms of overloading. The evolution laws of section convergence, joint opening and structural stress were analyzed, and the structure damage mechanisms were revealed under conditions of large area loading and local loading. The surface-surcharge control standard was proposed. For the big diameter shield tunneling crossing the silty clay, the research results show that: (1) the deformation failure process is divided into three stages under large area loading condition, taking the design load and compressive yield of rebars inside haunch as the critical points respectively. The first stage is characterized by the elastic stress, the second stage is in plastic state with fracture, and the third stage is accelerating deformation and instability stage. The vertical convergence is 110.5 mm with no opening of joints when rebars are yielded; (2)the deformation failure process under local loading condition is also divided into elasticity, plasticity and instability stages, taking the design load and tensile yield of rebars outside haunch as the critical points respectively. The vertical convergence is 152.6 mm with joint opening of 4.36 mm; (3) the early-warning values of additional stress on the ground under conditions of large area loading and local loading are 110 kPa and 70 kPa respectively. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
984.
This study examines how to incorporate the inventory costs of containerized cargoes into existing liner service planning models such that the designed networks could be improved while not causing extra modeling/computational burden. Two approaches are compared: (i) not considering the inventory costs at all and (ii) incorporating the inventory costs associated with onboard time and those related to transshipment by assuming a fixed connection time. The two models are compared with the ideal model capturing the exact inventory costs on a route choice problem and a capacity planning problem based on extensive randomly generated and practical numerical experiments. The results show that: first, ignoring the inventory costs in service planning models may lead to network design with much higher costs (poor network design decisions); second, in service planning models assuming weekly frequency, the inventory costs associated with onboard time could be formulated exactly, and those related to the connection time of weekly services could be approximated by assuming fixed connection time of 3.5 days for ports with 1 day’s minimum connection time and 4.5 days for ports with 2 days’ minimum connection time.  相似文献   
985.
赵丽  范小晶 《水运工程》2017,(11):209-212
目前,维护疏浚已成为内河航道主要的养护方式之一。由于大多航道两岸的护岸建设年代久远,所以很难收集到完整的航道沿线护岸资料。为此,维护疏浚既要改善航道通航条件,又要保证航道沿线两岸岸坡稳定和建(构)筑物结构安全,成为维护疏浚设计和施工的重点和难点。结合上海市2010—2017年已实施的近百条内河航道维护疏浚项目的工程经验,总结维护疏浚过程中岸坡稳定控制办法。  相似文献   
986.
李新国  王安华  卢昭 《水运工程》2017,(10):130-134
针对在拉美和非洲地区部分码头建设中,存在大型船机设备缺乏和长周期波较为明显、常规打桩船作业和预制构件安装困难的问题,基于一般桩基码头结构,在设计和施工两个方面进行优化,采用桩顶施工行走平台方法施工,利用桩基自身作为支撑结构,大量采用叠合式上部结构,实现将海上施工转化为陆上施工的创新,形成整体推进式桩基码头结构,规避大型船机设备缺乏和长周期波较为明显的问题,具有良好的经济性和对强震区的适应性。  相似文献   
987.
根据长江口深水航道治理工程不同阶段的地形分析,定量分析不同工程阶段影响下北槽丁坝群坝田冲淤厚度以及地形变化。结果表明:在不同的工程阶段,北槽南北侧坝田冲淤差异受工程进度影响,总体呈逐年淤积趋势,南北侧坝田呈"洪季多淤、枯季少淤积"的状态,北侧坝田淤积厚度大于南侧。北槽主槽与坝田地形变化在2010年之前变化较大,2010年之后,主槽基本趋于稳定,变化较缓,坝田则持续淤积。  相似文献   
988.
蜀山泵站枢纽船闸对引江济淮工程航运至关重要,是连通长江与淮河,确保引江济淮航运干线畅通的控制性工程,其闸室规模大、工作水头高、输水能量高,输水过程水力学问题是船闸设计的关键环节。结合工程地质和结构设计,船闸拟采用形式最为简单的闸墙长廊道侧支孔输水系统,输水过程船舶与船闸自身安全能否满足相关要求需要开展细致研究。通过比尺为1∶25的物理模型试验,对其输水过程船舶停泊条件、水力特性及引航道水流条件开展研究。结果表明:在推荐的输水系统布置和阀门开启方式下,各项水力指标均能满足规范和设计要求。  相似文献   
989.
黄东海 《水运工程》2017,(11):22-25
针对现有局部冲刷深度经验公式多、适用范围小、计算结果与实际出入较大的问题,从冲刷机理上推导出通用的局部冲刷公式,并根据实际情况进行修正和确定相关参数。结果表明,整治建筑物周边局部冲刷深度主要与工前水深、工程前后流速变幅、水流紊动强度、流量调整情况等有关;冲刷公式中参数k、λ、n的取值对计算结果影响较大;修正后的公式与规范相比具有一定优势。  相似文献   
990.
码头前沿水域的横流过大容易导致船舶撞击码头或系船缆绳断裂,进而引发安全事故,因此研究码头前沿水域的流场状况对码头轴线合理选取和船舶的安全靠泊有着非常重要的意义。基于桩群概化方法,采用Mike21软件中的三角形网格水动力模块(FM模块)对曹妃甸矿石一期、矿石三期高桩码头附近的流场进行了数值模拟,并与现场实测流速、流向进行对比验证,确定了模型中的桩群影响参数。在此基础上,深入研究相邻高桩码头桩群阻力对周边海域的影响,并对码头前横流进行计算和分析。此方法实施简单、计算效率高,对大范围海域影响研究结果合理,对高桩码头前沿水域有关流速、流向的计算结果更加准确,对码头轴线合理选取和船舶安全靠泊有重要的参考意义。  相似文献   
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