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621.
In order to quantitatively evaluate the safety of the surrounding rock of an underground cavern under seis-mic load, a comprehensive evaluation method for the stability of surrounding rock is proposed based on the general safety factor and point safety factor. A calculation method for the general safety factor of a cavern based on the prin-ciple of shear strength reduction of a rock mass is given, the run-through of the plastic zone between the main power-house and main transformer room is presented as a critical criterion for the overall instability of the cavern, and the general safety factor is obtained by searching for the reduction coefficient. A point safety factor calculation method based on the Mohr-Coulomb yield criterion is given. The influence of different seismic input parameters on the general safety factor of the cavern and the point safety factor of key positions are studied based on an underground power-house cavern of a hydropower station in Southwest China. The results show that the quantitative evaluation method for the stability of the surrounding rock based on the safety factor is feasible and can reflect the general safety de-gree and local safety degree of different positions of the cavern for different working conditions. It is found that the general safety factor of the cavern and the point safety factor of key positions decrease with an increase of the ampli-tude and duration of a seismic wave while they increase with an increase of the incident angle; additionally, the low frequency of a seismic wave has a great influence on the cavern while the high frequency has little effect. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
622.
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   
623.
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   
624.
石墨烯具有诸多优异的物理、化学特性,在电化学储能领域得到了广泛的关注。本文综述了石墨烯薄膜以及石墨烯复合材料薄膜在锂离子电池以及超级电容器柔性电极中的应用进展。根据石墨烯在柔性电极中作用的不同分为三个部分结合研究实例分别论述,并对石墨烯基薄膜电极材料在柔性电化学储能器件中的应用前景进行了分析和展望。  相似文献   
625.
刘建设  王永兴 《船电技术》2018,(2):22-24,49
本文根据某吸盘式挖泥船的使用要求,设计了全电力驱动系统方案。对配电系统方案、变频驱动系统方案和谐波处理方案进行了详细分析。与当前典型的挖泥船变频驱动系统方案相比,本文提出了一种新的更加经济的系统方案,并在实船已成功应用。  相似文献   
626.
为了延长海底受损光电缆的最大供电时间,分析了海缆导电芯线在海洋环境中的电腐蚀特性的影响,模拟海洋环境设计实验对比了三种不同规格海缆在不同受损程度下的电腐蚀特性以及最大供电时间。此外,本文还探究了钛合金材料对于改善受损海缆电化学腐蚀特性的应用前景。实验结果表明可以通过改善设计,使用新材料等手段有效延长供电时间。  相似文献   
627.
针对目前电力推进船舶普遍采用有线进行电气设备过热监测的局限性,结合无线传感器网络(WSN)技术,研制了一种基于WSN的电力推进船舶电气设备过热监测系统。设计并制作了中心节点和传感器节点的硬件,编写了过热监测的软件并创新性的采用软件动态休眠节能和发射功率控制的方案,有效的延长了系统的使用寿命。结果表明该系统实现了电气设备过热的精确测量,实验室数据测试证明其和有线测量可以达到同样的精度。  相似文献   
628.
本文着重介绍了固态电解质的特性,包括聚合物电解质、氧化物电解质、硫化物电解质;分析了固态电池的应用现状,指出了固态锂电池技术未来的发展趋势。  相似文献   
629.
宁武  李君  宣国祥  郭超  黄岳 《水运工程》2017,(10):154-159
红花二线船闸是广西西江黄金水道首批重点建设项目,是提升柳江及西江通航能力、实现西江亿吨黄金水道的重要工程,其闸室规模与三峡船闸一致、工作水头近20 m、输水能量巨大。结合工程特点,选择了闸底长廊道侧支孔输水系统,设计了输水系统具体布置,并提出采用汇合廊道改善单边阀门运行输水流态的措施。通过比尺为1∶30的物理模型试验,对不同阀门运行工况下输水系统水力特性、闸室船舶停泊条件、进出水口水流条件等开展研究,推荐了使水力指标满足规范和设计要求的阀门开启方式。  相似文献   
630.
对降压斩波电路负载加反电动势其电流在不同情况下发生的连续和断续现象进行了研究。根据分段线性化思想,推断出降压斩波电路输出电流在断续情况下的条件,给出了其在电流断续的计算公式,为其实际应用提供了方便。  相似文献   
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