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591.
赵惠  陈新权  杨启  万浩  张润喜 《船舶工程》2017,39(11):18-22
以大型自航抓斗挖泥船为研究对象,建立相应的水动力计算模型。主要研究抓斗挖泥作业不同阶段下船舶运动、锚泊线受力情况以及其随不同环境载荷的变化规律,为船舶安全作业提供依据。研究结果表明,船舶在抓斗旋转和卸料时最为危险,船舶横荡、横摇及各锚泊线张力受其影响很大,实际作业时应尽量保持迎浪状态,进而确保船舶作业安全。  相似文献   
592.
安全应急预案对于提高安全事故中的救援能力、减少安全事故带来的损失具有重要的意义。以南京以下12.5m深水航道二期工程为背景,对拟定的安全应急预案进行分析研究,总结出安全应急预案体系包括综合安全应急预案、专项应急预案和现场处置方案,提炼各层次预案对应的事件类型和具体内容,并编制首接责任制下的应急组织机构和应急流程。  相似文献   
593.
为验证采用高性能排水板作为淤泥质土径向排水通道的适用性和效果,在连云港徐圩港区设置一段高性能排水板试验段,埋设部分原位观测仪器。通过高性能排水板和普通排水板标段地基固结度和深层水平位移的对比来研究高性能排水板的应用效果。对比结果表明:高性能排水板应用效果良好;同样工期内,高性能排水板地基比普通排水板试验段地基的固结度高,深层水平位移小。  相似文献   
594.
为讨论荷载场与氯离子扩散场的共同作用,引入考虑荷载作用下的混凝土损伤影响函数Fd,采用ABAQUS有限元软件的USDFLD子程序开发功能,在内置的Mass Diffusion模块中考虑荷载作用和力学损伤对氯离子扩散的影响,实现钢筋混凝土构件层次荷载场和氯离子扩散场的多物理场共同作用分析。结果表明:有限元计算结果和试验结果吻合良好;随着荷载比的增大,氯离子在混凝土中的扩散速度逐渐加快,且拉应力对氯离子扩散的促进作用远大于压应力。为探究氯离子在混凝土中的扩散规律提供了一种新方法。  相似文献   
595.
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   
596.
More and more multiple-track tunnels and super-large section tunnels have been built, and disman- tling of temporary strut is a weak point of the whole structure during force transfer when the secondary lining is con- structed. It is significant to guarantee structure safety during dismantling of temporary strut. Little systematic re- search on safety in dismantling of temporary strut of the super-large section tunnel with double-layer primary support has been conducted, so the internal force and security of the two-layer primary support of the Xinkaotang tunnel were analyzed by a numerical analysis and site measurement, and it proves the effect of two-layer primary support on the safety during strut dismantling. The research results indicate that: (1) with constant support thickness and one-time longitudinal dismantling length, the safety factor of secondary primary support is larger than that of the first primary support, and the safety factor of the first primary support is larger than that of the single-layer primary support. Change range of safety factor for the first primary support is smaller than that of the single-layer primary support, and the safe factor for the single-layer primary support is smaller than that of the secondary primary support; (2) with the same support pattern, the safety factors increase firstly and then decrease with an increase of the onetime dismantling length. The calculated results of various cases show that the reasonable one-time dismantling length for this project is about 9 m. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
597.
Jacking force is the most important parameter in jacking pipe engineering, and reasonable calculation of jacking forces plays an important role in safe and smooth pipe jacking construction. There are many calculation methods for pipe jacking force at present, and the calculation results may be affected to some extent by different cal⁃ culation methods. For this reason, calculation methods of jacking force (frictional resistance) were collected and a comparative analysis was conducted with aspects to the advantages, disadvantages and applicabilities. The results show that as for the jacking force calculated by empirical formulae, the soil layer classifications corresponding to giv⁃ en frictional force per unit area and relevant factors to be considered are different, and the values of frictional force per unit area between pipe and soil in the same soil layer are also different; as for the jacking force calculated by theo⁃ retical formulae, the calculation methods for vertical earth pressure at crown are different and much effected by the pipe buried depth; as for the jacking force calculated by numerical simulation, the selected theories for the simula⁃ tion program and the construction factors to be considered during simulation are different. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
598.
Wet shotcrete spraying units are widely used in underground engineering, for railways, highways, water conservancy and hydropower stations, municipal works, mining and military and other industries. Structural analysis and mechanical behavior optimization are conducted regarding the lifting arm of a TKJ series shotcrete spraying unit, and optimization of the hinge point position and working scope of the lifting arm is realized. The optimal layout scheme for the hinge force is given based on the Monte Carlo method, the hinge force of the lifting arm is improved for the mean and maximum values, and the maximum and average hinge force of the lifting cylinder decrease by 23.14% and 7.70%, respectively, compared with that of the original scheme. The static strength is checked using Ansys-Workbench for the optimized scheme, and the results show that the optimized scheme has a larger safety re-serve and that the structural design is more reasonable than the original scheme. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved.  相似文献   
599.
以江苏某重力式船闸闸室结构为例,采用ABAQUS软件建立船舶-闸室结构-土体三维有限元模型,对船舶撞击闸室进行瞬态动力分析,得到不同工况下的撞击力时程曲线和撞击力值等结果。研究结果表明:船舶撞击闸室的法向平均撞击力大小与船舶排水量的12次方、撞击速度的1次方、撞击角度的1次方成线性关系;将软件模拟的船舶法向撞击力数值与依据JTJ 307—2001《船闸水工建筑物设计规范》得到的计算值比较,发现规范公式得到的数值普遍偏小,低估了过闸船舶撞击力的影响。  相似文献   
600.
梁稷 《上海造船》2017,33(2):18-23
单点系泊系统作为浮式生产储油卸油装置(Floating Production Storage and Offloading,FPSO)的核心组成部分,需在FPSO进入安装现场之前完成安装,随后FPSO进入安装现场进行回接。以我国南海某具体工程项目为背景,全面、系统地介绍FPSO悬链腿单点系泊系统的安装及回接方法,并采用OrcaFlex分析软件对各个施工步骤进行相关的模拟分析。该单点系泊系统的整个安装过程可分为抓地锚安装、下段锚腿铺设、锚腿张紧、上段锚腿铺设、单点浮筒拖航及就位和锚系回接单点浮筒等6个阶段。  相似文献   
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