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141.
张福涛 《探矿工程》2017,44(10):47-50
增加松软煤层穿层孔煤孔段的长度可以提高穿层孔单孔瓦斯抽采效果,利用挠性钻具组合施工煤孔段可以达到延长煤孔段的目的。本文建立了挠性钻具施工的力学模型,研究了强造斜的运动学特征,并提出了造斜过程的运动学曲线;根据力学模型及运动学特征,研究了强造斜钻进工艺,尽可能增加钻孔煤层钻遇率。  相似文献   
142.
唐山沿海地区由于自然历史原因造成土体结构与内陆地区相差甚远,土体结构多层,且上部以软弱粘性土、砂类土为主,使得单一桩型成本较高、效率低、施工难度大且易造成环境污染。针对这些问题并结合本地区地层,设计试验了一套粉喷桩和预应力混凝土管桩相结合的柔刚组合桩施工方法,降低了施工难度、提高了效率、降低了成本,实现桩基施工无泥浆排放的节能环保示范,为类似地区地基基础工程施工提供了借鉴和参考。  相似文献   
143.
Bend stiffeners are essential components of a flexible riser system, employed to ensure a smooth transition at the upper connection and to protect the riser against over bending and from accumulation of fatigue damage. The highly nonlinear rate dependent behavior of these structures directly affects the integrity assessment of the riser in one of its most critical regions, the top connection. A steady-state formulation (disregarding inertial forces) and numerical solution procedure is developed in this work employing the perturbation method for a nonlinear viscoelastic bend stiffener large deflection beam model subjected to harmonic loading conditions. For stochastic loading conditions, the response is calculated employing the superposition principle by summing up the steady-state result of a number of individual frequency components. A time domain formulation is also derived employing the state-variable approach for the numerical solution of the resulting hereditary integral in the governing equations. A case study is presented for the top connection system of a 4″ ID flexible riser using relaxation and tensile experimental data obtained from a typical class of bend stiffener polyurethane. Harmonic and stochastic input loading conditions are employed for time and frequency domain model comparison/validation and to assess loading history and frequency influence in the curvature response.  相似文献   
144.
开发了一种新型的深吃水干树式半潜生产平台(TCDD-Semi),该平台可用于中国南海深水区域的油气田开发。它的一个显著特点是立柱的截面形状呈现为渐变形式,而非传统的等截面形式。立柱的底部最大,向上逐渐变小,再结合适当的下浮体设计,能够为平台在服役前期及在位状态时提供足够的浮力以及稳性。最重要的是这种新型立柱的设计能够明显地减小平台在恶劣海况时的垂向运动,从而使在平台上布置具有干式采油树的TTR立管系统成为可能。此外,这种渐变式的立柱设计也有利于减弱平台在流作用下的涡激诱导运动(VIM)。分析结果表明这种渐变式立柱半潜平台可以明显降低平台的垂向运动,也可以在码头组装时提供足够的浮力以及在平台下沉过程中提供足够的稳性。平台优越的垂向运动性能可以使顶部张紧式立管的行程范围限制在10.5 m之内(包括平台偏移、垂荡运动、潮汐影响、海床沉降、热膨胀等因素)。分析结果表明平台的垂荡范围、水平偏移、倾侧角度、上部模块重心处的加速度等可以满足设计要求,证明了这种新型干树式半潜平台的可行性。  相似文献   
145.
任铁  宋磊建  沈志平  周佳 《海洋工程》2017,35(6):101-108
对柔性立管的疲劳损伤特性进行分析,探究抗拉层与抗压层的疲劳特性,并分析弯曲加强器的存在与否对柔性立管疲劳损伤的影响。研究表明:柔性立管最内层抗拉层上的疲劳损伤最大,从内到外,抗拉层的疲劳损伤依次减小;抗压层受到的疲劳损伤远小于抗拉层的疲劳损伤;弯曲加强器的存在可以减小立管的疲劳损伤,并改变抗拉层疲劳危险点的位置。  相似文献   
146.
公路路基地基承载力的离心模型试验与分析   总被引:1,自引:0,他引:1  
刘怡林  黄茂松  杜佐龙  马少坤 《岩土力学》2010,31(11):3499-3504
公路路基由于基底的柔性和荷载分布为梯形,路基地基的破坏模式和确定方法与刚性基础地基有所差异,对公路路基地基承载力的研究具有重要的理论意义和实用价值。通过柔性条形基础、梯形路基以及模拟沟谷地形的柔性条形基础等3组离心模型试验,对公路路基地基的破坏机制和极限承载力进行了研究,并采用关联流动的Mohr-Coulomb内切圆屈服准则对试验结果进行了数值模拟和对比分析,研究结果表明,公路路基地基由于基底的柔性和较高的离心加速度,很难产生理想的整体剪切破坏形式;与刚柔性条形基础相比,梯形路基作用下的基底中心点沉降更大;沟谷地形对柔性条形基础基底中心点的沉降有一定的影响,但并不明显影响地基极限承载力。  相似文献   
147.
通过采用柔性加筋注浆技术处理台后回填土现场试验研究并结合室内试验的方式,研究了柔性加筋注浆新技术处理湘西红砂岩土石混填台背的施工工艺特性、加固实现机制和加固效果。现场试验及质量测试表明,水平柔性加筋注浆新技术处理湘西红砂岩土石混填台背施工工艺简单、加固效果良好,具有较好的开发应用价值。同时,现场试验过程取得大量施工参数和试验数据,为改进该新技术的设计计算及施工参数、完善施工工艺获得素材; 对有效预防和减少桥头跳车现象的发生,保证行车的舒适和安全也提供了可供选择的新方式。  相似文献   
148.
It is assumed that a pipeline is laid through a vertical fault fracture zone, and is excited by seismic ground motion modelled as stationary stochastic process. For horizontal incidence of waves, the cross-PSD (Power Spectral Density) function is developed using wave propagation theory, while for vertical incidence of waves the cross-PSD function is composed by auto-PSD model, coherence model and site response model. As the seismic input, the cross-PSD function is used to calculate the the axial and lateral seismic responses of underground pipeline through the fracture zone. The results show that the incident directions of seismic waves, width and soil property of the fracture zone have great influence on underground pipeline. It is suggested that the flexible joints with appropriate stiffness should be added into the pipeline near the interfaces between the fracture zone and the surrounded media.  相似文献   
149.
The report summarizes the observed damage to a variety of buildings near the epicenter of the M6.8 Luding earthquake in Sichuan Province, China. They include base-isolated buildings, multi-story reinforced concrete (RC) frame buildings, and masonry buildings. The near-field region is known to be tectonically highly active, and the local intensity level is the highest, that is, 0.4g peak ground acceleration (PGA) for the design basis earthquake, in the Chinese zonation of seismic ground motion parameters. The extent of damage ranged from the weak-story collapse that claimed lives to the extensive nonstructural damage that suspended occupancy. The report highlights the first observation of the destruction of rubber bearings and viscous dampers in the isolation layer of Chinese seismically isolated buildings. It also features the rare observation of the brittle shear failure of RC columns in moment-resisting frames in a region of such a high seismic design requirement. Possible reasons that may have attributed to the reported damage are suggested by providing facts observed in the field. However, careful forensic analyses are needed before any conclusive judgment can be made.  相似文献   
150.
Under the action of Rayleigh waves, pile head is easy to rotate with a concrete pile cap, and pure fixed-head condition is rarely achieved, which is a common phenomenon for it usually occurs on the precast piles with insufficient anchorage. In addition, the propagation characteristics of Rayleigh wave have been changed significantly due to the existence of capillary pressure and the coupling between phases in unsaturated soil, which significantly affects the pile-soil interaction. In order to study the above problems, a coupled vibration model of unsaturated soil–pile system subjected to Rayleigh waves is established on the basis that the pile cap is equivalent to a rigid mass block. Meanwhile, the soil constitution is simplified to linear-elastic and small deformations are assumed to occur during the vibration phase of soil–pile system. Then, the horizontal dynamic response of a homogeneous free-field unsaturated soil caused by propagating Rayleigh waves is obtained by using operator decomposition theory and variable separation method. The dynamic equilibrium equation of a pile is established by using the dynamic Winkler model and the Timoshenko beam theory, and the analytical solutions of the horizontal displacement, rotation angle, bending moment and shear force of pile body are derived according to the boundary conditions of flexible constraint of pile top. Based on the present solutions, the rationality of the proposed model is verified by comparing with the previous research results. Through parametric study, the influence of rotational stiffness and yield bending moment of pile top on the horizontal dynamic characteristics of Rayleigh waves induced pile is investigated in detailed. The analysis results can be utilized for the seismic design of pile foundation under Rayleigh waves.  相似文献   
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