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国家自然科学基金(40776055)

作品数:19 被引量:70H指数:5
相关作者:刘润闫澍旺张军王洪播徐余更多>>
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发文基金:国家自然科学基金创新研究群体科学基金教育部“新世纪优秀人才支持计划”更多>>
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19 条 记 录,以下是 1-10
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围海造陆对已埋设海底管线安全性的影响被引量:2
2010年
当围海造陆工程需要覆盖原有海底管线时,对海管的不利影响包括两个方面:其一是隔埝与管线相交处,对管线局部造成较大的附加应力;其二是大面积吹填造陆,使管线受力发生变化.在这两种不利荷载的作用下,管线的安全运营受到威胁.结合实际工程,采用规范设计和有限元分析相结合的方法,分析了大面积吹填对海底管线的影响,并设计采用打桩加盖板的保护措施使隔埝能够安全地跨过海底管线.分析结果和实际观测表明,在现有的工况条件下管线上吹填土高度不宜大于4.m,隔埝与管线相交处的保护方案具有有效性.
魏秋晨刘润闫澍旺朱红霞程栋栋
关键词:围海造陆附加荷载管线保护
Model Test Based Soil Spring Model and Application in Pipeline Thermal Buckling Analysis被引量:5
2011年
The buckling of submarine pipelines may occur due to the action of axial soil frictional force caused by relative movement of soil and pipeline, which is induced by the thermal and internal pressure. The likelihood of occurrence of this buckling phenomenon is largely determined by soil resistance. A series of large-scale model tests were carried out to facilitate the establishment of substantial data base for a variety of burial pipeline relationships. Based on the test data, nonlinear soil spring can be adopted to simulate the soil behavior during the pipeline movement. For uplift resistance, an ideal elasticity plasticity model is recommended in the case of H/D (depth-to-diameter ratio)〉5 and an elasticity softened model is recommended in the case of H/D≤5. The soil resistance along the pipeline axial direction can be simulated by an ideal elasticity plasticity model. The numerical analyzing results show that the capacity of pipeline against thermal buckling decreases with its initial imperfection enlargement and increases with the burial depth enhancement.
高喜峰刘润闫澍旺
Vertical Upheaval Buckling of Submarine Buried Heated Pipelines with Initial Imperfection被引量:2
2011年
In this paper,a theoretical solution of vertical buckling is proposed with regard to the typical initial imperfection cases of submarine pipelines.Analytical tools are applied to predicting the occurrence and consequence of inservice buckling of a buried heated pipeline in Bohai Gulf.An evaluation is performed to ensure the pipeline structural integrity during operation under loading conditions.Different protection measures are proposed and their validities are analyzed.Analyses show that for the same magnitude of initial imperfection,the upheaval buckling of pipeline with isolated prop model is the most likely to occur.The empathetic model represents a special sub-case of continuous prop model,and the calculated buckle temperature is between the first stage and the second stage of post-upheaval buckling of continuous prop model.And the larger the initial imperfection,the less the axial force required for the upheaval buckling.Meanwhile,it can be seen that a peak point appears on the curves of temperature difference against buckling amplitude for small initial imperfection.Besides,trenching-burial is one kind of protection measures preventing the pipeline from thermal upheaval.The covered depth-to-diameter ratio depends on the design conditions and subsoil properties.For the given pipeline in this paper,the covered depth-to-diameter ratio is recommended to be 5.
王武刚刘润闫澍旺徐余
High-Order Lateral Buckling Analysis of Submarine Pipeline Under Thermal Stress被引量:4
2012年
It is of importance to study and predict the possible buckling of submarine pipeline under thermal stress in pipeline design.Since soil resistance is not strong enough to restrain the large deformation of pipeline,high-order buckling modes occur very easily.Analytical solutions to high-order buckling modes were obtained in this paper.The relationships between buckling temperature and the amplitude or the wavelength of buckling modes were established.Analytical solutions were obtained to predict the occurrence and consequence of in-service buckling of a heated pipeline in an oil field.The effects of temperature difference and properties of subsoil on buckling modes were investigated.The results show that buckling will occur once temperature difference exceeds safe temperature;high-order pipeline buckling occurs very easily;the larger the friction coefficients are,the safer the submarine pipeline will be.
郭林坪刘润
海底管线沉降量计算方法的理论研究与试验验证
2008年
根据极限平衡和极限分析方法,首先建立了软土地基土体上海底管线的极限承载力计算公式。当地基处于极限状态时,基础作用于地基的全部荷载应等于该地基土体的承载能力,根据这一关系式可以推导出海底管线沉降量的计算公式。最后通过对试验结果的分析,证实所采用的计算方法是可行的。
崔海涛崔溦
关键词:海底管线极限承载力沉降量滑移线模型试验
温度应力下海底管线水平屈曲分析被引量:4
2011年
温度应力下海底管线的屈曲大变形是管线设计中所要考虑的关键问题之一。以某实际工程为背景,应用理想平直管线发生水平向屈曲的解析解,分析了温差和地基土特性对管线屈曲大变形的影响。研究表明,在海底管线水平向屈曲的2种主要模式中,第2种屈曲模式对应的初始屈曲温差相对较低;地基土对管线的约束作用显著影响管线初始屈曲对应的温差。
刘润郭林坪刘文彬徐余
关键词:海底管线解析解温差
Global lateral buckling analysis of idealized subsea pipelines被引量:4
2014年
In order to avoid the curing effects of paraffin on the transport process and reduce the transport difficulty,usually high temperature and high pressure are used in the transportation of oil and gas.The differences of temperature and pressure cause additional stress along the pipeline,due to the constraint of the foundation soil,the additional stress can not release freely,when the additional stress is large enough to motivate the submarine pipelines buckle.In this work,the energy method is introduced to deduce the analytical solution which is suitable for the global buckling modes of idealized subsea pipeline and analyze the relationship between the critical buckling temperature,buckling length and amplitude under different high-order global lateral buckling modes.To obtain a consistent formulation of the problem,the principles of virtual displacements and the variation calculus for variable matching points are applied.The finite element method based on elasto-plastic theory is used to simulate the lateral global buckling of the pipelines under high temperature and pressure.The factors influencing the lateral buckling of pipelines are further studied.Based upon some actual engineering projects,the finite element results are compared with the analytical ones,and then the influence of thermal stress,the section rigidity of pipeline,the soil properties and the trigging force to the high order lateral buckling are discussed.The method of applying the small trigging force on pipeline is reliable in global buckling numerical analysis.In practice,increasing the section rigidity of a pipeline is an effective measure to improve the ability to resist the global buckling.
刘润刘文彬吴新利闫澍旺
关键词:PIPELINE
Global buckling behavior of submarine unburied pipelines under thermal stress被引量:2
2013年
Buckling of submarine pipelines under thermal stress is one of the most important problems to be considered in pipeline design. And pipeline with initial imperfections will easily undergo failure due to global buckling under thermal stress and internal pressure. Therefore, it is vitally important to study the global buckling of the submarine pipeline with initial imperfections. On the basis of the characteristics of the initial imperfections, the global lateral buckling of submarine pipelines was analyzed. Based on the deduced analytical solutions for the global lateral buckling, effects of temperature difference and properties of foundation soil on pipeline buckling were analyzed. The results show that the snap buckling is predominantly governed by the amplitude value of initial imperfection; the triggering temperature difference of Mode I for pipelines with initial imperfections is higher than that of Mode I1; a pipeline with a larger friction coefficient is safer than that with a smaller one; pipelines with larger initial imperfections are safer than those with smaller ones.
郭林坪刘润闫澍旺
砂土中埋设管线竖直向上运动时土抗力研究被引量:10
2011年
埋设的海底管线在高温、高压下较易发生竖直向屈曲大变形,保证足够的埋置深度是海洋工程中克服管线出现竖直向屈曲变形的有效手段之一。因此,研究土体能够提供给管线的抗力及在管线竖直向上拱起过程中土体抗力的变化规律,对管线的抗屈曲大变形设计具有重要的意义。结合渤海湾海底地表土质特点选取细砂进行了室内管-土相互作用试验,测量了不同直径、不同埋置率(上覆土厚与管线直径的比)的试验管段,在竖直向上运动过程中所受到的土抗力;采用数值方法有效地模拟了试验中管段的受力变化过程。进而将结果推广,得到了砂土中常用直径管线受到的土抗力大小及作用规律。试验及数值模拟结果表明,管线竖直向上运动时,土抗力的发挥随竖向位移增加而迅速增大达到峰值,峰值抗力所需要的位移随管径与埋置率的增加而增大;实际工程中峰值抗力对应的管线位移约为管径的0.1倍,计算结果可供管线设计时参考。
刘润李彪王洪播张军徐余
关键词:模型试验土抗力数值模拟
Finite element analysis on thermal upheaval buckling of submarine burial pipelines with initial imperfection被引量:9
2013年
In-service hydrocarbons must be transported at high temperature and high pressure to ease the flow and prevent the solidification of the wax fraction. The pipeline containing hot oil will expand longitudinally due to the rise in temperature. If such expansion is resisted, for example by frictional effects over a kilometer or so of pipeline, compressive axial stress will be built up in the pipe-wall. The compressive forces are often so large that they induce vertical buckling of buffed pipelines, which can jeopardize the structural integrity of the pipeline. A typical initial imperfection named continuous support mode of submarine pipeline was studied. Based on this type of initial imperfection, the analytical solution of vertical thermal buckling was introduced and an elastic-plasticity finite element analysis (FEA) was developed. Both the analytical and the finite element methodology were applied to analyze a practice in Bohai Gulf, China. The analyzing results show that upheaval buckling is most likely to build up from the initial imperfection of the pipeline and the buckling temperature depends on the amplitude of initial imperfection. With the same amplitude of initial imperfection, the triggering temperature difference of upheaval buckling increases with covered depth of the pipeline, the soil strength and the friction between the pipeline and subsoil.
刘润王武刚闫澍旺
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