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溢流面板堆石坝泄槽底板稳定及结构应力分析 被引量:3
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作者 廖海梅 赵青 陈桂友 《南水北调与水利科技》 CAS CSCD 北大核心 2014年第6期116-119,139,共5页
基于推导的泄槽底板抗滑稳定安全系数计算式,运用正交设计的直观分析法进行底板稳定性敏感性分析,结果表明阻滑板长度、底板长度和溢流平均速度是影响底板稳定的重要因素.从底板的抗滑稳定角度,分析及计算底板最大允许流速范围为15.33~... 基于推导的泄槽底板抗滑稳定安全系数计算式,运用正交设计的直观分析法进行底板稳定性敏感性分析,结果表明阻滑板长度、底板长度和溢流平均速度是影响底板稳定的重要因素.从底板的抗滑稳定角度,分析及计算底板最大允许流速范围为15.33~40.67m/s.最后以实际工程为例,分析了泄槽底板在单一阻滑板加固作用下的抗滑稳定性以及阻滑板与底板的应力. 展开更多
关键词 溢流面板堆石坝 泄槽底板 稳定分析 结构应力分析
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基于ANSYS二次开发的管系结构应力分析系统 被引量:7
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作者 张庆峰 谢禹钧 李翔 《机械设计与制造》 北大核心 2006年第3期78-79,共2页
针对于含缺陷压力管系的结构应力分析的复杂性、精确性以及ANSYS软件良好的开放性,为适用不同层次的用户使用,运用其专有语言APDL、UIDL开发出一个基于ANSYAS环境的管系结构应力分析系统。通过二次开发的界面,简化了用户的操作,避免了... 针对于含缺陷压力管系的结构应力分析的复杂性、精确性以及ANSYS软件良好的开放性,为适用不同层次的用户使用,运用其专有语言APDL、UIDL开发出一个基于ANSYAS环境的管系结构应力分析系统。通过二次开发的界面,简化了用户的操作,避免了重复劳动,即使对ANSYS不很熟悉的技术人员也可以进行复杂的管系结构分析,大大提高了工作效率。 展开更多
关键词 ANSYS二次开发 APDL UIDL 管系结构应力分析
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结构应力分析中的变弹模法
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作者 沈家荫 张扬 《岩土工程学报》 EI CAS 1987年第5期1-11,共11页
本文提出的具有普遍意义的变弹模法,可以将复杂结构化为一些简单的结构来计算,还可与边界元法、有限元法等数值计算方法结合,有效地解决工程实际问题。并用变弹模法探讨梭米格里阿纳(Somigliana)公式用于无界域的情形,得出了任意无限大... 本文提出的具有普遍意义的变弹模法,可以将复杂结构化为一些简单的结构来计算,还可与边界元法、有限元法等数值计算方法结合,有效地解决工程实际问题。并用变弹模法探讨梭米格里阿纳(Somigliana)公式用于无界域的情形,得出了任意无限大物体不受力时无刚体位移的重要结论。 展开更多
关键词 弹模 数学证明 边界元法 无界域 有限元法 边界元素法 数值分析 结构应力分析 刚体位移
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车辆超载对沥青路面结构的影响分析 被引量:19
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作者 张敏江 石岩 +2 位作者 王新波 王丹 赵乃志 《沈阳建筑大学学报(自然科学版)》 CAS 2008年第1期16-20,共5页
目的研究了汽车超载对半刚性基层沥青路面结构的影响规律,为沥青路面设计与施工提供参考依据.方法利用现行规范规定的计算方法对3种典型路面结构在不同超载率的情况下进行分析.结果路面超载100%时,高速公路、一级公路、二级公路三种路... 目的研究了汽车超载对半刚性基层沥青路面结构的影响规律,为沥青路面设计与施工提供参考依据.方法利用现行规范规定的计算方法对3种典型路面结构在不同超载率的情况下进行分析.结果路面超载100%时,高速公路、一级公路、二级公路三种路面结构只能使用大约475 d、511 d、365 d;当土基模量从20 MPa增加到80 MPa时,3种公路基层的层底拉应力平均降低了18%,底基层的层底拉应力平均降低了43%;轴载由100 kN增加到200 kN时,底基层的层底拉应力增加近1倍,底基层的厚度增加了31 cm,大约为标准轴载作用下基层厚度的1.5倍.结论数值计算表明随着超载率的增加,标准轴次换算系数明显增加;车辆超载使累计标准轴次大大增加,导致路面使用寿命明显缩短;随着土基模量值的加大,结构层层底拉应力值逐渐减小;要使重载作用下路面结构的使用寿命达到标准轴载作用下的使用寿命,应该增加路面结构层的厚度. 展开更多
关键词 车辆超载 沥青路面 使用寿命 结构应力分析
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船舶应急封堵装置主体结构设计及水阻力的分析
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作者 侯恕萍 张俊 +2 位作者 王钦政 刘旭东 于海洋 《舰船科学技术》 北大核心 2017年第2期19-25,共7页
针对船舶破损应急封堵装置的整体结构,利用UG软件建立封堵装置整体结构的三维模型,通过Ansys Workbench软件对应急封堵装置结构中承受力作用的重要部件进行结构应力分析,并基于仿真结果对结构整体进行优化。然后对整体装置在布放使用过... 针对船舶破损应急封堵装置的整体结构,利用UG软件建立封堵装置整体结构的三维模型,通过Ansys Workbench软件对应急封堵装置结构中承受力作用的重要部件进行结构应力分析,并基于仿真结果对结构整体进行优化。然后对整体装置在布放使用过程中的水阻力情况进行计算和仿真分析,确定整体装置最佳的布放形式。 展开更多
关键词 船舶破损 应急封堵装置 结构应力分析 水阻力分析
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A new theory for determining large deformation area of roof at intersection and verification analysis
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作者 WU Yi-yi GAO Yu-bing +2 位作者 MA Xiang ZHANG Xing-xing HE Man-chao 《Journal of Central South University》 2025年第2期656-677,共22页
The intersection is a widely used traffic line structure from the shallow tunnel to the deep roadway,and determining the subsidence hidden danger area of the roof is the key to its stability control.However,applying t... The intersection is a widely used traffic line structure from the shallow tunnel to the deep roadway,and determining the subsidence hidden danger area of the roof is the key to its stability control.However,applying traditional maximum equivalent span beam(MESB)theory to determine deformation range,peak point,and angle influence poses a challenge.Considering the overall structure of the intersection roof,the maximum equivalent triangular plate(METP)theory is proposed,and its geometric parameter calculation formula and deflection calculation formula are obtained.The application of the two theories in 18 models with different intersection angles,roadway types,and surrounding rock lithology is verified by numerical analysis.The results show that:1)The METP structure of the intersection roof established by the simulation results of each model successfully determined the location of the roof’s high displacement zone;2)The area comparison method of the METP theory can be reasonably explained:①The roof subsidence of the intersection decreases with the increase of the intersection angle;②The roof subsidence at the intersection of different roadway types has a rectangular type>arch type>circular type;③The roof subsidence of the intersection with weak surrounding rock is significantly larger than that of the intersection with hard surrounding rock.According to the application results of the two theories,the four advantages of the METP theory are compared and clarified in the basic assumptions,mechanical models,main viewpoints,and mechanism analysis.The large deformation inducement of the intersection roof is then explored.The J 2 peak area of the roof drives the large deformation of the area,the peak point of which is consistent with the center of gravity position of the METP.Furthermore,the change in the range of this peak is consistent with the change law of the METP’s area.Hence,this theory clarifies the large deformation area of the intersection roof,which provides a clear guiding basis for its initial support design,mid-term monitoring,and late local reinforcement. 展开更多
关键词 roadway intersection roof deformation equivalent span theory triangular plate structure numerical analysis stress partial tensor
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Finite element analysis on nut post structure of Three Gorges Project ship lift 被引量:2
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作者 石端伟 蔡栋材 吴志纯 《Journal of Central South University》 SCIE EI CAS 2009年第4期614-620,共7页
A nonlinear finite element model of the nut post reinforced concrete (RC) structure of the safety mechanism in the Three Gorges Project (TGP) ship lift was built by ANSYS software. Some irregular structures such a... A nonlinear finite element model of the nut post reinforced concrete (RC) structure of the safety mechanism in the Three Gorges Project (TGP) ship lift was built by ANSYS software. Some irregular structures such as the nut post and the rotary rod were divided by curved surface into a series of regular parts, and the structures were all meshed to hexahedron. Constraint equations were defined between two interfaces with different element sizes and mesh patterns. PRETS179 elements were used to simulate the preload in the tendons and the pre-stressed screws, and the loss of prestressing force was calculated. Five extreme load cases were analyzed. The stress of each part in the structure was obtained. The results indicate that the maximum compressive stress of concrete C35 is 24.13 MPa, so the concrete may be partially crushed; the maximum tensile stress of the grouting motar is 6.73 MPa, so the grouting motar may partially fracture; the maximum yon Mises stress of the rotary rod is 648.70 MPa, therefore the rotary rod may partially yield. 展开更多
关键词 ship lift safety mechanism nut post reinforced concrete structure finite element analysis
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Progressive failure analysis of composite structure based on micro- and macro-mechanics models 被引量:1
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作者 孙志刚 阮绍明 +1 位作者 陈磊 宋迎东 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期2980-2988,共9页
Based on parameter design language, a program of progressive failure analysis in composite structures is proposed. In this program, the relationship between macro- and micro-mechanics is established and the macro stre... Based on parameter design language, a program of progressive failure analysis in composite structures is proposed. In this program, the relationship between macro- and micro-mechanics is established and the macro stress distribution of the composite structure is calculated by commercial finite element software. According to the macro-stress, the damaged point is found and the micro-stress distribution of representative volume element is calculated by finite-volume direct averaging micromechanics(FVDAM). Compared with the results calculated by failure criterion based on macro-stress field(the maximum stress criteria and Hashin criteria) and micro-stress field(Huang model), it is proven that the failure analysis based on macro- and micro-mechanics model is feasible and efficient. 展开更多
关键词 composite progressive analysis finite-volume direct averaging micromechanics (FVDAM) failure criteria
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Nonlinear analysis of pounding between decks of multi-span bridge subjected to multi-support and multi-dimensional earthquake excitation
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作者 张海 焦莉 林君南 《Journal of Central South University》 SCIE EI CAS 2013年第9期2546-2554,共9页
The nonlinear analysis of pounding between bridge deck segments subjected to multi-support excitations and multi-dimensional earthquake motion was performed.A novel bottom rigid element(BRE)method of the current displ... The nonlinear analysis of pounding between bridge deck segments subjected to multi-support excitations and multi-dimensional earthquake motion was performed.A novel bottom rigid element(BRE)method of the current displacement input model for structural seismic analysis under the multi-support excitations was used to calculate structural dynamic response.In the analysis,pounding between adjacent deck segments was considered.The seismic response of a multi-span bridge subjected to the multi-support excitation,considering not only the traveling-wave effect and partial coherence effect,but also the seismic non-stationary characteristics of multi-support earthquake motion,was simulated using finite element method(FEM).Meanwhile,the seismic response of the bridge under uniform earthquake was also analyzed.Finally,comparative analysis was conducted and some calculation results were shown for pounding effect,under multi-dimensional and multi-support earthquake motion,when performing seismic response analysis of multi-span bridge.Compared with the case of uniform/multi-support/multi-support and multi-dimensional earthquake input,the maximum values of pounding force in the case of multi-support and multi-dimensional earthquake input increase by about 5 8 times;the absolute value of bottom moment and shear force of piers increase by about50%600%and 23.1%900%,respectively.A conclusion can be given that it is very necessary to consider the pounding effect under multi-dimensional and multi-support earthquake motion while performing seismic response analysis of multi-span bridge. 展开更多
关键词 POUNDING bridge bottom rigid method (BRE) multi-dimensional and multi-support earthquake motion
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