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Investigation on dynamic response of liquid-filled cylindrical shellstructures under the action of combined blast and fragments loading
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作者 Zhujie Zhao Hailiang Hou +4 位作者 Dian Li Xiaowei Wu Yongqing Li Zhenghan Chen Linzhi Wu 《Defence Technology(防务技术)》 2025年第7期334-354,共21页
This study designs four types of liquid-filled cylindrical shell structures to investigate their protection characteristics against explosive shock waves and high-speed fragments.Bare charge and charge-driven prefabri... This study designs four types of liquid-filled cylindrical shell structures to investigate their protection characteristics against explosive shock waves and high-speed fragments.Bare charge and charge-driven prefabricated fragments are employed to examine the damage under blast shock waves and combined blast and fragments loading on various liquid-filled cylindrical shell structures.The test results are compared to numerical calculations and theoretical analysis for the structure's deformation,the liquid medium's movement,and the pressure waves'propagation characteristics under different liquid-filling methods.The results showed that the filling method influences the blast protection and the struc-ture's energy absorption performance.The external filling method reduces the structural deformation,and the internal filling method increases the damage effect.The gapped internal filling method improves the structure's energy absorption efficiency.The pressure wave loading on the liquid-filled cylindrical shell structure differs depending on filling methods.Explosive shock waves and high-speed fragments show a damage enhancement effect on the liquid-filled cylindrical shell structure,depending on the thickness of the internal liquid container layer.The specific impulse on the inner surface of the cylindrical shell positively correlates to the radial deformation of the cylindrical shell structure,and the external liquid layer limits the radial structural deformation. 展开更多
关键词 Blast wave Combined blast and fragments loading Filling method Liquid-filled structure dynamic response
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DYNAMIC RESPONSE OPTIMIZATION DESIGN FOR ENGINEERING STRUCTURES BASED ON RELIABILITY 被引量:11
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作者 戴君 陈建军 +2 位作者 李永公 赵竹青 马洪波 《应用数学和力学》 EI CSCD 北大核心 2003年第1期39-46,共8页
In many practical structures, physical parameters of material and applied loads have random property.To optimize this kind of structures,an optimum mathematical model was built.This model has reliability constraints o... In many practical structures, physical parameters of material and applied loads have random property.To optimize this kind of structures,an optimum mathematical model was built.This model has reliability constraints on dynamic stress and displacement and upper & lower limits of the design variables. The numerical characteristic of dynamic response and sensitivity of dynamic response based on probability of structure were deduced respectively. By equivalent disposing, the reliability constraints were changed into conventional forms. The SUMT method was used in the optimization process.Two examples illustrate the correctness and practicability of the optimum model and solving approach. 展开更多
关键词 工程结构 动力响应 动力灵敏度 可靠性约束 优化设计 动应力 动位移
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Dynamic responses of K-type and inverted-K-type jacket support structures for offshore wind-turbines 被引量:1
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作者 LIAO Ying-di GUO Meng-yuan +2 位作者 WANG Na HOU Li-jun CHEN Da 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第4期947-956,共10页
The jacket structure has become more popular as the offshore wind-turbine support structure. K-type and inverted-K-type jacket support structures have superior potential due to their fewer joints and lower cost of man... The jacket structure has become more popular as the offshore wind-turbine support structure. K-type and inverted-K-type jacket support structures have superior potential due to their fewer joints and lower cost of manufacture and installation. A numerical study was presented on the dynamic responses of K-type and inverted-K-type jacket support structures subjected to different kinds of dynamic load. The results show that the inverted-K-type jacket structure has higher natural frequencies than the K-type. The wave force spectrum response shows that the maximum displacement of the K-type jacket structure is larger than that of the inverted-K-type. The time-history responses under wind and wave-current load indicate that the inverted-K-type jacket structure shows smaller displacement and stress compared with the K-type, and presents different stress concentration phenomena. The dynamic responses reveal that the inverted-K-type of jacket support structure has greater stiffness and superior mechanical properties, and thus is more applicable in the offshore area with relatively deep water. 展开更多
关键词 JACKET SUPPORT structure K-type inverted-K-type FOUNDATION dynamic responseS
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A combined finite element and deep learning network for structural dynamic response estimation on concrete gravity dam subjected to blast loads 被引量:1
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作者 Xin Fang Heng Li +3 位作者 She-rong Zhang Xiao-hua Wang Chao Wang Xiao-chun Luo 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第6期298-313,共16页
Social infrastructures such as dams are likely to be exposed to high risk of terrorist and military attacks,leading to increasing attentions on their vulnerability and catastrophic consequences under such events.This ... Social infrastructures such as dams are likely to be exposed to high risk of terrorist and military attacks,leading to increasing attentions on their vulnerability and catastrophic consequences under such events.This paper tries to develop advanced deep learning approaches for structural dynamic response prediction and dam health diagnosis.At first,the improved long short-term memory(LSTM)networks are proposed for data-driven structural dynamic response analysis with the data generated by a single degree of freedom(SDOF)and the finite numerical simulation,due to the unavailability of abundant practical structural response data of concrete gravity dam under blast events.Three kinds of LSTM-based models are discussed with the various cases of noise-contaminated signals,and the results prove that LSTM-based models have the potential for quick structural response estimation under blast loads.Furthermore,the damage indicators(i.e.,peak vibration velocity and domain frequency)are extracted from the predicted velocity histories,and their relationship with the dam damage status from the numerical simulation is established.This study provides a deep-learning based structural health monitoring(SHM)framework for quick assessment of dam experienced underwater explosions through blastinduced monitoring data. 展开更多
关键词 Deep learning structural health monitoring dynamic response Concrete gravity dam
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Dynamic responses of deep underground explosions based on improved Grigorian model 被引量:1
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作者 陈万祥 范新 +1 位作者 郭志昆 王明洋 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期323-331,共9页
It is important to investigate the dynamic behaviors of deep rocks near explosion cavity to reveal the mechanisms of deformations and fractures. Some improvements are carried out for Grigorian model with focuses on th... It is important to investigate the dynamic behaviors of deep rocks near explosion cavity to reveal the mechanisms of deformations and fractures. Some improvements are carried out for Grigorian model with focuses on the dilation effects and the relaxation effects of deep rocks, and the high pressure equations of states with Mie-Grüneisen form are also established. Numerical calculations of free field parameters for deep underground explosions are carried out based on the user subroutines which are compiled by means of the secondary development functions of LS-DYNA9703 D software. The histories of radial stress, radial velocity and radial displacement of rock particles are obtained, and the calculation results are compared with those of U.S. Hardhat nuclear test. It is indicated that the dynamic responses of free field for deep underground explosions are well simulated based on improved Grigorian model, and the calculation results are in good agreement with the data of U.S. Hardhat nuclear test. The peak values of particle velocities are consistent with those of test, but the waveform widths and the rising times are obviously greater than those without dilation effects. The attenuation rates of particle velocities are greater than the calculation results with classic plastic model, and they are consistent with the results of Hardhat nuclear test. The attenuation behaviors and the rising times of stress waves are well shown by introducing dilation effects and relaxation effects into the calculation model. Therefore, the defects of Grigorian model are avoided. It is also indicated that the initial stress has obvious influences on the waveforms of radial stress and the radial displacements of rock particles. 展开更多
关键词 underground explosion deep rock Grigorian model numerical calculation dynamic response
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Dynamic behavior of new cutting subgrade structure of expensive soil under train loads coupling with service environment 被引量:17
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作者 QIU Ming-ming YANG Guo-lin +3 位作者 SHEN Quan YANG Xiao WANG Gang LIN Yu-liang 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第4期875-890,共16页
Expansive soil is sensitive to dry and wet environment change. And the volume deformation and inflation pressure of expansive soil may induce to cause the deformation failure of roadbed or many other adverse effects. ... Expansive soil is sensitive to dry and wet environment change. And the volume deformation and inflation pressure of expansive soil may induce to cause the deformation failure of roadbed or many other adverse effects. Aimed at a high-speed railway engineering practice in the newly built Yun-Gui high-speed railway expansive soil section in China, indoor vibration test on a full-scaled new cutting subgrade model is carried out. Based on the established track-subgrade-foundation of expansive soil system dynamic model test platform, dynamic behavior of new cutting subgrade structure under train loads coupling with extreme service environment(dry, raining, and groundwater level rising) is analyzed comparatively. The results show that the subgrade dynamic response is significantly influenced by service conditions and the dynamic response of subgrade gradually becomes stable with the increasing vibration times under various service environment conditions. The vertical dynamic soil stress is related with the depth in an approximate exponential function, and the curves of vertical dynamic soil stress present a "Z" shape distribution along transverse distance. The peak value of dynamic soil stress appears below the rail, and it increases more obviously near the roadbed surface. However, the peak value of dynamic soil stress is little affected outside 5.0 m of center line. The vibration velocity and acceleration are in a quadratic curve with an increase in depth, and the raining and groundwater level rising increase both the vibration velocity and the acceleration. The vertical deformations at different depths are differently affected by service environment in roadbed. The deformation of roadbed increases sharply when the water gets in the foundation of expansive soil, and more than 60% of the total deformation of roadbed occurs in expansive soil foundation. The laid waterproofing and drainage structure layer, which weakens the dynamic stress and improves the track regularity, presents a positive effect on the control deformation of roadbed surface. An improved empirical formula is then proposed to predict the dynamic stress of ballasted tracks subgrade of expansive soil. 展开更多
关键词 high-speed RAILWAY FULL-SCALE model testing dynamic response expansive SOIL service environment NEW SUBGRADE structure
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External blast flow field evolution and response mechanism of single-layer reticulated dome structure 被引量:5
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作者 Shao-bo Qi Guang-yan Huang +1 位作者 Xu-dong Zhi Feng Fan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第6期241-253,共13页
Single-layer reticulated dome structure are commonly high-profile building in the public and can be attractive targets for terrorist bombings,so the public can benefit from enhanced safety with a stronger understandin... Single-layer reticulated dome structure are commonly high-profile building in the public and can be attractive targets for terrorist bombings,so the public can benefit from enhanced safety with a stronger understanding of the behavior of single-layer reticulated dome structure under explosion.This paper investigates the fluid-structure interaction process and the dynamic response performance of the singlelayer reticulated dome under external blast load.Both experimental and numerical results shown that structural deformation is remarkably delayed compared with the velocity of blast wave,which advises the dynamic response of large-span reticulated dome structure has a negligible effect on the blast wave propagation under explosion.Four failure modes are identified by comparing the plastic development of each ring and the residual spatial geometric of the structure,i.e.,minor vibration,local depression,severe damage,and overall collapse.The plastic deformation energy and the displacement potential energy of the structure are the main consumers of the blast energy.In addition,the stress performance of the vertex member and the deep plastic ratio of the whole structure can serve as qualitative indicators to distinguish different failure modes. 展开更多
关键词 External blast loading Reticulated dome structure Fluid-structure interaction dynamic response mode response mechanism
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Topological study about failure behavior and energy absorption of honeycomb structures under various strain rates 被引量:2
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作者 Yu-chen Wei Meng-jie Tian +4 位作者 Chun-yang Huang Shao-wu Wang Xing Li Qian-ran Hu Meng-qi Yuan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第6期214-227,共14页
High-speed impact threats and terrorist actions on the battlefield require the development of more effective protective materials and structures,and various protective structure is designed according their energy-abso... High-speed impact threats and terrorist actions on the battlefield require the development of more effective protective materials and structures,and various protective structure is designed according their energy-absorbing characteristics.In this research,the deformation behavior,microscopic failure modes and energy absorption characteristics of re-entrant hexagonal structure,regular hexagonal structure and regular quadrilateral structure are studied under different strain rates impact.The re-entrant hexagonal structure forms a“X”-shaped deformation zone,the regular quadrilateral and regular hexagonal structure form an“I”-shaped deformation zone.The microscopic appearance of the section is a mixed fracture form.The effects of the topological shape,cell angle,and cell height on the impact behavior of the structure were evaluated.When the cell height is fixed and the cell angle is changed,the energy absorption of the structure increase and then decrease as the relative density increase.The mechanical properties of the structure are optimal when the relative density is about 18.6%and the cell angle is22.5°.When the cell angle is fixed and the cell height is changed,as the relative density increases,the energy absorption of the structure gradually increases.The regular quadrilateral structure and the reentrant hexagonal structure experienced clear strain rate effects under dynamic impact conditions;the regular hexagonal structure did not exhibit obvious strain rate effects.The results presented herein provide a basis for further rational design and selection of shock-resistant protective structures that perform well in high-speed impact environments. 展开更多
关键词 Honeycomb structures Impact loading Negative Poisson's ratio Titanium alloy dynamic response
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Influence of excavation beneath existing building on dynamic impedances of underpinning pile considering stress history
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作者 LIANG Fa-yun CAO Ping QIN Hong-yu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1870-1879,共10页
The addition of basement beneath existing building changes the underpinning pile from fully embedded to partially embedded,and thus influences the mechanical properties of pile.In the past,scholars paid attention to t... The addition of basement beneath existing building changes the underpinning pile from fully embedded to partially embedded,and thus influences the mechanical properties of pile.In the past,scholars paid attention to the change in the bearing capacity of pile but neglected the difference of dynamic characteristics before and after construction,and potential changes in stress history of remaining soil are also ignored.In this work,a calculation model is built to investigate the influence of excavation on dynamic impedance of underpinning pile considering the effect of stress history.The soil is simulated by the dynamic Winkler foundation,which is characterized by springs and dashpots.Properties of remaining soil after excavation are updated to consider the effect of stress history through modifying the initial shear modulus and related parameters.The dynamic impedance of pile after excavation is obtained based on the transfer matrix method.The parameter study is carried out to evaluate the dynamic impedance with various excavation depths,considering or ignoring stress history effect,and various element lengths.The results show that shallow soil plays an important role to dynamic impedance,and overestimated dynamic impedance is obtained if not considering the stress history effect. 展开更多
关键词 PILE transfer matrix method dynamic response stress history underground space development
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漂浮式光伏混合式系泊系统对极浅水大潮差环境的适用性研究 被引量:1
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作者 蒋习民 魏宇豪 +3 位作者 刘锦昆 王树青 宋宪仓 王霄 《海洋工程》 北大核心 2025年第1期48-61,共14页
漂浮式光伏作业海域水深浅、潮差大的特征显著,极浅水条件下潮位的变化将对漂浮式光伏系泊系统的定位能力产生显著的影响,传统系泊方案无法满足漂浮式光伏极浅水、大潮差长期稳定系泊定位的需求。在传统浅水悬链线系泊系统的基础上,通... 漂浮式光伏作业海域水深浅、潮差大的特征显著,极浅水条件下潮位的变化将对漂浮式光伏系泊系统的定位能力产生显著的影响,传统系泊方案无法满足漂浮式光伏极浅水、大潮差长期稳定系泊定位的需求。在传统浅水悬链线系泊系统的基础上,通过在系缆不同位置处布置系列重物块来改变不同水深条件下系缆的空间构型和水平回复力特性,提出了一种改进混合式系泊系统以满足漂浮式光伏结构不同潮位下的系泊定位需求。以1 MW漂浮式光伏方阵为例,对混合式系泊系统在不同水位和荷载方向下的适用性进行了数值研究。结果表明,不同水位下漂浮式光伏模块运动响应幅值差异不超过14%,高水位下系缆张力响应明显大于低水位下系缆张力响应,其张力响应幅值差异不超过268%,表明文中提出的混合式系泊系统对极浅水、大潮差漂浮式光伏结构具有较好的系泊定位性能。 展开更多
关键词 漂浮式光伏结构 极浅水大潮差 混合式系泊系统 耦合动力分析 系统动力响应
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基于物理驱动支持向量机方法的地震作用下结构动力响应求解 被引量:2
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作者 杜轲 吴文贤 +1 位作者 林志鹏 骆欢 《振动与冲击》 北大核心 2025年第3期284-290,共7页
物理驱动机器学习是一种将物理原理融入机器学习框架的前沿方法。通过引入物理知识,该方法旨在使模型更为贴合实际世界的物理规律和约束,以提高模型在学习过程中对数据本质特征的准确捕捉。该研究使用了一种以支持向量机为基础的物理驱... 物理驱动机器学习是一种将物理原理融入机器学习框架的前沿方法。通过引入物理知识,该方法旨在使模型更为贴合实际世界的物理规律和约束,以提高模型在学习过程中对数据本质特征的准确捕捉。该研究使用了一种以支持向量机为基础的物理驱动方法,用于精确计算结构的动力响应。该算法通过最小化多输出最小二乘支持向量机的目标函数,实现了对回归模型参数的精准拟合。同时,通过在特征空间中引入系统动态平衡方程和初始条件的物理约束,无需事先训练数据即可有效计算结构的动力响应。随后开展在地震动荷载作用下的单自由度体系和二层剪切框架多自由度体系的动力响应,并将所用方法与传统方法的结果进行了对比。分析结果表明,提出的物理驱动机器学习方法在精度和大时间步长性能方面均显著优于传统方法。 展开更多
关键词 机器学习 支持向量机 物理驱动 无标记数据 结构动力响应分析
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基于Green函数的轮胎冲击载荷特性反演方法
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作者 师桂杰 李强 王德禹 《中国舰船研究》 北大核心 2025年第3期165-173,共9页
[目的]旨在通过结构响应间接识别轮胎冲击载荷及其分布特性,为甲板设计与安全评估提供依据,提出一种基于Green函数的载荷反演方法。[方法]以某船甲板加筋板为研究对象,利用Green函数将冲击载荷表示为单位脉冲载荷的叠加,通过有限元仿真... [目的]旨在通过结构响应间接识别轮胎冲击载荷及其分布特性,为甲板设计与安全评估提供依据,提出一种基于Green函数的载荷反演方法。[方法]以某船甲板加筋板为研究对象,利用Green函数将冲击载荷表示为单位脉冲载荷的叠加,通过有限元仿真得到Green核函数矩阵,并结合广义交叉验证准则(GCV)的Tikhonov正则化方法,建立载荷反演模型。针对单个轮胎及多个轮胎冲击工况,分析多源载荷对反演精度的影响。对于凸型、马鞍型和凹型3种典型的轮印载荷分布形式,通过等效划分受力区域并施加单位脉冲载荷,完成载荷分布特性的反演。[结果]结果表明,所提方法能够有效识别轮胎冲击载荷的时间历程及其分布特性,反演相对误差均小于5%。其中,基于应变和位移响应的反演精度较高,误差低于2%;即使在5%噪声干扰下,反演载荷仍然与实际载荷基本一致。[结论]所提方法解决了冲击载荷作用时间短、结构响应范围有限以及多源载荷联合作用带来的反演难题,为实船轮印载荷识别提供了新思路,具有重要的工程应用价值。 展开更多
关键词 甲板设计 结构响应 动力响应 加筋板 承载能力 冲击载荷 轮印载荷分布 GREEN函数 载荷反演
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多次落石冲击下棚洞结构动力响应数值模拟
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作者 刘红岩 吕泽鹏 +4 位作者 刘康琦 周月智 常书瑞 薛雷 张光雄 《爆炸与冲击》 北大核心 2025年第5期157-169,共13页
为探究多次落石冲击下棚洞结构的动力响应特征,建立并验证了基于ANSYS/LS-DYNA有限元软件的落石冲击棚洞FEM-SPH耦合数值模型,并结合LS-DYNA完全重启动技术,研究了落石冲击速度、质量、冲击角度、形状等4个因素对多次落石冲击棚洞结构... 为探究多次落石冲击下棚洞结构的动力响应特征,建立并验证了基于ANSYS/LS-DYNA有限元软件的落石冲击棚洞FEM-SPH耦合数值模型,并结合LS-DYNA完全重启动技术,研究了落石冲击速度、质量、冲击角度、形状等4个因素对多次落石冲击棚洞结构动力响应的影响。结果表明:冲击力、缓冲层顶部冲击位移、棚顶位移、棚洞塑性应变均与落石质量、速度、冲击方向与棚洞平面的夹角呈正相关;长方体落石冲击产生的冲击力、棚顶位移和塑性应变均大于球体落石,球体落石产生的冲击位移大于长方体;对于长方体落石,冲击位移、棚顶位移、塑性应变与接触面积呈负相关;随着落石冲击次数的增加,峰值冲击力通常会先增大而后趋于稳定。 展开更多
关键词 棚洞结构 动力响应 FEM-SPH耦合数值模型 冲击力 多次落石
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不同静摩擦系数下地下浅圆仓中心卸料的动力效应
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作者 金立兵 张京津 +2 位作者 王旭 朱豆豆 刘月芳 《粮油食品科技》 北大核心 2025年第4期187-194,共8页
地下浅圆仓可利用浅层地能实现粮食自然准低温储藏以保证粮食品质,是绿色储粮的适宜仓型。采用数值模拟与理论分析相结合的方法,研究了粮食颗粒间静摩擦系数对地下浅圆仓中心卸料时粮食颗粒与仓体之间相互作用的影响。利用离散单元法构... 地下浅圆仓可利用浅层地能实现粮食自然准低温储藏以保证粮食品质,是绿色储粮的适宜仓型。采用数值模拟与理论分析相结合的方法,研究了粮食颗粒间静摩擦系数对地下浅圆仓中心卸料时粮食颗粒与仓体之间相互作用的影响。利用离散单元法构建了地下浅圆仓的数学分析模型;通过对比数值分析与理论计算结果,验证了数值分析方法的有效性。对不同静摩擦系数时仓体与粮食颗粒的动态响应进行了数值分析,研究了不同静摩擦系数下的仓壁动压力、卸料率、粮食颗粒之间接触应力与速度分布。结果表明:随着静摩擦系数的增加,仓壁侧压力与卸料率逐渐减小;颗粒间横向、竖向接触应力与速度均随着静摩擦系数的增大而增大。这些研究有助于了解地下浅圆仓卸料时的动力性能,并为其结构的优化设计提供参考。 展开更多
关键词 地下浅圆仓 静摩擦系数 动态响应 离散元
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顶面人群动载作用下砖-土城墙动力响应分析
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作者 卢俊龙 李超芳 +2 位作者 田鹏刚 李明东 吴晓琴 《振动与冲击》 北大核心 2025年第6期168-175,222,共9页
西安城墙是典型的外包砖内部夯土结构文化遗产建筑,在墙顶人群荷载作用下产生的应力易引起损伤而危及结构安全。为研究人群荷载作用下墙体结构的动力响应及损伤机制,进行原位动力测试分析了其动力特性及动力响应,并采用块体离散元软件3... 西安城墙是典型的外包砖内部夯土结构文化遗产建筑,在墙顶人群荷载作用下产生的应力易引起损伤而危及结构安全。为研究人群荷载作用下墙体结构的动力响应及损伤机制,进行原位动力测试分析了其动力特性及动力响应,并采用块体离散元软件3DEC建立三维数值模型进行动力计算,得到墙顶人群荷载激励下的动态响应,依据分析结果对城墙结构安全性进行了评估。结果表明:人群动载引起城墙的动力响应随墙体高度的增加呈放大效应,墙体顶部响应最为显著,沿竖直方向的动力响应高于水平方向。随着人群密度的增加,沿高度方向墙体应变变化明显,其中墙体洞口上方及墙垛、女儿墙附近应变较大。因此,在高密度人群荷载作用下城墙洞口顶部及墙顶易发生破坏,应进行必要的监测。 展开更多
关键词 城墙结构 人群荷载 动力响应 结构损伤
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流冰撞击平面钢闸门的影响分析
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作者 刘江川 陈志 高志远 《中国农村水利水电》 北大核心 2025年第4期25-30,共6页
为明晰水介质中流冰对平面钢闸门的撞击影响,以某水库的泄洪闸为例,基于流固耦合理论,建立冰-水-闸门三维耦合有限元模型,对平面钢闸门泄水时受浮冰撞击的能量过程进行分析,得出闸门的能量传递规律和应力分布情况。结果显示,在动能驱动... 为明晰水介质中流冰对平面钢闸门的撞击影响,以某水库的泄洪闸为例,基于流固耦合理论,建立冰-水-闸门三维耦合有限元模型,对平面钢闸门泄水时受浮冰撞击的能量过程进行分析,得出闸门的能量传递规律和应力分布情况。结果显示,在动能驱动下,水与流冰共同作用在闸门上,撞击过程中闸门吸收了大量能量,其所吸收能量最高时占到系统总能量的62.15%,并且距离流冰撞击闸门位置最近的主梁所吸收的能量占到了闸门总能量的58.51%,能量分布集中于撞击区域附近。 展开更多
关键词 水工钢闸门 流固耦合 碰撞 动力响应 能量传递
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水下爆炸船体结构与系统动力学响应不确定性特征分析.
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作者 姚熊亮 赵坤 +1 位作者 战天琦 黄仁杰 《力学学报》 北大核心 2025年第6期1287-1314,共28页
水下爆炸船体结构动力学响应分为早期和后期,早期动力学响应产生结构毁伤,具有强非线性及非平稳特征,系统参数、初始条件等因素的变化将导致早期动力学响应出现分岔、突变等现象,输出展现不确定性特征.文章针对水下爆炸船体结构与系统... 水下爆炸船体结构动力学响应分为早期和后期,早期动力学响应产生结构毁伤,具有强非线性及非平稳特征,系统参数、初始条件等因素的变化将导致早期动力学响应出现分岔、突变等现象,输出展现不确定性特征.文章针对水下爆炸船体结构与系统早期动力学响应特征时空解耦数据分析问题,基于相空间重构技术、抛物线映射方法以及符号动力学理论,提出一种强非线性动力学动态数据分析方法,刻画水下爆炸船体结构早期动力学响应演化特征,实现在系统参数邻域内预报试验结果.首先,以某加筋圆柱壳结构为原型,设计不同冲击因子条件下的缩比模型试验,研究不同冲击载荷作用下水下爆炸船体结构非线性、非平稳动力学响应的时空演化规律,对其不确定性特征进行表征与刻画.其次,以某型舰船为原型设计的舱段结构和浮动冲击平台模型试验,进一步分析水下爆炸船体结构早期动力学响应不确定性特征,证明方法的有效性与普适性.研究结果表明:舰船水下爆炸非线性动力学动态数据分析技术可以对水下爆炸舰船非线性、非平稳动力学响应进行表征与刻画,可实现系统参数邻域内预报试验结果. 展开更多
关键词 水下爆炸 船体结构早期动力学响应 非线性特征 相空间重构 抛物线映射 符号动力学
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基底悬摆隔震结构抗震性能数值分析
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作者 鲁亮 尹铭昊 +2 位作者 夏婉秋 汪磊 张世宇 《湖南大学学报(自然科学版)》 北大核心 2025年第3期129-140,共12页
基底悬摆隔震(base-suspended pendulum isolation,BSPI)结构是一种新型悬挂隔震结构体系.首先介绍BSPI结构的悬挂隔震层构造和力学模型.然后通过振动台模型试验,验证有限元建模方法的正确性.最后建立BSPI结构和常规框架的有限元模型,... 基底悬摆隔震(base-suspended pendulum isolation,BSPI)结构是一种新型悬挂隔震结构体系.首先介绍BSPI结构的悬挂隔震层构造和力学模型.然后通过振动台模型试验,验证有限元建模方法的正确性.最后建立BSPI结构和常规框架的有限元模型,进行动力时程分析,得到不同地震作用下的结构动力响应,对比分析了BSPI结构和常规框架结构的抗震性能.研究结果表明:BSPI结构因设置了悬挂隔震层,整体抗侧刚度降低,罕遇地震作用下加速度响应显著减小,仅为常规框架的1/5~1/2;通过在悬挂隔震层设置黏滞阻尼器,有效地控制了结构整体位移,相比于BSPI无控结构,罕遇地震作用下BSPI有控结构的上部结构层间位移降低了约50%;罕遇地震作用下,BSPI上部结构的层间位移角小于1/100,满足抗震设防目标. 展开更多
关键词 基底悬摆隔震结构 振动台试验 动力响应 数值模拟 抗震性能
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某城市交通上盖厚板转换全框支剪力墙结构的抗震性能分析 被引量:3
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作者 马晓飞 李英民 +4 位作者 潘维浩 姜宝龙 杨宏武 黄永安 雷帅 《工程抗震与加固改造》 北大核心 2025年第1期25-32,38,共9页
某城市交通上盖建筑的结构高度为119.1m,具有刚度突变、构件中断等不规则项,为满足功能需求,采用厚板转换全框支剪力墙结构。通过5个算例模型的振型分解反应谱法计算,分析了转换板厚度对结构抗震性能的影响规律,进而确定了板厚。在PERFO... 某城市交通上盖建筑的结构高度为119.1m,具有刚度突变、构件中断等不规则项,为满足功能需求,采用厚板转换全框支剪力墙结构。通过5个算例模型的振型分解反应谱法计算,分析了转换板厚度对结构抗震性能的影响规律,进而确定了板厚。在PERFORM-3D中采用深梁划分转换板,用深梁非线性行为来模拟板厚的受力状态,对结构进行了罕遇地震下的动力弹塑性时程分析,找到该结构的薄弱部位,检验结构是否满足设计时既定的性能目标,综合评价该类结构的抗震性能。分析结果表明:转换板厚度的增加对结构的抗震性能有一定影响,但增加到一定程度时,影响效率降低;在罕遇地震下,该结构的破坏次序为连梁-剪力墙-柱,符合预期破坏模式,具有较好的抗震性能。 展开更多
关键词 全框支剪力墙结构 厚板转换 抗震性能 振型分解反应谱法 动力时程分析法
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基于可液化场地离心机振动台试验的地下结构地震响应研究 被引量:1
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作者 张梓鸿 闫冠宇 +1 位作者 许成顺 杜贺港 《岩土工程学报》 北大核心 2025年第2期324-336,共13页
为研究场地液化对地下结构地震响应的影响,开展了可液化场地条件下的离心机振动台试验,得到液化场地地下结构地震响应规律,并通过Pushover分析方法确定场地不同液化程度下土体刚度的衰减程度。研究结论如下:在4种加载工况下,模型结构的... 为研究场地液化对地下结构地震响应的影响,开展了可液化场地条件下的离心机振动台试验,得到液化场地地下结构地震响应规律,并通过Pushover分析方法确定场地不同液化程度下土体刚度的衰减程度。研究结论如下:在4种加载工况下,模型结构的侧墙及顶板总应变峰值响应完全处于弹性范围内,中柱应变在大震作用下略超过混凝土的弹性应变限值,损伤程度较低,模型结构表现出良好的抗震性能;四种加载工况下,可液化场地中结构层间位移较结构等高处场地层间位移衰减了63%~76%;由场地水平位移和土-结构体系位移衰减比来看,尽管饱和砂土层液化后会出现较大的水平位移,但场地液化后土-结构刚度比降低仍会避免结构出现较大的层间位移和严重破坏;在实际工程应用Pushover分析方法对液化场地地下结构进行简化分析时,可考虑最不利工况,将土体模量折减为初始模量的3%进行计算。 展开更多
关键词 地下结构 地震响应 可液化场地 离心机振动台试验
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