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Fluid structure interaction for circulation valve of hydraulic shock absorber 被引量:6
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作者 陈齐平 舒红宇 +2 位作者 方文强 何联格 杨茂举 《Journal of Central South University》 SCIE EI CAS 2013年第3期648-654,共7页
Based on the working principle and the damping characteristic of hydraulic shock absorber, a fluid structure interaction method was presented, which was used to analyze the microcosmic and high-frequency processing me... Based on the working principle and the damping characteristic of hydraulic shock absorber, a fluid structure interaction method was presented, which was used to analyze the microcosmic and high-frequency processing mechanism of fluid structure interaction between circulation valve and liquid of hydraulic shock absorber. The fluid mesh distortion was controlled by the CEL language, and the fluid struc^tre interaction mathematical model was established. The finite element model was established by ANSYS CFX software and was analyzed by dynamic mesh technique. The local sensitive computational area was meshed by prismatic grid, which could reduce the negative volume problem during the simulation. The circulation valve and liquid of hydraulic shock absorber were simulated and analyzed under the condition of sinusoidal inlet velocity loads. Flow characteristic and dynamics characteristic were obtained. The pressure distribution and the displacement of circulation value were obtained, and the acceleration curve of circulation valve was simulated and analyzed. The conformity of the final simulation results with the experimental datum indicates that this method is accurate and reliable to analyze the dynamics characteristic between circulation valve and liquid of hydraulic shock absorber, which can provide a theoretical foundation for optimizing hydraulic shock absorber in the future. 展开更多
关键词 hydraulic shock absorber circulation valve finite element method fluid structure interaction simulation analysis
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Fluid-Structure Interaction Modeling of the Living Artery: Based on the Zero-Pressure Status and the Anisotropic Hyperelastic Constitutive Model
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作者 Dongliang Zhao Wenchang Tan 《医用生物力学》 EI CAS CSCD 北大核心 2019年第A01期107-108,共2页
Vascular diseases such as aneurysm,hemadostenosis,aortic dissection are the primary causes of people’s death around world.As a result,it is significant to improve our knowledge about them,which can help to treat the ... Vascular diseases such as aneurysm,hemadostenosis,aortic dissection are the primary causes of people’s death around world.As a result,it is significant to improve our knowledge about them,which can help to treat the disease.Measuring the hemodynamic factor like the blood pressure,the wall shear stress(WSS)and the oscillatory shear index(OSI)is,however,still beyond the capabilities of in-vivo measurement techniques.So the use of mathematical models and numerical simulations for the studies of the blood flow in arteries and,in general,of the cardiovascular system,both in physiological and pathological conditions,has received an increasing attention in the biomedical community during the last two decades.Indeed,such studies aims at enhancing the current knowledge of the physiology of the cardiovascular system,as well as providing reliable tools for the medical doctors to predict the natural course of pathologies and,possibly,the occurrence of cardiovascular accidents.The computational vascular fluid-structure interaction(FSI)methodology is a numerical simulation method which is used to explain the hemodynamic factors.The WSS on the luminal wall and the mechanical stress in the vascular wall are directly related to the location of the lesion,and the blood flow strongly interacts with the vascular wall motion.The arterial wall continually adapts to the charge of its mechanical environment(due to,for example,growth,atrophy,remodelling,repair,ageing,and disease)and consequently undergoes several irreversible processes.Primary acute mechanisms of vascularFSI numerical simulation seem to be associated with(1)the arterial histology and the patient-specific complex geometry,(2)the typical mechanical properties of the layer,(3)properties of the blood is assumed as Newtonian fluid or non-Newtonian fluid based on the scale ofthe diameter of a vessel,(4)residual stress in the zero-pressure configuration.The arterial system naturally function under permanent physiological loading conditions.Fung defined the residual stress and measured the opening angle which varies greatly along the aortic tree.Consequently,most of these systems never experience a stress-free state in their’service life’,so a stress and strain fields are present in any in vivo obtained patientspecific cardiovascular geometry.The residual stress always be ignored in FSI simulation or be assumed to equal zero,and the vivo patient-specific artery geometry is assumed as zero-pressure configuration.To define the in vivo stress state of artery,an inverse problem needs to be solved:the undeformed shape of a body or its stress state in its deformed state needs to be determined given the deformed configuration and the loads causing this deformation.The modular inverse elastostatics method is used to resolve the pressure-induced stress state for in vivo imaging based on cardiovascular modeling proposed by Peirlinck.Here,we build a living vessel FSI model based on 4 key factors.In order to get the universal simulation results,we focus on idealized geometries of the vessel that represent healthy(physiological)conditions of the cerebral vasculature.Blood can be assumed as the Newtonian fluid at this scale.The anisotropic hyperelastic constitutive law(Gasser-Holzapfel-Ogden)is used in zero-pressure configuration.Afterwards,we propose the material parameters for the different constitutive models and the computational configurations.We demonstrate the importance of introducing the residual stress into vascular blood flow modeling by performing a comparing zero-pressure configuration and no-resistance configuration.We get the conclusion that the zero-pressure status model has smaller displacement and larger stress distribution compared with no-resistance stress model.Hence,the methodology presented here will be particularly useful to study the mechanobiological processes in the healthy and diseased vascular wall. 展开更多
关键词 fluid structure interaction zero-pressure configuration ANISOTROPIC HYPERELASTIC CONSTITUTIVE LAW
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Vibration analysis of fluid- structure interaction in water hammer based on transfer matrix method 被引量:1
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作者 GAO Hui TANG Xuelin 《排灌机械工程学报》 EI CSCD 北大核心 2016年第6期518-524,共7页
In consideration of the problem that the effect of conduit structure on water hammer has been ignored in the classical theory,the Poisson coupling between the fluid and the pipeline was studied and a fourteen-equation... In consideration of the problem that the effect of conduit structure on water hammer has been ignored in the classical theory,the Poisson coupling between the fluid and the pipeline was studied and a fourteen-equation mathematical model of fluid-structure interaction(FSI)was developed.Then,the transfer matrix method(TMM)was used to calculate the modal frequency,modal shape and frequency response.The results were compared with that in experiment to verify the correctness of the TMM and the results show that the fluid-structure coupling has a greater impact on the modal frequencies than the modal shape.Finally,the influence on the response spectrum of different damping ratios was studied and the results show that the natural frequency under different damping ratios has changed little but there is a big difference for the pressure spectrum.With the decreasing of damping ratio,the damping of the system on frequency spectrum is more and more significant and the dispersion and dissipation is more and more apparent.Therefore the appropriate damping ratio should be selected to minimize the effects of the vibration of the FSI.The results provide references for the theory research of FSI in the transient process. 展开更多
关键词 water hammer fluid-structure interaction transfer matrix method vibration analysis
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Syntheses,crystal structures,and diametrically opposed mechanically-stimulated luminescence response of two Mg(Ⅱ)metal-organic frameworks
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作者 CHEN Yukun FENG Kexin +2 位作者 ZHANG Bolun SONG Wentao ZHANG Jianjun 《无机化学学报》 北大核心 2025年第6期1227-1234,共8页
The reaction of Mg^(2+)and 5-{1,3-dioxo-1H-benzo[de]isoquinolin-2(3H)-yl}terephthalic acid(H_(2)L)leads to two metal-organic frameworks,[Mg(L)(DMF)_(2)(H_(2)O)_(2)]_(2)·5DMF·2H_(2)O(1)with a 1D structure and... The reaction of Mg^(2+)and 5-{1,3-dioxo-1H-benzo[de]isoquinolin-2(3H)-yl}terephthalic acid(H_(2)L)leads to two metal-organic frameworks,[Mg(L)(DMF)_(2)(H_(2)O)_(2)]_(2)·5DMF·2H_(2)O(1)with a 1D structure and[Mg_(2)(L)_(2)(DMSO)_(3)(H_(2)O)](2)with a 2D(4,4)-net structure.Interestingly,the two compounds exhibit distinct luminescent responses to external mechanical stimuli.1 exhibited exceptional resistance mechanical chromic luminescence(RMCL),which can be attributed to the predominant hydrogen bonds and the presence of high-boiling-point solvent molecules within its structure.2 had a reversible MCL property,which can be attributed to the dominantπ-πweak interactions,coupled with the reversible destruction/restoration of its crystallinity under grinding/fumigation.CCDC:2410963,1;2410964,2. 展开更多
关键词 metal-organic framework crystal structure mechanical chromic luminescence resistance mechanical chromic luminescence weak interaction
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Crystal structure and antibacterial activity of two Gd_(2)complexes based on polydentate Schiff-base ligands
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作者 ZHANG Yingyue KANG Liuqing +2 位作者 YANG Yating GUAN Xiaofen WANG Wenmin 《无机化学学报》 北大核心 2025年第9期1867-1877,共11页
Two Gd_(2)complexes,namely[Gd_(2)(dbm)_(2)(HL_(1))_(2)(CH_(3)OH)_(2)]·4CH_(3)OH(1)and[Gd_(2)(dbm)_(2)(L_(2))_(2)(CH_(3)OH)_(2)]·2CH_(3)OH(2),where H_(3)L_(1)=(Z)-N'-[4-(diethylamino)-2-hydroxybenzylidene... Two Gd_(2)complexes,namely[Gd_(2)(dbm)_(2)(HL_(1))_(2)(CH_(3)OH)_(2)]·4CH_(3)OH(1)and[Gd_(2)(dbm)_(2)(L_(2))_(2)(CH_(3)OH)_(2)]·2CH_(3)OH(2),where H_(3)L_(1)=(Z)-N'-[4-(diethylamino)-2-hydroxybenzylidene]-2-hydroxyacetohydrazide,H_(2)L_(2)=(E)-N'-(5-bromo-2-hydroxy-3-methoxybenzylidene)nicotinohydrazide,Hdbm=dibenzoylmethane,have been constructed by adopting the solvothermal method.Structural characterization unveils that both complexes 1 and 2 are constituted by two Gd^(3+)ions,two dbm-ions,two CH_(3)OH molecules,and two polydentate Schiff-base ligands(HL_(1)^(2-)or L_(2)^(2-)).In addition,complex 1 contains four free methanol molecules,whereas complex 2 harbors two free methanol molecules.By investigating the interactions between complexes 1 and 2 and four types of bacteria(Bacillus subtilis,Escherichia coli,Staphylococcus aureus,Candida albicans),it was found that both complexes 1 and 2 exhibited potent antibacte-rial activities.The interaction mechanisms between the ligands H_(3)L_(1),H_(2)L_(2),complexes 1 and 2,and calf thymus DNA(CT-DNA)were studied using ultraviolet-visible spectroscopy,fluorescence titration,and cyclic voltammetry.The results demonstrated that both complexes 1 and 2 can intercalate into CT-DNA molecules,thereby inhibiting bacterial proliferation to achieve the antibacterial effects.CCDC:2401116,1;2401117,2. 展开更多
关键词 Gd_(2)complex polydentate Schiff base crystal structure DNA interaction antibacterial activity
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Developments of numerical methods for linear and nonlinear fluid-solid interaction dynamics with applications 被引量:9
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作者 Jing Tang XING 《力学进展》 EI CSCD 北大核心 2016年第1期95-139,共45页
关键词 linear and nonlinear fluid-solid interactions MIXED FE-substructuremethod MIXED FE-BE METHOD MIXED FE-FD METHOD MIXED FE-SP METHOD fluidsloshing acoustic volume—structure coupling breaking WAVE simulations pressurewaves in fluids LNG ship VLFS-water interaction WAVE energy harvesting
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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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Comparative analysis of seismic response characteristics of pile-supported structure
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作者 孔德森 李纯洁 +1 位作者 张伟伟 孟庆辉 《Journal of Central South University》 SCIE EI CAS 2010年第6期1370-1375,共6页
In order to analyze the seismic response characteristics of pile-supported structure,a computational model considering pile-soil-structure interaction effect was established by finite element method.Then,numerical imp... In order to analyze the seismic response characteristics of pile-supported structure,a computational model considering pile-soil-structure interaction effect was established by finite element method.Then,numerical implementation was made in time domain.At the same time,a simplified approximation for seismic response analysis of pile-soil-structure system was briefly presented.Furthermore,comparative study was performed for an engineering example.Through comparative analysis,it is shown that the results obtained by the simplified method well agree with those achieved by the finite element method.These results show that spectrum characteristics and intensity of input earthquakes are two important factors that can notablely influence the seismic response characteristics of superstructure.When the input ground motion acceleration amplitude gradually increases from 1 to 4 m/s2,the acceleration of pier top will increase,but it will not be simply proportional to the increase of input acceleration amplitude. 展开更多
关键词 pile-supported structure pile-soil interaction seismic response spectrum characteristics finite element method
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Probabilistic model and analysis of coupled train-ballasted track-subgrade system with uncertain structural parameters 被引量:7
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作者 MAO Jian-feng XIAO Yuan-jie +2 位作者 YU Zhi-wu Erol TUTUMLUER ZHU Zhi-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2238-2256,共19页
Random dynamic responses caused by the uncertainty of structural parameters of the coupled train-ballasted track-subgrade system under train loading can pose safety concerns to the train operation.This paper introduce... Random dynamic responses caused by the uncertainty of structural parameters of the coupled train-ballasted track-subgrade system under train loading can pose safety concerns to the train operation.This paper introduced a computational model for analyzing probabilistic dynamic responses of three-dimensional(3D)coupled train-ballasted track-subgrade system(TBTSS),where the coupling effects of uncertain rail irregularities,stiffness and damping properties of ballast and subgrade layers were simultaneously considered.The number theoretical method(NTM)was employed to design discrete points for the multi-dimensional stochastic parameters.The time-histories of stochastic dynamic vibrations of the TBSS with systematically uncertain structural parameters were calculated accurately and efficiently by employing the probability density evolution method(PDEM).The model-predicted results were consistent with those by the Monte Carlo simulation method.A sensitivity study was performed to assess the relative importance of those uncertain structural parameters,based on which a case study was presented to explore the stochastic probability evolution mechanism of such train-ballasted track-subgrade system. 展开更多
关键词 coupled train-ballast-subgrade system structural parameter uncertainty stochastic dynamic analysis probability density evolution method wheel-rail interaction
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Effects of anions on the structural regulation of Zn‑salen‑modified metal‑organic cage
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作者 GUO Qiaojia CAI Junkai DUAN Chunying 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第11期2203-2211,共9页
By virtue of a 3∶1 complementary coordination strategy,a chiral heteroleptic metal-organic cage that con-tains divergent functional units,Pd‑R(Zn),was precisely constructed via self-assembly of monodentate variationa... By virtue of a 3∶1 complementary coordination strategy,a chiral heteroleptic metal-organic cage that con-tains divergent functional units,Pd‑R(Zn),was precisely constructed via self-assembly of monodentate variational Zn-salen ligands RZn and NADH(reduced nicotinamide adenine dinucleotide)mimic modified tridentate ligands with square-planar Pd ions.UV-Vis and luminescence spectra experiments reveal that different anions could selec-tively interact with different sites of Zn-salen modified metal-organic cages to achieve the structural regulation of cage compound,by using the differentiated host-guest electrostatic interactions of counter ions with metal-organic hosts.Compared to other anions,the presence of chloride ions caused the most significant fluorescence emission enhancement of Pd‑R(Zn),meanwhile,the UV-Vis absorption band attributed to the salen aromatic backbone showed an absorption decrease,and the metal-to-ligand induced peak displayed a blue shift effect.Circular dichro-ism and ^(1)H NMR spectra further demonstrate that the introduction of chloride anions is beneficial to keeping a more rigid scaffold. 展开更多
关键词 metal-organic cage Zn-salen host-guest electrostatic interaction ANIONS structural regulation
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一种土与结构相互作用的无嵌入摩擦单元及其应用 被引量:1
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作者 李同录 王海涛 +5 位作者 袁思凡 李颖喆 孙兴来 沈伟 付昱凯 李萍 《水文地质工程地质》 北大核心 2025年第4期245-254,共10页
为了解决Goodman单元法向嵌入的缺陷,提出了一种无嵌入摩擦单元,将该单元加入到由土和结构共同作用的有限元模型中,实现了编程计算。以岩土体作为实体弹塑性单元,以斜坡或基坑边坡的支护桩作为梁单元,将土和梁接触处的Goodman 4节点8自... 为了解决Goodman单元法向嵌入的缺陷,提出了一种无嵌入摩擦单元,将该单元加入到由土和结构共同作用的有限元模型中,实现了编程计算。以岩土体作为实体弹塑性单元,以斜坡或基坑边坡的支护桩作为梁单元,将土和梁接触处的Goodman 4节点8自由度的无厚度单元概化为4节点6自由度的无嵌入摩擦单元,即将Goodman单元在受压时,两个相邻的法相自由度合二为一,切向自由度仍为两个,该单元相当于切向可以滑动,法向不嵌入也不分离,由此定义了一种无嵌入摩擦单元。通过构造无嵌入摩擦单元刚度矩阵和组配总刚度矩阵建立了相应的有限元算法,编制了计算程序。算例分析表明,当Goodman单元法向刚度足够大时,其计算结果与无嵌入摩擦单元计算结果基本一致,无嵌入摩擦单元计算结果是Goodman单元法向刚度不断增大的极限解。无嵌入摩擦单元在算法上避免了法向刚度取值不确定引起的嵌入问题,为土与结构相互作用提供了一种严谨的解决方案。 展开更多
关键词 Goodman接触单元 无嵌入接触 有限元 土-结构相互作用
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微波条件下小麦淀粉-绿原酸复合物的理化及结构特性 被引量:1
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作者 郭卫芸 张珂珂 +3 位作者 李光辉 王永辉 何胜华 高雪丽 《食品工业科技》 北大核心 2025年第8期60-66,共7页
为探究微波条件下绿原酸对小麦淀粉理化性质和结构特性的影响规律,利用微波处理绿原酸-小麦淀粉复合物,分析其溶解度、膨胀度、冻融稳定性、透明度和凝沉性的变化,并对复合物晶体结构进行表征并观察颗粒形态。结果表明:微波(700 W)条件... 为探究微波条件下绿原酸对小麦淀粉理化性质和结构特性的影响规律,利用微波处理绿原酸-小麦淀粉复合物,分析其溶解度、膨胀度、冻融稳定性、透明度和凝沉性的变化,并对复合物晶体结构进行表征并观察颗粒形态。结果表明:微波(700 W)条件下添加绿原酸可促使复合物溶解度升高3.57倍,膨胀度、凝沉性、冻融稳定性分别升高34.6%、14.02%、37.88%,而透明度降低62.97%;X-射线衍射结果显示淀粉晶型由原来的A型变成B+V型,且随着绿原酸添加量的升高,复合物结晶度明显下降;傅里叶红外光谱图显示添加绿原酸可使复合物在3384 cm-1处的吸收峰增强和变宽,短程有序性增加40%,而微波作用则可导致峰强度降低,并引起指纹区变化。由此可见,微波条件下绿原酸能对小麦淀粉的结构产生影响,进而改善其理化特性。 展开更多
关键词 微波 绿原酸 小麦淀粉 理化性质 结构 相互作用
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细长输流管道大变形动力学研究进展 被引量:5
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作者 陈伟 曹润青 +2 位作者 胡嘉纯 代胡亮 王琳 《力学进展》 北大核心 2025年第1期113-174,共62页
细长输流管道是发动机液压装置、航空加油机、核工业热交换器、海洋钻井平台等工程装备系统的一类重要结构.当流速较高时,细长管道可能会发生屈曲或颤振等流致失稳现象,严重时可酿成重大安全事故.输流管道的流致失稳及其非线性振动是典... 细长输流管道是发动机液压装置、航空加油机、核工业热交换器、海洋钻井平台等工程装备系统的一类重要结构.当流速较高时,细长管道可能会发生屈曲或颤振等流致失稳现象,严重时可酿成重大安全事故.输流管道的流致失稳及其非线性振动是典型的流固耦合力学行为,已成为结构动力学、流固耦合力学等研究领域的一个普遍性范例.在建立动力学方程、明确稳定性机理和分析非线性振动规律之后,近年来人们极其关注输流管道的大变形/大位移动力学问题.本文系统介绍了细长输流管道非线性振动,特别是其弯曲大变形动力学的研究进展.首先,概述了输流管系统的非线性特征及其分类,简要分析了一些常用假设的合理性.其次,重点介绍了泰勒展开近似模型、几何精确理论模型、绝对节点坐标描述计算模型、数据驱动模型及相关的其他建模与求解方法.然后,针对两端支撑管道和悬臂管道两类有本质区别的动力学系统,回顾了其非线性动力学机理与演化规律,重点介绍了悬臂管道从小变形假设到大变形响应的一些新近研究进展.在此基础上,还介绍了提高输流管稳定性、抑制输流管非线性振动和利用输流管大变形响应的主要方法.最后,对细长输流管道大变形动力学的研究现状进行了归纳总结,并指出值得关注的几个基础性科学问题. 展开更多
关键词 输流管道 流固耦合 大变形动力学 几何精确模型 绝对节点坐标法
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过河段顶管施工河床地表沉降影响规律 被引量:1
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作者 盛松涛 安子玥 +1 位作者 周洪云 刘杰 《长江科学院院报》 北大核心 2025年第7期133-141,共9页
过河段顶管工程水文地质条件复杂,流固耦合下岩土体的重度增加、内聚力和内摩擦角降低,顶管施工中会进一步加剧土体的变形,甚至造成突水冒顶事故。以某市雨污分流工程的过河段顶管施工为依托,分析了河床地表沉降机理;运用COMSOL软件建... 过河段顶管工程水文地质条件复杂,流固耦合下岩土体的重度增加、内聚力和内摩擦角降低,顶管施工中会进一步加剧土体的变形,甚至造成突水冒顶事故。以某市雨污分流工程的过河段顶管施工为依托,分析了河床地表沉降机理;运用COMSOL软件建立过河段顶管施工三维数值模型,采用强度折减法对岩土体的c、φ值进行折减;深入研究了过河段顶管施工周边土体的应力、河床地表沉降及管道直径、注浆压力和土体弹性模量等参数对地表沉降的影响规律。研究发现:河床地表沉降数值模拟结果与Peck经验公式吻合度较高;管道周围土体应力呈近“M”型分布,且距离管道越近,土体应力曲线更接近“M”型;管道直径越大,最大沉降越大且沉降槽越宽;注浆压力越大、弹性模量越小,顶管开挖对土体的扰动程度越大,河床地表沉降也越大。 展开更多
关键词 顶管施工 流固耦合 强度折减 地表沉降 数值模拟
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大型外浮顶储罐抗风载结构响应机制研究 被引量:1
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作者 周一卉 蔡语 《安全与环境学报》 北大核心 2025年第3期918-928,共11页
风载是导致大型外浮顶储罐结构失效的典型灾害性因素,为探究大型外浮顶储罐对风载的结构响应机制,以10万m^(3)大型外浮顶储罐为研究对象,建立了储罐罐体-双盘式外浮顶一体化全尺寸结构模型和风场模型。采用CFD方法获得了不同液位下罐体... 风载是导致大型外浮顶储罐结构失效的典型灾害性因素,为探究大型外浮顶储罐对风载的结构响应机制,以10万m^(3)大型外浮顶储罐为研究对象,建立了储罐罐体-双盘式外浮顶一体化全尺寸结构模型和风场模型。采用CFD方法获得了不同液位下罐体周向与外浮顶顶部风压分布。基于流固耦合算法,分别就外浮顶在低、中、高液位下的漂浮工况和外浮顶落底工况下罐-顶一体化结构对风载的响应机制进行了讨论。结果表明:罐体周向风压不受液位影响,在迎风侧可达到最大风压1400 Pa;外浮顶顶部风压压差随液位升高而增大,在100%液位时可达到2410 Pa,导致外浮顶发生侧倾或不平衡升降的事故概率增加;外浮顶顶板在风载作用下沿竖直方向的最大变形差值在100%液位达到最大,为16.44 mm;极端落底工况下的外浮顶对风载的响应非常敏感,相比由储液支撑的外浮顶,其最大变形量提升幅度可达到528.3%,且每圈面板变形量比无风工况增加48%~77%,应高度重视支柱支撑与风载的耦合效应。 展开更多
关键词 安全工程 大型储罐 双盘式外浮顶 风载 结构响应 流固耦合
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基于重叠网格技术柔性旗帜与流体耦合运动数值模拟 被引量:1
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作者 杜小振 郭东兴 +3 位作者 王文秀 韩艺 刘晓彤 王淑珺 《科学技术与工程》 北大核心 2025年第2期473-483,共11页
为研究分析自然界与风能采集领域中柔性旗帜与空气流固耦合运动特性,基于空气动力学原理和二维柔性板轴向不可拉伸假设推导旗帜颤振非线性理论模型,研究了旗帜与空气之间的耦合运动,分析长度、质量比和风速对其运动特性影响。利用双向... 为研究分析自然界与风能采集领域中柔性旗帜与空气流固耦合运动特性,基于空气动力学原理和二维柔性板轴向不可拉伸假设推导旗帜颤振非线性理论模型,研究了旗帜与空气之间的耦合运动,分析长度、质量比和风速对其运动特性影响。利用双向流固耦合方法及重叠网格技术对旗帜随风摆动过程进行数值模拟,得出流场中旗帜运动行为及周围流场特性。结果表明:临界颤振风速随旗长增加而减小,摆动位移随风速增加先增大后减小;质量比越大,颤振频率越小,斯特劳哈尔数受其影响较小;旗帜尺寸一定时,风速较小,摆动位移、频率较小,风速超过临界颤振风速发生大幅度颤振现象;旗帜周围漩涡会经历产生、脱落和消失过程,周围压力及速度会随漩涡运动过程发生变化。可见采用基于重叠网格技术的数值模拟方法可有效解决柔性旗帜大变形问题,实现理论与数值仿真验证分析。 展开更多
关键词 柔性旗帜 流固耦合 重叠网格 流场 数值模拟
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低空无人机技术研究现状与展望 被引量:6
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作者 张军 陈磊 +1 位作者 高智杰 朵英贤 《中国工程科学》 北大核心 2025年第2期73-85,共13页
低空经济是新质生产力的典型代表,发展前景广阔的战略性新兴产业;低空无人机是多样化技术设备的优良载体,高性能、智能化的低空无人机将成为支撑低空经济发展的中坚力量。本文将低空无人机的模态、飞行、自主能力对应其结构材料与飞行... 低空经济是新质生产力的典型代表,发展前景广阔的战略性新兴产业;低空无人机是多样化技术设备的优良载体,高性能、智能化的低空无人机将成为支撑低空经济发展的中坚力量。本文将低空无人机的模态、飞行、自主能力对应其结构材料与飞行控制、定位导航、自主智能技术,并从这3个方面深入分析了低空无人机技术的发展现状和研究趋势,提出了低空无人机仿生构型与复合材料、多源融合定位、混合智能算法等低空无人机技术发展方向。为推动低空无人机技术的创新发展,研究建议,加强政策引导与基础建设、推动技术创新与产业布局、拓展应用场景与实施示范工程、构建全面安全的防护体系,实现我国无人机产业和低空经济的高质量发展。 展开更多
关键词 无人机 低空/超低空 结构材料 飞行控制 定位导航 自主决策 人机交互
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流固耦合下早期粥样硬化斑块生长动力学数值研究
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作者 李扬 张晓敏 +5 位作者 赵志鹏 吴琼 赵立波 程可 刘曙东 唐戈 《力学学报》 北大核心 2025年第7期1747-1755,共9页
粥样硬化斑块的生长会显著改变血管几何形态,引发血流动力学异常,进而导致脑卒中、缺血性眼病、急性肾衰竭等严重并发症.现有研究对涉及炎症反应与脂质代谢的早期斑块动态演化机制仍存在认知局限,亟需建立更精细的生长动力学模型.本文... 粥样硬化斑块的生长会显著改变血管几何形态,引发血流动力学异常,进而导致脑卒中、缺血性眼病、急性肾衰竭等严重并发症.现有研究对涉及炎症反应与脂质代谢的早期斑块动态演化机制仍存在认知局限,亟需建立更精细的生长动力学模型.本文构建了一套融合早期斑块生长动力学的流固耦合多物理场模型,可以同时反映脂蛋白浓度扩散、斑块体积膨胀协同作用下的粥样硬化斑块生长,以及内膜下层变形与血流动力学响应的交互耦合作用.前者硬化斑块的非线性力学特性采用neo-Hookean本构模型来表征,并通过将血管壁总的变形梯度分解为弹性和生长两部分来表征斑块的生长;后者则采用双向迭代耦合算法,通过位移-应力边界传递机制同步求解血流与内膜的动力学耦合行为.数值模拟显示模型预测的早期斑块生长形态与临床经验曲线具有高度一致性.通过定义影响因子A(膨胀/扩散速率比)定量揭示了脂蛋白扩散驱动的膨胀变形对早期斑块尺寸的调控.同时,数值模拟结果证实斑块生长过程会通过几何形变改变血流的剪切应力分布,从而加剧血栓形成的风险,并给出了血小板活化的临界斑块高度. 展开更多
关键词 动脉粥样硬化 生长 流固耦合 扩散机制 血流动力学
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地震作用下浮式桥梁动力响应及参数影响分析
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作者 王丕光 沈一鸣 +2 位作者 曲杨 赵密 杜修力 《振动与冲击》 北大核心 2025年第14期149-161,共13页
针对目前浮式桥梁地震响应特征及关键参数影响规律尚不明确的问题,建立了主梁-墩柱-浮筒-锚索整体有限元数值模型。为解决结构-水体间相互作用问题,采用附加质量法模拟地震运动引起的水动力惯性力,而作用在浮筒和锚索上的其他水动力载... 针对目前浮式桥梁地震响应特征及关键参数影响规律尚不明确的问题,建立了主梁-墩柱-浮筒-锚索整体有限元数值模型。为解决结构-水体间相互作用问题,采用附加质量法模拟地震运动引起的水动力惯性力,而作用在浮筒和锚索上的其他水动力载荷则采用Morison方程进行模拟;分析了不同地震动特性、不同地震动强度及不同地震方向作用下,浮式桥梁系统动力响应特性及关键参数影响规律。结果表明:不同地震特性的地震动引发的浮式桥梁响应存在显著差异,低频且能量较为集中的长周期地震动会引发浮桥产生较大的响应,而高频且能量较为分散的短周期地震动引发的浮桥响应相对较小;单独施加x方向地震时,会引发系统z方向上的动态响应,导致单独z向和x-y-z向结构地震动响应存在明显区别,后者动力响应明显大于前者;考虑附加质量的浮式桥梁加速度和位移响应均大于无附加质量的情况;结构阻尼对浮桥的响应有一定抑制作用;而浮筒和锚索的拖曳力对系统响应的影响相对较小。 展开更多
关键词 浮式桥梁 地震响应 水与结构相互作用 参数分析
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大牛地8^(#)煤与压裂液相互作用机制分析
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作者 胡艾国 王翔 +4 位作者 祁生金 常辉 王子雨 杨阳 鲁红升 《化学研究与应用》 北大核心 2025年第8期2352-2362,共11页
煤层气开采过程中常采用水力压裂技术进行储层改造,压裂液侵入会导致煤岩储层物性改变;但压裂液与煤岩之间相互作用的规律仍不明确,不利于压裂液的选择和现场施工设计。以大牛地8#煤与现场用压裂液为基础,开展压裂液与煤岩相互作用规律... 煤层气开采过程中常采用水力压裂技术进行储层改造,压裂液侵入会导致煤岩储层物性改变;但压裂液与煤岩之间相互作用的规律仍不明确,不利于压裂液的选择和现场施工设计。以大牛地8#煤与现场用压裂液为基础,开展压裂液与煤岩相互作用规律研究。考察压裂液对煤岩表面性质、表面官能团及微观形貌的影响,研究压裂液对煤岩矿物组成变化,孔隙结构及甲烷解吸的影响规律。结果表明,压裂液侵入后会与煤岩发生化学反应,同时通过吸附和溶蚀作用导致煤岩亲水性增加,表面粗糙度增加。弱酸型的清洁压裂液能够溶蚀方解石,黄铁矿及部分黏土矿物,增加煤岩小孔占比。然而,清水、粉剂压裂液与变黏压裂液对白云石、方解石、黄铁矿和黏土矿物反应微弱,与石英、有机质基本不发生反应;浸泡后,煤岩水化严重,导致部分小孔堵塞。采用自制甲烷解吸装置评价了不同类型压裂液对甲烷解吸量的影响;结果表明,变黏压裂液的解吸效果好于清水、粉剂压裂液和清洁压裂液。低粘压裂液在1 MPa、3 MPa、5 MPa下的解吸量分别为1.4 mL/g、1.45 mL/g、1.47 mL/g,而高粘压裂液的解吸量分别为1.35 mL/g、1.42 mL/g、1.45 mL/g。增加甲烷分压,甲烷最大解吸量增加不明显,但解吸速率加快。因此,开发低粘度、低吸附和高携砂的压裂液有利于提高煤层气产量。 展开更多
关键词 煤层气 压裂液 相互作用 孔隙结构 矿物变化 甲烷解吸
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