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轿车排气系统一维数值模型简化及模态实验验证 被引量:6
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作者 李松波 袁明 +1 位作者 管西强 张建武 《机械强度》 CAS CSCD 北大核心 2009年第5期731-735,共5页
对排气组件进行简化,建立排气系统一维梁振动模型,并进行整车NVH(noise,vibration and harshness)性能的数值和实验模态分析。研究结果显示,排气组件简化合理,排气系统一维模型可以较准确地描述排气系统的动力学特性,模型可用于排气系... 对排气组件进行简化,建立排气系统一维梁振动模型,并进行整车NVH(noise,vibration and harshness)性能的数值和实验模态分析。研究结果显示,排气组件简化合理,排气系统一维模型可以较准确地描述排气系统的动力学特性,模型可用于排气系统的优化及疲劳特性预测。 展开更多
关键词 排气系统 模型简化 数值模态 模态实验
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模态分析方法综述 被引量:190
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作者 梁君 赵登峰 《现代制造工程》 CSCD 2006年第8期139-141,共3页
综述模态分析在研究结构动力特性中的应用,介绍模态分析的两大方法:数值模态分析与试验模态分析。并着重介绍目前的研究热点———工作模态分析,对其方法存在的问题进行评述。
关键词 模态分析 数值模态分析 试验模态分析 工作模态分析
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穿孔管阻性消声器横向模态和声学特性计算与分析 被引量:11
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作者 方智 季振林 《振动与冲击》 EI CSCD 北大核心 2014年第7期138-146,共9页
应用二维有限元法计算穿孔管阻性消声器的横向模态,利用数值模态匹配法计算其传递损失,推导了相应的公式并编写了计算程序。对于圆形同轴穿孔管阻性消声器的传递损失,数值模态匹配法计算结果与三维有限元法计算结果以及实验值吻合良好,... 应用二维有限元法计算穿孔管阻性消声器的横向模态,利用数值模态匹配法计算其传递损失,推导了相应的公式并编写了计算程序。对于圆形同轴穿孔管阻性消声器的传递损失,数值模态匹配法计算结果与三维有限元法计算结果以及实验值吻合良好,表明了二维有限元法计算穿孔管阻性消声器横向模态和数值模态匹配法预测消声性能的准确性。进而分析孔径、穿孔率、吸声材料的密度和穿孔管偏移对圆形直通穿孔管阻性消声器横向模态和消声特性的影响。结果表明,孔径减小、穿孔率增大,或者穿孔管偏移量增大均能使消声器有效的平面波区域变宽,高频消声效果变好,但中频消声效果变差;增加吸声材料的填充密度则能提高消声器中高频的消声量。 展开更多
关键词 穿孔管阻性消声器 横向模态 消声特性 数值模态匹配法 有限元法
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模态分析在隧道二衬脱空声振检测中的应用 被引量:5
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作者 窦顺 贺磊 +1 位作者 郑静 王念秦 《铁道工程学报》 EI 北大核心 2018年第3期52-56,78,共6页
研究目的:声振法在隧道二衬脱空检测中具有低成本、易实施的特点,但由于仪器设备及技术手段限制,目前尚无成熟可靠的脱空识别判定依据。针对单次振动激励下的响应块体,本文通过进行数值模态分析,以得到模态参数与二衬结构形态参数的对... 研究目的:声振法在隧道二衬脱空检测中具有低成本、易实施的特点,但由于仪器设备及技术手段限制,目前尚无成熟可靠的脱空识别判定依据。针对单次振动激励下的响应块体,本文通过进行数值模态分析,以得到模态参数与二衬结构形态参数的对应关系,从而提出定量的脱空判定标准。研究结论:(1)完全脱空响应块体基频值随平均脱空深度增大呈三次多项式规律增大,浅部脱空块体的基频值低于深部脱空块体,平缓脱空面较倾斜脱空面块体基频值更大,脱空面为水平时基频达到最大值;前两阶固有频率差值变化规律同基频-平均脱空深度曲线类似;(2)局部脱空响应块体基频值随脱空长度增大呈Logistic函数规律减小,脱空长度相同时,基频值随起始脱空深度增大而增大;前两阶固有频率差值随脱空长度增大而增大,结果曲线在脱空长度为30 cm处存在节点,前后差异明显;(3)由判定曲线图可确定二衬结构的精确形态参数,实现定量脱空判定,并提出了快速求得脱空特征参数的作图法;(4)该研究成果可为声振法在隧道二衬脱空检测中的工程运用提供理论依据。 展开更多
关键词 隧道二衬脱空 声振检测法 数值模态分析
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考虑弯曲和轴向振动模态的一维梁压电阻抗模型及试验研究 被引量:2
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作者 孟丽娟 李继承 +2 位作者 罗忠兵 林莉 李喜孟 《应用声学》 CSCD 北大核心 2012年第5期339-344,共6页
同时考虑一维梁结构的弯曲和轴向振动,对其压电阻抗模型进行建模分析和试验验证。在0.02~42 kHz频段内区分并标记了一维钢梁弯曲振动模态前18阶及轴向振动模态前3阶。结果表明:在0.02~7.5kHz频段内,数值计算和试验结果中谐振峰对应频... 同时考虑一维梁结构的弯曲和轴向振动,对其压电阻抗模型进行建模分析和试验验证。在0.02~42 kHz频段内区分并标记了一维钢梁弯曲振动模态前18阶及轴向振动模态前3阶。结果表明:在0.02~7.5kHz频段内,数值计算和试验结果中谐振峰对应频率的相对误差较大:11.7%~16.5%,其原因可能是低频时振动能量较低且波的传播受结构阻尼、边界条件及环境噪音等因素影响较为明显;在7.5~42kHz范围内,两者谐振峰位置符合良好,相对误差较小:0.11%~2.31%,表明该模型在高频段具有较好的适用性;轴向振动模态对应频率大于弯曲振动模态。本研究为结构健康监测过程中检测频段的选取及损伤信息的提取提供参考。 展开更多
关键词 压电阻抗 解析模型 数值计算 模态
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Numerical Analysis of Steady Smoldering of Biomass Rods 被引量:1
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作者 Zhao Wentao Yu Guangxin +3 位作者 Zhang Yi Wang Youtang Zhou Dan He Fang 《燃烧科学与技术》 CAS CSCD 北大核心 2024年第5期507-519,共13页
Understanding the steady mechanism of biomass smoldering plays a great role in the utilization of smoldering technology.In this study numerical analysis of steady smoldering of biomass rods was performed.A two-dimensi... Understanding the steady mechanism of biomass smoldering plays a great role in the utilization of smoldering technology.In this study numerical analysis of steady smoldering of biomass rods was performed.A two-dimensional(2D)steady model taking into account both char oxidation and pyrolysis was developed on the basis of a calculated propagation velocity according to empirical correlation.The model was validated against the smoldering experiment of biomass rods under natural conditions,and the maximum error was smaller than 31%.Parameter sensitivity analysis found that propagation velocity decreases significantly while oxidation area and pyrolysis zone increase significantly with the increasing diameter of rod fuel. 展开更多
关键词 steady smoldering biomass rod numerical analysis 2D steady model sensitivity analysis
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双腔结构消声器声学性能计算子域耦合方法 被引量:1
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作者 方智 季振林 刘成洋 《振动与冲击》 EI CSCD 北大核心 2016年第6期29-34,共6页
提出基于子域划分的耦合方法求解双腔结构消声器声学性能。据结构特点或材料属性将消声器分为不同子域,用数值模态匹配法或三维解析方法求解规则等截面子域结构传递矩阵,用三维数值方法求解非规则渐变截面子域结构传递矩阵,用子域连续... 提出基于子域划分的耦合方法求解双腔结构消声器声学性能。据结构特点或材料属性将消声器分为不同子域,用数值模态匹配法或三维解析方法求解规则等截面子域结构传递矩阵,用三维数值方法求解非规则渐变截面子域结构传递矩阵,用子域连续条件求得消声器整体矩阵,进而获得消声器传递损失。分别用基于子域划分的耦合方法、三维有限元方法及数值模态匹配法计算典型双腔结构消声器的传递损失。结果表明,基于子域划分的耦合方法适用预测双腔结构消声器声学特性,与数值模态匹配法相比计算效率较高。 展开更多
关键词 消声器 消声特性 耦合方法 数值模态匹配法
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Numerical simulation of intelligent compaction for subgrade construction 被引量:9
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作者 MA Yuan LUAN Ying-cheng +1 位作者 ZHANG Wei-guang ZHANG Yu-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期2173-2184,共12页
During the compaction of a road subgrade, the mechanical parameters of the soil mass change in real time, but current research assumes that these parameters remain unchanged. In order to address this discrepancy, this... During the compaction of a road subgrade, the mechanical parameters of the soil mass change in real time, but current research assumes that these parameters remain unchanged. In order to address this discrepancy, this paper establishes a relationship between the degree of compaction K and strain ε. The relationship between the compaction degree K and the shear strength of soil(cohesion c and frictional angle φ) was clearly established through indoor experiments. The subroutine UMAT in ABAQUS finite element numerical software was developed to realize an accurate calculation of the subgrade soil compaction quality. This value was compared and analyzed against the assumed compaction value of the model, thereby verifying the accuracy of the intelligent compaction calculation results for subgrade soil. On this basis, orthogonal tests of the influential factors(frequency, amplitude, and quality) for the degree of compaction and sensitivity analysis were carried out. Finally, the ‘acceleration intelligent compaction value’, which is based on the acceleration signal, is proposed for a compaction meter value that indicates poor accuracy. The research results can provide guidance and basis for further research into the accurate control of compaction quality for roadbeds and pavements. 展开更多
关键词 intelligent compaction numerical simulation dynamic change control indicators orthogonal experiment
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Numerical simulation of dynamic fracture properties of rocks under different static stress conditions 被引量:7
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作者 LIANG Zheng-zhao QIAN Xi-kun +1 位作者 ZHANG Ya-fang LIAO Zhi-yi 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期624-644,共21页
When underground cavities are subjected to explosive stress waves,a uniquely damaged zone may appear due to the combined effect of dynamic loading and static pre-load stress.In this study,a rate-dependent two-dimensio... When underground cavities are subjected to explosive stress waves,a uniquely damaged zone may appear due to the combined effect of dynamic loading and static pre-load stress.In this study,a rate-dependent two-dimensional rock dynamic constitutive model was established to investigate the dynamic fractures of rocks under different static stress conditions.The effects of the loading rate and peak amplitude of the blasting wave under different confining pressures and the vertical compressive coefficient(K_(0))were considered.The numerical simulated results reproduced the initiation and further propagation of primary radial crack fractures,which were in agreement with the experimental results.The dynamic loading rate,peak amplitude,static vertical compressive coefficient(K_(0))and confining pressure affected the evolution of fractures around the borehole.The heterogeneity parameter(m)plays an important role in the evolution of fractures around the borehole.The crack propagation path became more discontinuous and rougher in a smallerheterogeneity parameter case. 展开更多
关键词 rock mechanics coupled static and dynamic loading numerical simulation rate-dependent damage constitutive model
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Stress initialization methods for dynamic numerical simulation of rock mass with high in-situ stress 被引量:31
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作者 YANG Jia-cai LIU Ke-wei +1 位作者 LI Xu-dong LIU Zhi-xiang 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期3149-3162,共14页
In the context of deep rock engineering,the in-situ stress state is of major importance as it plays an important role in rock dynamic response behavior.Thus,stress initialization becomes crucial and is the first step ... In the context of deep rock engineering,the in-situ stress state is of major importance as it plays an important role in rock dynamic response behavior.Thus,stress initialization becomes crucial and is the first step for the dynamic response simulation of rock mass in a high in-situ stress field.In this paper,stress initialization methods,including their principles and operating procedures for reproducing steady in-situ stress state in LS-DYNA,are first introduced.Then the most popular four methods,i.e.,explicit dynamic relaxation(DR)method,implicit-explicit sequence method,Dynain file method and quasi-static method,are exemplified through a case analysis by using the RHT and plastic hardening rock material models to simulate rock blasting under in-situ stress condition.Based on the simulations,it is concluded that the stress initialization results obtained by implicit-explicit sequence method and dynain file method are closely related to the rock material model,and the explicit DR method has an obvious advantage in solution time when compared to other methods.Besides that,it is recommended to adopt two separate analyses for the whole numerical simulation of rock mass under the combined action of in-situ stress and dynamic disturbance. 展开更多
关键词 in-situ stress stress initialization method dynamic disturbance numerical simulation rock mass
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Mechanism of wet shotcrete interacting with rock in support systems 被引量:18
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作者 李莉 吴爱祥 +3 位作者 王贻明 韩斌 王洪江 王春来 《Journal of Central South University》 SCIE EI CAS 2013年第3期821-829,共9页
In order to have a good understanding of the behavior of wet shotcrete as a support element interacting with the rock mass,mechanism of wet shotcrete interacting with rock in support systems was analyzed through theor... In order to have a good understanding of the behavior of wet shotcrete as a support element interacting with the rock mass,mechanism of wet shotcrete interacting with rock in support systems was analyzed through theoretical,numerical study and analytical analysis.A new model of distribution of rock stress state after wet shotcrete was applied,which includes shotcrete layer,composite layer,strengthening layer,plastic layer and elastic layer,and a full illustration of the rock mass stress state was given after shotcrete interacting with rock mass.At the same time,numerical analysis with FLAC gives a stress distribution along the monitor line,respectively,at the sidewall and roof of the tunnel.The displacement obviously decreases with the depth of rock,the tangential stress for tunnel supported by shotcrete is lower than that without shotcrete,and radial stress for tunnel supported by shotcrete is higher than that without shotcrete.It has been demonstrated by AIRY'S stress function,which gives a reasonable solution.Finally,the application of wet shotcrete in Jinfeng Gold Mine shows that the displacement of tunnel decreases obviously in sidewall and roof. 展开更多
关键词 wet shotcrete support systems MECHANISM SIMULATION distribution of stress
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Statistical analysis of pressure fluctuations during unsteady flow for low-specific-speed centrifugal pumps 被引量:3
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作者 裴吉 王文杰 袁寿其 《Journal of Central South University》 SCIE EI CAS 2014年第3期1017-1024,共8页
A three-dimensional transient numerical simulation was conducted to study the pressure fluctuations in low-specific-speed centrifugal pumps. The characteristics of the inner flow were investigated using the SST k-ω t... A three-dimensional transient numerical simulation was conducted to study the pressure fluctuations in low-specific-speed centrifugal pumps. The characteristics of the inner flow were investigated using the SST k-ω turbulence model. The distributions of pressure fluctuations in the impeller and the volute were recorded, and the pressure fluctuation intensity was analyzed comprehensively, at the design condition, using statistical methods. The results show that the pressure fluctuation intensity increases along the impeller streamline from the leading edge to the trailing edge. In the impeller passage, the intensity near the shroud is much higher than that near the hub at thc inlet. However, the intensity at the middle passage is almost equal to the intensity at the outlet. The pressure fluctuation intensity is the highest at the trailing edge on the pressure side and near the tongue because of the rotor-stator interaction. The distribution of pressure fluctuation intensity is symmetrical in the axial cross sections of the volute channel. However, this intensity decreases with increasing radial distance. Hence, the pressure fluctuation intensity can be reduced by modifying the geometry of the leading edge in the impeller and the tongue in the volute. 展开更多
关键词 TRANSIENT pressure fluctuation intensity STATISTICS low specific speed centrifugal pump
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Finite element modeling of convective pore-fluid flow in fluid-saturated porous rocks within upper crust:An overview 被引量:3
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作者 ZHAO Chong-bin Bruce HOBBS Alison ORD 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第3期501-514,共14页
Convective pore-fluid flow (CPFF) plays a critical role in generating mineral deposits and oil reservoirs within the deep Earth. Therefore, theoretical understanding and numerical modeling of the thermodynamic process... Convective pore-fluid flow (CPFF) plays a critical role in generating mineral deposits and oil reservoirs within the deep Earth. Therefore, theoretical understanding and numerical modeling of the thermodynamic process that triggers and controls the CPFF are extremely important for the exploration of new mineral deposits and underground oil resources. From the viewpoint of science, the CPFF within the upper crust can be treated as a kind of thermodynamic instability problem of pore-fluid in fluid-saturated porous media. The key issue of dealing with this kind of problem is to assess whether a nonlinear thermodynamic system under consideration is supercritical. To overcome limitations of using theoretical analysis and experimental methods in dealing with the CPFF problems within the upper crust, finite element modeling has been broadly employed for solving this kind of problem over the past two decades. The main purpose of this paper is to overview recent developments and applications of finite element modeling associated with solving the CPFF problems in large length-scale geological systems of complicated geometries and complex material distributions. In particular, two kinds of commonly-used finite element modeling approaches, namely the steady-state and transient-state approaches, and their advantages/disadvantages are thoroughly presented and discussed. 展开更多
关键词 convective flow steady-state approach transient-state approach numerical modeling upper crust porous rock
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Crack branching mechanism of rock-like quasi-brittle materials under dynamic stress 被引量:12
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作者 唐春安 杨岳峰 《Journal of Central South University》 SCIE EI CAS 2012年第11期3273-3284,共12页
The cracking patterns of a thin sheet with a pre-existing crack subjected to dynamic loading are numerically simulated to investigate the mechanism of crack branching by using the FEM method.Six numerical models were ... The cracking patterns of a thin sheet with a pre-existing crack subjected to dynamic loading are numerically simulated to investigate the mechanism of crack branching by using the FEM method.Six numerical models were set up to study the effects of load,tensile strength and heterogeneity on crack branching.The crack propagation is affected by the applied loads,tensile strength and heterogeneity.Before crack branching,the crack propagates by some distance along the direction of the pre-existing crack.For the materials with low heterogeneity,the higher the applied stress level is and the lower the tensile strength of the material is,the shorter the propagation distance is.Moreover,the branching angle becomes larger and the number of branching cracks increases.In the case of the materials with high heterogeneity,a lot of disordered voids and microcracks randomly occur along the main crack,so the former law is not obvious.The numerical results not only are in good agreement with the experimental observations in laboratory,but also can be extended to heterogeneity media.The work can provide a good approach to model the cracking and fracturing of heterogeneous quasi-brittle materials,such as rock,under dynamic loading. 展开更多
关键词 crack propagation branching HETEROGENEITY Weibull distribution MICROCRACK ROCK
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