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An efficient and accurate numerical method for simulating close-range blast loads of cylindrical charges based on neural network
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作者 Ting Liu Changhai Chen +2 位作者 Han Li Yaowen Yu Yuansheng Cheng 《Defence Technology(防务技术)》 2025年第2期257-271,共15页
To address the problems of low accuracy by the CONWEP model and poor efficiency by the Coupled Eulerian-Lagrangian(CEL)method in predicting close-range air blast loads of cylindrical charges,a neural network-based sim... To address the problems of low accuracy by the CONWEP model and poor efficiency by the Coupled Eulerian-Lagrangian(CEL)method in predicting close-range air blast loads of cylindrical charges,a neural network-based simulation(NNS)method with higher accuracy and better efficiency was proposed.The NNS method consisted of three main steps.First,the parameters of blast loads,including the peak pressures and impulses of cylindrical charges with different aspect ratios(L/D)at different stand-off distances and incident angles were obtained by two-dimensional numerical simulations.Subsequently,incident shape factors of cylindrical charges with arbitrary aspect ratios were predicted by a neural network.Finally,reflected shape factors were derived and implemented into the subroutine of the ABAQUS code to modify the CONWEP model,including modifications of impulse and overpressure.The reliability of the proposed NNS method was verified by related experimental results.Remarkable accuracy improvement was acquired by the proposed NNS method compared with the unmodified CONWEP model.Moreover,huge efficiency superiority was obtained by the proposed NNS method compared with the CEL method.The proposed NNS method showed good accuracy when the scaled distance was greater than 0.2 m/kg^(1/3).It should be noted that there is no need to generate a new dataset again since the blast loads satisfy the similarity law,and the proposed NNS method can be directly used to simulate the blast loads generated by different cylindrical charges.The proposed NNS method with high efficiency and accuracy can be used as an effective method to analyze the dynamic response of structures under blast loads,and it has significant application prospects in designing protective structures. 展开更多
关键词 Close-range air blast load Cylindrical charge Numerical method Neural network CEL method CONWEP model
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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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Limit analysis of vertical anti-pulling screw pile group under inclined loading on 3D elastic-plastic finite element strength reduction method 被引量:12
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作者 董天文 郑颖人 《Journal of Central South University》 SCIE EI CAS 2014年第3期1165-1175,共11页
Based on the functional theory, catastrophe theory, simultaneity principle and the idea of strength reduction method (SRM), the bearing capacity functional anti SRM of pile group foundation were established, and the... Based on the functional theory, catastrophe theory, simultaneity principle and the idea of strength reduction method (SRM), the bearing capacity functional anti SRM of pile group foundation were established, and the criteria of ultimate load and the concept of safety storage coefficient (Css) were advanced. The inclined ultimate loads by the static loading test, load increment method (LIM) and SRM are compared. Theoretically, the ultimate load of piles does not change with the loading levels when it is calculated by SRM. When the one strength reduction parameter is applied in the calculation boundary, there are calculating errors because the bearing capacity action of soils happened in the finite zone. The inclined 10adings are 108, 132 and 144 kN, and SSC are 1.07, 0.94 and 0.79, respectively, so the calculation values of ultimate loads are about 115.56, 124.08 and 113.76 kN, respectively. The error between calculations and observation values is less than 6%. But .the error between calculations of LIM and observations is 20%. Because of the effect of inclined loading, the push-rotation phenomenon of screw pile group appears. Under this testing, the ultimate bearing capacity of piles is mostly determined by the horizontal ultimate bearing capacity, and the effect of the vertical component of inclined load should also be considered. 展开更多
关键词 strength reduction method screw pile group ultimate load inclined loading
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Effects of loading waveforms on rock damage using particle simulation method 被引量:5
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作者 XIA Ming GONG Feng-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1755-1765,共11页
The particle simulation method is used to study the effects of loading waveforms (i.e. square, sinusoidal and triangle waveforms) on rock damage at mesoscopic scale. Then some influencing factors on rock damage at t... The particle simulation method is used to study the effects of loading waveforms (i.e. square, sinusoidal and triangle waveforms) on rock damage at mesoscopic scale. Then some influencing factors on rock damage at the mesoscopic scale, such as loading frequency, stress amplitude, mean stress, confining pressure and loading sequence, are also investigated with sinusoidal waveform in detail. The related numerical results have demonstrated that: 1) the loading waveform has a certain effect on rock failure processes. The square waveform has the most damage within these waveforms, while the triangle waveform has less damage than sinusoidal waveform. In each cycle, the number of microscopic cracks increases in the loading stage, while it keeps nearly constant in the unloading stage. 2) The loading frequency, stress amplitude, mean stress, confining pressure and loading sequence have considerable effects on rock damage subjected to cyclic loading. The higher the loading frequency, stress amplitude and mean stress, the greater the damage the rock accumulated; in contrast, the lower the confining pressure, the greater the damage the rock has accumulated. 3) There is a threshold value of mean stress and stress amplitude, below which no further damage accumulated after the first few cycle loadings. 4) The high-to-low loading sequence has more damage than the low-to-high loading sequence, suggesting that the rock damage is loading-path dependent. 展开更多
关键词 rock damage failure process crack initiation and propagation loading waveform cycle loading particle simulation method
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Analytical method of load-transfer of single pile under expansive soil swelling 被引量:11
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作者 范臻辉 王永和 +1 位作者 肖宏彬 张春顺 《Journal of Central South University of Technology》 EI 2007年第4期575-579,共5页
The elastic differential equations of load-transfer of single pile either with applied loads on pile-top or only under the soil swelling were established,respectively,based on the theory of pile-soil interaction and t... The elastic differential equations of load-transfer of single pile either with applied loads on pile-top or only under the soil swelling were established,respectively,based on the theory of pile-soil interaction and the shear-deformation method.The derivation of analytic solution to load-transfer for single pile in expansive soil could hereby be obtained by means of superposition principle under expansive soils swelling.The comparison of two engineering examples was made to prove the credibility of the suggested method.The analyzed results show that this analytic solution can achieve high precision with few parameters required,indicating its' simplicity and practicability in engineering application.The employed method can contribute to determining the greatest tension along pile shaft resulting from expansive soils swelling and provide reliable bases for engineering design.The method can be employed to obtain various distributive curves of axial force,settlements and skin friction along the pile shaft with the changes of active depth,vertical movements of the surface and loads of pile-top. 展开更多
关键词 expansive soil PILE shear-deformation method load transfer
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Effect of loading rate on fracture characteristics of rock 被引量:6
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作者 周小平 钱七虎 杨海清 《Journal of Central South University》 SCIE EI CAS 2010年第1期150-155,共6页
The three-point bending experiments were applied to investigating effects of loading rates on fracture toughness of Huanglong limestone. The fracture toughness of Huanglong limestone was measured over a wide range of ... The three-point bending experiments were applied to investigating effects of loading rates on fracture toughness of Huanglong limestone. The fracture toughness of Huanglong limestone was measured over a wide range of loading rates from 9 × 10-4 to 1.537 MPa.m1/2/s. According to the approximate relationship between static and dynamic fracture toughness of Huanglong limestone, relationship between the growth velocity of crack and dynamic fracture toughness was obtained. The main conclusions are summarized as follows. (1) When the loading rate is higher than 0.027 MPa-ml/2/s, the fracture toughness of Huanglong limestone increases markedly with increasing loading rate. However, when loading rate is lower than 0.027 MPa-ml/2/s, fracture toughness slightly increases with an increase in loading rate. (2) It is found from experimental results that fracture toughness is linearly proportional to the logarithmic expression of loading rate. (3) For Huanglong limestone, when the growth velocity of crack is lower than 100 m/s, the energy release rate slightly decreases with increasing the growth velocity of crack. However, when the growth velocity of crack is higher than 1 000 m/s, the energy release rate dramatically decreases with an increase in the crack growth velocity. 展开更多
关键词 fracture toughness of rock three-point bending round bar loading rate velocity of crack growth
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Upper bound analytical solution for surrounding rock pressure of shallow unsymmetrical loading tunnels 被引量:7
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作者 雷明锋 彭立敏 +2 位作者 施成华 谢友均 谭立新 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2339-2347,共9页
By combining the results of laboratory model tests with relevant flow rules, the failure mode of shallow unsymmetrical loading tunnels and the corresponding velocity field were established. According to the principle ... By combining the results of laboratory model tests with relevant flow rules, the failure mode of shallow unsymmetrical loading tunnels and the corresponding velocity field were established. According to the principle of virtual power, the upper bound solution for surrounding rock pressure of shallow unsymmetrical loading tunnel was derived and verified by an example. The results indicate that the calculated results of the derived upper bound method for surrounding rock pressure of shallow unsymmetrical loading tunnels are relatively close to those of the existing "code method" and test results, which means that the proposed method is feasible. The current code method underestimates the unsymmetrical loading feature of surrounding rock pressure of shallow unsymmetrical loading tunnels, so it is unsafe; when the burial depth is less or greater than two times of the tunnel span and the unsymmetrical loading angle is less than 45°, the upper bound method or the average value of the results calculated by the upper bound method and code method respectively, is comparatively reasonable. When the burial depth is greater than two times of the tunnel span and the unsymmetrical loading angle is greater than 45°, the code method is more suitable. 展开更多
关键词 TUNNEL shallow buried tunnel unsymmetrical loading ultimate analysis method upper bound solution
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Fragment spatial distribution of prismatic casing under internal explosive loading 被引量:5
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作者 Tianbao Ma Xinwei Shi +1 位作者 Jian Li Jianguo Ning 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第4期910-921,共12页
Non-cylindrical casings filled with explosives have undergone rapid development in warhead design and explosion control.The fragment spatial distribution of prismatic casings is more complex than that of traditional c... Non-cylindrical casings filled with explosives have undergone rapid development in warhead design and explosion control.The fragment spatial distribution of prismatic casings is more complex than that of traditional cylindrical casings.In this study,numerical and experimental investigations into the fragment spatial distribution of a prismatic casing were conducted.A new numerical method,which adds the Lagrangian marker points to the Eulerian grid,was proposed to track the multi-material interfaces and material dynamic fractures.Physical quantity mappings between the Lagrangian marker points and Eulerian grid were achieved by their topological relationship.Thereafter,the fragment spatial distributions of the prismatic casing with different fragment sizes,fragment shapes,and casing geometries were obtained using the numerical method.Moreover,fragment spatial distribution experiments were conducted on the prismatic casing with different fragment sizes and shapes,and the experimental data were compared with the numerical results.The effects of the fragment and casing geometry on the fragment spatial distributions were determined by analyzing the numerical results and experimental data.Finally,a formula including the casing geometry parameters was fitted to predict the fragment spatial distribution of the prismatic casing under internal explosive loading. 展开更多
关键词 Fragment spatial distribution Prismatic casing Internal explosive loading Numerical fitting formula Marker-point weighted method
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A new numerical method for determining collapse load-carrying capacity of structure made of elasto-plastic material 被引量:2
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作者 钟志鹏 任大龙 万水 《Journal of Central South University》 SCIE EI CAS 2014年第1期398-404,共7页
Determination of collapse load-carrying capacity of elasto-plastic material is very important in designing structure. The problem is commonly solved by elasto-plastic finite element method (FEM). In order to deal wi... Determination of collapse load-carrying capacity of elasto-plastic material is very important in designing structure. The problem is commonly solved by elasto-plastic finite element method (FEM). In order to deal with material nonlinear problem involving strain softening problem effectively, a new numerical method-damped Newton method was proposed. The iterative schemes are discussed in detail for pure equilibrium models. In the equilibrium model, the plasticity criterion and the compatibility of the strains are verified, and the strain increment and plastic factor are treated as independent unknowns. To avoid the stiffness matrix being singularity or condition of matrix being ill, a damping factor a was introduced to adjust the value of plastic consistent parameter automatically during the iterations. According to the algorithm, the nonlinear finite element program was complied and its numerical example was calculated. The numerical results indicate that this method converges very fast for both small load steps and large load steps. Compared with those results obtained by analysis and experiment, the predicted ultimate bearing capacity from the proposed method is identical. 展开更多
关键词 damped Newton method collapse load elasto-plastic material non-linear finite element method incremental-iterativeanalysis
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Elastic solutions for partially embedded single piles subjected to simultaneous axial and lateral loading 被引量:4
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作者 张磊 龚晓南 俞建霖 《Journal of Central South University》 SCIE EI CAS 2014年第11期4330-4337,共8页
In order to improve the design level of partially embedded single piles under simultaneous axial and lateral loads, the differential solutions were deduced, in which the soil was treated as an ideal, elastic, homogene... In order to improve the design level of partially embedded single piles under simultaneous axial and lateral loads, the differential solutions were deduced, in which the soil was treated as an ideal, elastic, homogeneous, semi-infinite isotropic medium. A comparison was made between model test results and the obtained solutions to show their validity. The calculation results indicate that the horizontal displacement and bending moment of the pile increase with increases of the axial and lateral loads. The maximum horizontal displacement and bending moment decrease by 37.9% and 13.9%, respectively, when the elastic modulus of soil increases from 4 MPa to 20 MPa. The Poisson ratio of soil plays a marginal role in pile responses. There is a critical pile length under the ground, beyond which the pile behaves as though it was infinitely long. The presented solutions can make allowance for the continuous nature of soil, and if condition permits, they can approach exact ones. 展开更多
关键词 pile-soil interaction simultaneous axial and lateral loads difference method elastic modulus displacement
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Operator health risk evaluation of off-highway dump truck under shovel loading condition 被引量:2
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作者 申焱华 许敏 +2 位作者 金纯 高玉 魏福林 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2655-2664,共10页
To evaluate the operator health risk exposed to whole-body vibration(WBV) while the electric-shovel loads the ore on the truck body, the semi-truck mathematical model and 3-D virtual prototype were built to simulate t... To evaluate the operator health risk exposed to whole-body vibration(WBV) while the electric-shovel loads the ore on the truck body, the semi-truck mathematical model and 3-D virtual prototype were built to simulate the high shockwave of truck cab under the shovel loading. Discrete element method was utilized to accurately estimate the impacting force on the truck body. Based on the ISO 2631-5 criteria, the Sed is about 0.56 MPa in both models, which means that the dump operators have a high probability of adverse health effects over long-term exposure to these vibrations. The 4-DOF operator model was built to investigate the biodynamic response of seated-human body exposed to WBV in terms of the transmission of vibrations through the body. The results show that the response peak is in the frequency range of 4-6 Hz corresponding to the primary body resonant frequency. 展开更多
关键词 dump truck loading operation impacting force discrete element method
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Rock fracture under anti-plane shear (Mode Ⅲ) loading 被引量:1
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作者 RAO Qiu-hua LIAO Zhen-feng 《Journal of Central South University of Technology》 2005年第z1期125-128,共4页
Anti-plane punch-through shear test and anti-planefour-point bending test are used to study the crack initiation and propagation under anti-plane shear (Mode Ⅲ) loading. The tensile and shear stresses at the crack ti... Anti-plane punch-through shear test and anti-planefour-point bending test are used to study the crack initiation and propagation under anti-plane shear (Mode Ⅲ) loading. The tensile and shear stresses at the crack tip are calculated by finite element method. The results show that under Mode Ⅲ loading the maximum principal stress σ1 at crack tip is smaller or a little larger than the maximum shear stress τmax. Since the tensile strength of brittle rock is much lower than its shear strength, σ1 is easy to reach its critical value before τmax reaches its critical value and thus results in Mode I fracture. The fracture trajectory is helicoid and the normal direction of tangential plane with the fractured helicoid is along the predicted direction of the maximum principal stress at the notch tip. It is further proved that Mode Ⅰ instead of Mode Ⅲ fracture occurs in brittle rock under Mode Ⅲ loading. The fracture mode depending on the fracture mechanism must be distinguished from the loading form. 展开更多
关键词 MODE loading MODE FRACTURE FRACTURE mechanism FINITE ELEMENT method ROCK
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Investigation of granite failure precursor under axial load using modified LSTM framework
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作者 WANG Ya-lei XU Jin-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2930-2943,共14页
Granite is usually composed of quartz,biotite,feldspar,and cracks,and the variation characteristics of these components could reflect the deformation and failure process of rock well.Taking granite as an example,the v... Granite is usually composed of quartz,biotite,feldspar,and cracks,and the variation characteristics of these components could reflect the deformation and failure process of rock well.Taking granite as an example,the video camera was used to record the deformation and failure process of rock.The distribution of meso-components in video images was then identified.The meso-components of rock failure precursors were also discussed.Moreover,a modified LSTM(long short-term memory method)based on SSA(sparrow search algorithm)was proposed to estimate the change of meso-components of rock failure precursor.It shows that the initiation and expansion of cracks are mainly caused by feldspar and quartz fracture,and when the quartz and feldspar exit the stress framework,rock failure occurs;the second large increase of crack area and the second large decrease of quartz or feldspar area may be used as a precursor of rock failure;the precursor time of rock failure based on meso-scopic components is about 4 s earlier than that observed by the naked eye;the modified LSTM network has the strongest estimation ability for quartz area change,followed by feldspar and biotite,and has the worst estimation ability for cracks;when using the modified LSTM network to predict the precursors of rock instability and failure,quartz and feldspar could be given priority.The results presented herein may provide reference in the investigation of rock failure mechanism. 展开更多
关键词 GRANITE failure precursor axial load modified long short-term memory method
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列车荷载作用下的磁浮轨道梁响应极值条件 被引量:1
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作者 向活跃 刘科宏 李永乐 《西南交通大学学报》 北大核心 2025年第1期27-34,136,共9页
为研究磁浮轨道梁动力响应的变化规律,将磁浮列车简化为移动的均布荷载,采用解析法得到简支轨道梁动力响应的解析解,并讨论轨道梁最大值随车速、跨度等参数的变化规律,推导磁浮轨道梁动力响应的极值条件,利用有限元方法和车-桥耦合振动... 为研究磁浮轨道梁动力响应的变化规律,将磁浮列车简化为移动的均布荷载,采用解析法得到简支轨道梁动力响应的解析解,并讨论轨道梁最大值随车速、跨度等参数的变化规律,推导磁浮轨道梁动力响应的极值条件,利用有限元方法和车-桥耦合振动方法进行验证.结果表明:列车与轨道梁跨度比值较大时,随列车速度的增加轨道梁跨中最大响应以波动形式增加,最大响应存在极值,轨道梁响应随轨道梁跨度、质量等参数也有类似规律;当车速和跨度的乘积为特定常数,或轨道梁一阶竖弯频率与跨度的乘积为车速特定倍数时,轨道梁产生消振现象. 展开更多
关键词 磁浮轨道梁 动力响应 均布荷载 解析法 消振现象
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直流微网系统小干扰稳定性分析及有源阻尼控制 被引量:3
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作者 刘欣 李佳燏 《电网技术》 北大核心 2025年第1期323-332,I0101-I0102,共12页
直流微电网包含众多变流器,结构复杂。为了简化直流微电网的稳定性分析,该文首先将系统分为各变流器和线路网络两个部分,结合变流器的端口阻抗和线路网络的节点导纳矩阵建立了直流微电网的开环传递函数矩阵,然后基于此开环传递函数矩阵... 直流微电网包含众多变流器,结构复杂。为了简化直流微电网的稳定性分析,该文首先将系统分为各变流器和线路网络两个部分,结合变流器的端口阻抗和线路网络的节点导纳矩阵建立了直流微电网的开环传递函数矩阵,然后基于此开环传递函数矩阵,使用特征值法分析了系统稳定性关于不同变流器的灵敏度,最后根据灵敏度对不稳定贡献最大的变流器进行附加有源阻尼以增强系统阻尼,提升系统稳定性。结合Matlab/Simulink仿真算例,验证了稳定性分析方法及控制策略的有效性。 展开更多
关键词 直流微电网 稳定性分析 灵敏度分析 有源阻尼方法 恒功率负荷
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煤系典型岩石受载全过程光−电−声波多参数响应特征 被引量:1
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作者 张平松 刘畅 《煤田地质与勘探》 北大核心 2025年第1期204-214,共11页
【目的】岩石在载荷作用下的变形与断裂会引起潜在参数信息的变化,通过参数的动态捕捉可表征裂隙生成、扩展、闭合过程,是一种岩石健康评价的重要方法。【方法】基于搭建的多参数测试系统,开展单轴加载条件下岩石试件的分布式光纤应变... 【目的】岩石在载荷作用下的变形与断裂会引起潜在参数信息的变化,通过参数的动态捕捉可表征裂隙生成、扩展、闭合过程,是一种岩石健康评价的重要方法。【方法】基于搭建的多参数测试系统,开展单轴加载条件下岩石试件的分布式光纤应变、电极电流、纵波波速的同步采集,进一步构建强度−参数特征关系图谱以及参数层析成像结果,精细描述了砂岩、灰岩、泥岩3类典型岩石受载全过程多参数的时空演化特征。【结果和结论】试验结果表明:时间−压力曲线和多参数响应曲线具有较好的一致性,螺旋布设的分布式光纤应变在试件的原生孔隙压缩和线弹性阶段表现为缓慢、稳定的增长,在裂隙生成、扩展阶段表现为突然、快速的增长。试验中,砂岩、灰岩、泥岩的临破裂分布式光纤应变值分别为933×10−6,401×10−6和3790×10−6;电极电流在原生孔隙压缩和线弹性阶段变化微小,在裂隙生成、扩展阶段明显地降低、裂隙闭合时有一定回升;在原生孔隙压缩、线弹性、破裂阶段,砂岩的纵波波速分别为4.31、4.39、1.26 km/s,灰岩的纵波波速分别为4.80、4.93、3.10 km/s,泥岩的纵波波速分别为3.65、3.57、1.71 km/s。通过获得的岩石受载全过程能量值,构建了损伤变量D来评价岩石试件的损伤演化程度,砂岩的D值经历了缓增−降低−突增3个阶段,灰岩的D值经历了缓慢增大−快增−停滞−突增4个阶段,泥岩的D值经历了缓慢增大−快增−突增3个阶段。基于分布式光纤应变测试结果,探究了不同岩性岩石试件的破裂模式,为载荷下次生裂隙生成、扩展以及潜在破裂面位置预测提供支持。 展开更多
关键词 岩石受载 响应特征 分布式光纤 并行电法 数字超声波 含煤地层
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基于Pasternak地基模型的H(t)-T受荷桩受力变形分析
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作者 江杰 陈丽君 +3 位作者 柴文成 艾永林 欧孝夺 龚健 《上海交通大学学报》 北大核心 2025年第1期60-69,共10页
水平动荷载H(t)与扭矩T联合作用下的桩基受力变形较为复杂.为了更加准确地分析H(t)-T联合受荷桩的内力与位移,基于Pasternak地基模型考虑桩侧土体剪切效应;引入H(t)-T耦合因子,揭示多向荷载对桩身响应的影响机理;继而利用虚功原理推导... 水平动荷载H(t)与扭矩T联合作用下的桩基受力变形较为复杂.为了更加准确地分析H(t)-T联合受荷桩的内力与位移,基于Pasternak地基模型考虑桩侧土体剪切效应;引入H(t)-T耦合因子,揭示多向荷载对桩身响应的影响机理;继而利用虚功原理推导桩身单元综合刚度矩阵;最后采用改进的有限杆单元法获得H(t)-T联合受荷桩内力与位移数值解;并与已有理论解和有限元模拟结果进行对比验证.参数分析表明:土体剪切效应可约束桩身水平位移,但对扭转变形影响较小;水平动荷载增强了桩身抗扭承载力,水平动荷载幅值从0.2Q_(u)增大到1.0Q_(u)时,桩顶扭转角减小了22.6%;增大动荷载无量纲频率会减小桩顶位移和桩身最大弯矩,外荷载动力效应随桩埋深增加而减弱;杆单元模型减少了单元划分数量和计算时间,可有效提高计算效率. 展开更多
关键词 Pasternak地基模型 联合受荷桩 有限单元法 水平动荷载 扭矩
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组合载荷作用下加筋板极限强度相互关系公式
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作者 万琪 宋召军 +2 位作者 钱伟 杨鑫 李晓彬 《船舶力学》 北大核心 2025年第2期277-287,共11页
船舶航行时整体船体梁受到货物装载载荷、船底吃水静水弯矩与波浪弯矩等组合载荷联合作用,而其局部船体加筋板结构则承受面内纵向、横向与面外压力载荷等三向载荷联合作用。侧向载荷的大小不同程度地影响加筋板面内的纵向与横向承载能力... 船舶航行时整体船体梁受到货物装载载荷、船底吃水静水弯矩与波浪弯矩等组合载荷联合作用,而其局部船体加筋板结构则承受面内纵向、横向与面外压力载荷等三向载荷联合作用。侧向载荷的大小不同程度地影响加筋板面内的纵向与横向承载能力,故需建立组合载荷共同加载条件下的加筋板极限强度相互关系式。本文以散货轮船底结构为研究对象,采用对称循环边界的双跨双弯几何范围加筋板模型,应用非线性有限元法分析实船连续船体结构遭受横向、纵向与侧向等组合载荷联合作用时的极限强度相互影响规律。通过研究发现,通常侧向载荷降低加筋板结构纵向与横向极限承载力,且板柔度越小则降低越大,同时建议分别通过增大型材尺寸与板材厚度提高侧压作用下的纵向与横向极限承载力,并提出组合载荷联合作用下的加筋板极限强度相互关系表达式。该方法可评估纵向、横向与侧向载荷联合作用下的极限强度相互关系,以开展复合载荷状态下的船舶加筋板结构强度设计的快速评估。 展开更多
关键词 组合载荷 加筋板 极限强度 数值仿真 相互公式
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板柱节点考虑弯剪相关性的受冲切承载力计算方法
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作者 郑文忠 吕盛先 +1 位作者 郑博文 王英 《哈尔滨工业大学学报》 EI CAS 北大核心 2025年第1期65-76,共12页
对于同时受到竖向荷载和不平衡弯矩作用的板柱节点,目前已有方法大多将不平衡弯矩等效为竖向荷载,从而给出其受冲切承载力计算方法。但该方法所涉及的不平衡弯矩比例系数的计算还存在较大争议,且没有考虑竖向荷载与不平衡弯矩耦合的影... 对于同时受到竖向荷载和不平衡弯矩作用的板柱节点,目前已有方法大多将不平衡弯矩等效为竖向荷载,从而给出其受冲切承载力计算方法。但该方法所涉及的不平衡弯矩比例系数的计算还存在较大争议,且没有考虑竖向荷载与不平衡弯矩耦合的影响。因此,本文首先通过推导给出仅有竖向荷载作用的板柱节点受冲切承载力计算公式和仅有不平衡弯矩作用的板柱节点受弯承载力计算公式,并与试验结果进行对比,验证了所提公式的合理性。然后基于板柱节点在竖向荷载和不平衡弯矩共同作用下的试验结果,拟合得到板柱节点考虑弯剪相关性的受冲切承载力计算公式。最后对所提计算方法与不同规范计算方法进行对比,结果表明本文计算方法能够更加准确地预测板柱节点受冲切承载力。 展开更多
关键词 板柱节点 竖向荷载 不平衡弯矩 受冲切承载力 计算方法
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不同加载速率下花岗岩多期应力记忆方向独立性试验研究
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作者 马春德 康子豪 +2 位作者 阳文源 谭观霜 赵俊康 《岩土力学》 北大核心 2025年第6期1709-1718,共10页
为了研究花岗岩在不同加载速率下的多期应力记忆方向独立性,对花岗岩进行了5个不同加载速率下的偏转角度单轴循环加卸载试验。结合声发射技术,分析不同加载速率对岩石在偏转不同角度后的多期应力记忆能力的影响,包括Kaiser效应(Kaiser e... 为了研究花岗岩在不同加载速率下的多期应力记忆方向独立性,对花岗岩进行了5个不同加载速率下的偏转角度单轴循环加卸载试验。结合声发射技术,分析不同加载速率对岩石在偏转不同角度后的多期应力记忆能力的影响,包括Kaiser效应(Kaiser effect,简称KE)以及抹录不净现象(incomplete erasion phenomenon,简称IEP)。结果表明:不同加载速率下花岗岩存在多期应力记忆方向独立性,且各加载速率下KE的方向独立性临界角度都比IEP要高;随着加载速率增大,花岗岩的KE临界角度逐渐增大;当加载速率小于10 kN/min时,IEP临界角度也基本呈逐渐增大趋势,但当加载速率超过10 kN/min时,IEP临界角度降至0°~5°。该研究结果为进一步系统和深入地认识岩石多期应力记忆方向独立性提供了试验基础。 展开更多
关键词 声发射法 应力记忆 KAISER效应 抹录不净现象 不同加载速率 偏转加载
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