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用活塞位移确定上止点相位方法的探讨 被引量:3
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作者 于明进 程勇 +1 位作者 吴波 张立梅 《内燃机学报》 EI CAS CSCD 北大核心 2004年第4期373-378,共6页
介绍了用位移传感器实测发动机活塞在上止点附近的位移,进而确定上止点相位的方法。如果直接根据活塞位移实测结果确定上止点相位,存在较大的偏差,而根据实测结果用二次拟合的方法确定则可以提高上止点相位的确定精度,并给出了相应的步... 介绍了用位移传感器实测发动机活塞在上止点附近的位移,进而确定上止点相位的方法。如果直接根据活塞位移实测结果确定上止点相位,存在较大的偏差,而根据实测结果用二次拟合的方法确定则可以提高上止点相位的确定精度,并给出了相应的步骤。在185型柴油机上的试验结果表明,直接根据活塞位移实测结果确定上止点相位,和根据实测结果用二次拟合方法确定的上止点相位相差1°CA以上。 展开更多
关键词 内燃机 活塞 位移确定 上止点 位移传感器 相位测量
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Semi-analytical solution for mechanical analysis of tunnels crossing strike-slip fault zone considering nonuniform fault displacement and uncertain fault plane position
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作者 YANG Heng-hong WANG Ming-nian +1 位作者 YU Li ZHANG Xiao 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2116-2136,共21页
The tunnel subjected to strike-slip fault dislocation exhibits severe and catastrophic damage.The existing analysis models frequently assume uniform fault displacement and fixed fault plane position.In contrast,post-e... The tunnel subjected to strike-slip fault dislocation exhibits severe and catastrophic damage.The existing analysis models frequently assume uniform fault displacement and fixed fault plane position.In contrast,post-earthquake observations indicate that the displacement near the fault zone is typically nonuniform,and the fault plane position is uncertain.In this study,we first established a series of improved governing equations to analyze the mechanical response of tunnels under strike-slip fault dislocation.The proposed methodology incorporated key factors such as nonuniform fault displacement and uncertain fault plane position into the governing equations,thereby significantly enhancing the applicability range and accuracy of the model.In contrast to previous analytical models,the maximum computational error has decreased from 57.1%to 1.1%.Subsequently,we conducted a rigorous validation of the proposed methodology by undertaking a comparative analysis with a 3D finite element numerical model,and the results from both approaches exhibited a high degree of qualitative and quantitative agreement with a maximum error of 9.9%.Finally,the proposed methodology was utilized to perform a parametric analysis to explore the effects of various parameters,such as fault displacement,fault zone width,fault zone strength,the ratio of maximum fault displacement of the hanging wall to the footwall,and fault plane position,on the response of tunnels subjected to strike-slip fault dislocation.The findings indicate a progressive increase in the peak internal forces of the tunnel with the rise in fault displacement and fault zone strength.Conversely,an augmentation in fault zone width is found to contribute to a decrease in the peak internal forces.For example,for a fault zone width of 10 m,the peak values of bending moment,shear force,and axial force are approximately 46.9%,102.4%,and 28.7% higher,respectively,compared to those observed for a fault zone width of 50 m.Furthermore,the position of the peak internal forces is influenced by variations in the ratio of maximum fault displacement of the hanging wall to footwall and the fault plane location,while the peak values of shear force and axial force always align with the fault plane.The maximum peak internal forces are observed when the footwall exclusively bears the entirety of the fault displacement,corresponding to a ratio of 0:1.The peak values of bending moment,shear force,and axial force for the ratio of 0:1 amount to approximately 123.8%,148.6%,and 111.1% of those for the ratio of 0.5:0.5,respectively. 展开更多
关键词 strike-slip fault tunnel engineering semi-analytical solution fault zone width nonuniform fault displacement uncertain fault plane position
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DLD装置中刚性颗粒运动的直接数值模拟研究 被引量:3
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作者 喻文广 余钊圣 +2 位作者 叶尚军 邵雪明 王博康 《机电工程》 CAS 2013年第7期778-782,共5页
为解决确定性侧向位移分离装置(DLD)数值模拟的精度以及其颗粒分离规律等问题,将直接力虚拟区域法应用到刚性颗粒在DLD中的运动直接数值模拟中。开展了DLD装置的侧向边界条件的影响分析,建立了侧向边界条件与DLD内部流场倾斜角度之间的... 为解决确定性侧向位移分离装置(DLD)数值模拟的精度以及其颗粒分离规律等问题,将直接力虚拟区域法应用到刚性颗粒在DLD中的运动直接数值模拟中。开展了DLD装置的侧向边界条件的影响分析,建立了侧向边界条件与DLD内部流场倾斜角度之间的关系,提出了对于模拟侧向圆柱数量较多的实际DLD装置应该采用周期性边界条件;在流场特征和刚性颗粒分离半径上对所采用的数值模拟方法和侧向边界条件进行了评估和实验。研究结果表明,对于侧向有较多数量圆柱的实际DLD装置,采用较少数量的圆柱和周期性边界条件来减少计算量,可以保证数值模拟的精度。 展开更多
关键词 确定性侧向位移 虚拟区域法 颗粒分离 临界直径
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Determination of ultimate bearing capacity of uplift piles using intact and non-intact load−displacement curve 被引量:7
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作者 WANG Qin-ke MAJian-lin +2 位作者 JI Yu-kun ZHANG Jian CHEN Wen-long 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期470-485,共16页
Based on the field destructive test of six rock-socketed piles with shallow overburden,three prediction models are used to quantitatively analyze and predict the intact load−displacement curve.The predicted values of ... Based on the field destructive test of six rock-socketed piles with shallow overburden,three prediction models are used to quantitatively analyze and predict the intact load−displacement curve.The predicted values of ultimate uplift capacity were further determined by four methods(displacement controlling method(DCM),reduction coefficient method(RCM),maximum curvature method(MCM),and critical stiffness method(CSM))and compared with the measured value.Through the analysis of the relationship between the change rate of pullout stiffness and displacement,a method used to determine the ultimate uplift capacity via non-intact load−displacement curve was proposed.The results show that the predicted value determined by DCM is more conservative,while the predicted value determined by MCM is larger than the measured value.This suggests that RCM and CSM in engineering applications can be preferentially applied.Moreover,the development law of the change rate of pullout stiffness with displacement agrees well with the attenuation form of power function.The theoretical predicted results of ultimate uplift capacity based on the change rate of pullout stiffness will not be affected by the integrity of the curve.The method is simple and applicable for the piles that are not loaded to failure state,and thus provides new insights into ultimate uplift capacity determination of test piles. 展开更多
关键词 load−displacement curve prediction model determination method of bearing capacity change rate of pullout stiffness
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