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基于小波变形分析模型 被引量:16
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作者 文鸿雁 唐诗华 +1 位作者 林文介 张立强 《桂林工学院学报》 1999年第4期339-343,共5页
讨论了小波及其特性, 针对目前变形分析模型不足, 建立了基于小波分析的变形分析实用模型, 该模型对变形进行滤波, 从而可揭示变形规律; 提出了基于小波局部特征分析模型, 通过取不同参数, 该模型既适用于分析变形过程整体特征,... 讨论了小波及其特性, 针对目前变形分析模型不足, 建立了基于小波分析的变形分析实用模型, 该模型对变形进行滤波, 从而可揭示变形规律; 提出了基于小波局部特征分析模型, 通过取不同参数, 该模型既适用于分析变形过程整体特征, 还适用于分析动态变形, 而且对多种不同周期变形可进行有效分离。 展开更多
关键词 变形监测 数据处理 小波分析 建筑 变形分析模型
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出砂井射孔套管变形分析及射孔参数优化 被引量:3
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作者 姜广彬 郭晓强 +1 位作者 张瑞霞 柳军 《济南大学学报(自然科学版)》 CAS 北大核心 2022年第1期86-91,99,共7页
针对出砂井因上覆地层沉降与射孔段地层空洞而导致的射孔套管变形问题,采用有限元分析软件,建立考虑上覆地层位移与出砂空洞的射孔套管变形分析模型,采用经典Lame公式验证模型的正确性,分析射孔孔眼密度、孔径和射孔相位角对射孔套管变... 针对出砂井因上覆地层沉降与射孔段地层空洞而导致的射孔套管变形问题,采用有限元分析软件,建立考虑上覆地层位移与出砂空洞的射孔套管变形分析模型,采用经典Lame公式验证模型的正确性,分析射孔孔眼密度、孔径和射孔相位角对射孔套管变形的影响。结果表明:出砂井射孔套管在轴向载荷作用下的变形不同于在径向挤压作用下的变形,微小的上覆地层位移就能导致射孔套管发生大变形;当射孔孔眼密度为25~30 m^(-1),孔径为13~15 mm,相位角为45°、60°或90°时,能够有效减小上覆地层位移造成的射孔套管变形。 展开更多
关键词 出砂井 射孔套管 射孔参数 变形分析模型 上覆地层位移
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Development of analysis model for geometric error in turning processes 被引量:1
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作者 LEE Mun-jae LEE Choon-man 《Journal of Central South University》 SCIE EI CAS 2011年第3期711-717,共7页
A finite element model was established for analyzing the geometric errors in turning operations and a two-step analyzing process was proposed. In the first analyzing step, the cutting force and the cutting heat for th... A finite element model was established for analyzing the geometric errors in turning operations and a two-step analyzing process was proposed. In the first analyzing step, the cutting force and the cutting heat for the cutting conditions were obtained using the AdvantEdge. Also, the deformation of a workpiece was estimated in the second step using the ANSYS. The deformation was analyzed for a 150 mm-long workpiece at three different measuring points, such as 10, 70 and 130 mm from a reference point, and the amounts of the deformation were compared through experiments. /n the results of the comparison and analysis, the values obtained from these comparison and analysis represent similar tendencies. Also, it is verified that their geometric errors increase with the increase in temperature. In addition, regarding the factors that affect the deformation of a workpiecc, it can be seen that the geometric error in the lathe is about 15%, the error caused by the cutting force is about 10%, and the deformation caused by the heat is about 75%. 展开更多
关键词 geometric error machining accuracy finite element analysis TURNING cutting force cutting temperature
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