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大型铝挤压机虚拟挤压系统建模与仿真 被引量:1
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作者 王玲玲 《液压与气动》 北大核心 2014年第4期28-30,共3页
铝挤压机挤压生产过程的虚拟技术,具有重要工程意义。以多学科仿真软件ITI-SimulationX为核心平台,集成三维建模软件SolidWorks建立的挤压机机械结构、成形工艺软件Simufact获取的成形力,组建了虚拟挤压系统模型,并以7075铝合金棒材挤... 铝挤压机挤压生产过程的虚拟技术,具有重要工程意义。以多学科仿真软件ITI-SimulationX为核心平台,集成三维建模软件SolidWorks建立的挤压机机械结构、成形工艺软件Simufact获取的成形力,组建了虚拟挤压系统模型,并以7075铝合金棒材挤压生产为例进行了仿真研究,得到了挤压行程、压力曲线,以及挤压时间等结果。 展开更多
关键词 挤压 虚拟挤压 仿真 ITI-SimulationX
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A formation pressure prediction method based on tectonic overpressure
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作者 申波 张超谟 +1 位作者 毛志强 肖承文 《Applied Geophysics》 SCIE CSCD 2010年第4期376-383,401,共9页
Traditional formation pressure prediction methods all are based on the formation undercompaction mechanism and the prediction results are obviously low when predicting abnormally high pressure caused by compressional ... Traditional formation pressure prediction methods all are based on the formation undercompaction mechanism and the prediction results are obviously low when predicting abnormally high pressure caused by compressional structure overpressure.To eliminate this problem,we propose a new formation pressure prediction method considering compressional structure overpressure as the dominant factor causing abnormally high pressure.First,we establish a model for predicting maximum principal stress,this virtual maximum principal stress is calculated by a double stress field analysis.Then we predict the formation pressure by fitting the maximum principal stress with formation pressure. The real maximum principal stress can be determined by caculating the sum of the virtual maximum principal stresses.Practical application to real data from the A1 and A2 wells in the A gas field shows that this new method has higher accuracy than the traditional equivalent depth method. 展开更多
关键词 formation pressure UNDERCOMPACTION tectonic stress maximum principal stress conventional log data
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