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让电力能源消耗更加透明
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作者 ulrich hoppe 《现代制造》 2012年第27期68-68,70,共2页
节约能源的基础是连续不断的采集能源数据,标明能源流向,分析能源利用效率。为了能够使用能效更高的电气设备,就必须让能源使用情况非常清楚、透明(图1)。根据所采集的能源数据,可以制定优化生产过程、实现节约能源的措施。因此... 节约能源的基础是连续不断的采集能源数据,标明能源流向,分析能源利用效率。为了能够使用能效更高的电气设备,就必须让能源使用情况非常清楚、透明(图1)。根据所采集的能源数据,可以制定优化生产过程、实现节约能源的措施。因此,有效的能源管理是建立在测定不同机床和设备所使用的能源特性数据基础之上的。在电力能源数据采集中,PhoenixContact公司提供了成套的测量仪器。他们生产的EMpro能源测量仪能够对机床和设备所有的电量参数进行采集和监控。 展开更多
关键词 能源消耗 电力能源 数据采集 能源利用效率 电气设备 tact公司 能源数据 节约能源
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Hypoplastic particle finite element model for cutting tool-soil interaction simulations:Numerical analysis and experimental validation 被引量:2
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作者 Abdiel Ramon Leon Bal ulrich hoppe +2 位作者 Thai Son Dang Klaus Hackl Günther Meschke 《Underground Space》 SCIE EI 2018年第1期61-71,共11页
This study presents numerical and experimental models for the analysis of the excavation of soft soils by means of a cutting tool.The computational model is constructed using an Updated Lagrangean(UL)velocity-based Fi... This study presents numerical and experimental models for the analysis of the excavation of soft soils by means of a cutting tool.The computational model is constructed using an Updated Lagrangean(UL)velocity-based Finite Element approach.A hypoplastic formu-lation is employed to describe the constitutive behavior of soft soils.Large displacements and deformations of the ground resulting from the cutting tool-soil interaction are handled by means of the Particle Finite Element method,characterized by a global re-meshing strat-egy and a boundary identification procedure called a-shape technique.The capabilities and performance of the proposed model are demonstrated through comparative analyses between experiments and simulations of cutting tool-soft soil interactions.The experiments are performed using an excavation device at Ruhr-Universita¨t Bochum(RUB),Germany.The main details concerning the setup and calibration and evolution of the measured draft forces are discussed.Selected computational results characterizing the cutting tool-soft soil interaction including the topology of the free surface,void ratio distribution ahead of the tool,spatio-temporal evolution of the reaction forces and abrasive wear behavior are evaluated. 展开更多
关键词 Velocity-basedfinite elements formulation HYPOPLASTICITY Large deformations Particlefinite elements Cutting tool-soil interaction Excavation experiments
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