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'Virtual engine/powertrain/vehicle' simulation tool solves complex interacting system issues

机译:“虚拟引擎/动力总成/车辆”仿真工具解决了复杂的交互系统问题

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An integrated simulation tool has been developed, which is applicable to a wide range of design issues. A key feature introduced for the first time by this new tool is that it is truly a single code, with identical handling of engine, powertrain, vehicle, hydraulics, electrical, thermal and control elements. Further, it contains multiple levels of engine models, so that the user can select the appropriate level for the time scale of the problem (e.g., real-time operation). One possible example of such a combined simulation is the present study of engine block vibration in the mounts. The simulation involved a fully coupled model of performance, thermodynamics and combustion, with the dynamics of the cranktrain, engine block and the driveline. It demonstrated the effect of combustion irregularity on engine shaking in the mounts. It was shown that the irregular cylinder pressure produces low frequencies, which have the undesirable effect of coupling into and inducing resonance of the mount natural frequencies.
机译:开发了一个集成的仿真工具,适用于各种设计问题。这款新工具首次推出的一个关键功能是它是真正的单一代码,具有相同的发动机,动力系,车辆,液压,电气,热和控制元件的处理。此外,它包含多个级别的发动机模型,使得用户可以为问题的时间比例选择适当的级别(例如,实时操作)。这种组合模拟的一个可能的例子是本发明的发动机块振动在安装件中的研究。该模拟涉及性能,热力学和燃烧的完全耦合模型,具有曲轴,发动机块和传动系的动态。它展示了燃烧不规则性对坐骑中发动机摇动的影响。结果表明,不规则的汽缸压力产生低频,这具有耦合到和诱导安装固有频率的共振的不希望的影响。

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