SAE International Direct Fuel Injector Power Drive System Optimization 2014-01-1442

Description
The objective of this study is to optimize the injector power drive system for improved fuel injection quantity and timing control. The power drive system was optimized for improved injection repeatability under different operating conditions such as fuel supply pressures. A coupled simulation of injector electromagnetic, pintle (needle) rigid body motion and computational fluid dynamics (CFD) model was employed to generate the optimal values of the 1 2x stage current, the 1 2x stage on-time and the 2 2x stage current. The simulation results were validated against the experimental data measured with a photo detector measurement system.
Description
The objective of this study is to optimize the injector power drive system for improved fuel injection quantity and timing control. The power drive system was optimized for improved injection repeatability under different operating conditions such as fuel supply pressures. A coupled simulation of injector electromagnetic, pintle (needle) rigid body motion and computational fluid dynamics (CFD) model was employed to generate the optimal values of the 1 2x stage current, the 1 2x stage on-time and the 2 2x stage current. The simulation results were validated against the experimental data measured with a photo detector measurement system.

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Direct Fuel Injector Power Drive System Optimization - 2014-01-1442 - SAE International
Warrendale, PA, United States
Direct Fuel Injector Power Drive System Optimization
2014-01-1442
Direct Fuel Injector Power Drive System Optimization 2014-01-1442
The objective of this study is to optimize the injector power drive system for improved fuel injection quantity and timing control. The power drive system was optimized for improved injection repeatability under different operating conditions such as fuel supply pressures. A coupled simulation of injector electromagnetic, pintle (needle) rigid body motion and computational fluid dynamics (CFD) model was employed to generate the optimal values of the 1 2x stage current, the 1 2x stage on-time and the 2 2x stage current. The simulation results were validated against the experimental data measured with a photo detector measurement system.

The objective of this study is to optimize the injector power drive system for improved fuel injection quantity and timing control. The power drive system was optimized for improved injection repeatability under different operating conditions such as fuel supply pressures. A coupled simulation of injector electromagnetic, pintle (needle) rigid body motion and computational fluid dynamics (CFD) model was employed to generate the optimal values of the 1 2x stage current, the 1 2x stage on-time and the 2 2x stage current. The simulation results were validated against the experimental data measured with a photo detector measurement system.

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Technical Specifications

  SAE International
Product Category Standards and Technical Documents
Product Number 2014-01-1442
Product Name Direct Fuel Injector Power Drive System Optimization
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