首页> 外文会议>SAE International Congress and Exposition >Quantification and reduction of IMEP errors resulting from pressure transducer thermal shock in an S.I. engine
【24h】

Quantification and reduction of IMEP errors resulting from pressure transducer thermal shock in an S.I. engine

机译:由S.I.发动机的压力传感器热冲击产生的IMEP误差的量化和降低

获取原文

摘要

A major problem with making accurate cylinder pressure measurements using piezoelectric pressure transducers in IC engines is thermal shock. This affects most derived parameters although the greatest error is in the indicated mean effective pressure (IMEP), which can be affected by over 10%. In this paper, thermal shock has been quantified for a wide range of engine conditions. Thermal shock was found to be most significant at low engine speeds, high loads and advanced ignition timings. A good correlation between thermal shock and peak pressure has been established for Kistler 6123 and 6125 transducers when dealing with cycle-averaged data. This resulted in the development of a numerical thermal shock correction routine which was used for all subsequent data processing. Use of this improved analysis software demonstrated that the error in the calculated IMEP was significantly improved for the Ford Zetec engine tested. The range of Kistler 6123 IMEP errors were reduced from between -7% and -20% to between -1.5% and +1.4% after correction. Equivalent values for a Kistler 6125A transducer were -4.9% to -2.1% uncorrected down to between -0.4% and +0.8%.
机译:使用IC发动机中使用压电压力传感器进行准确的圆柱形压力测量的主要问题是热冲击。这会影响大多数派生参数,尽管最大的错误处于指示的平均有效压力(IMEP),其可能受到超过10%的影响。本文在广泛的发动机条件下量化了热冲击。发现热冲击在低发动机速度,高负荷和高级点火器件时最显着。在处理周期平均数据时,已经为Kistler 6123和6125换能器建立了热冲击和峰值压力之间的良好相关性。这导致开发了用于所有后续数据处理的数值热冲击校正例程。使用这种改进的分析软件表明,对于测试的福特Zetec发动机,所计算的IMEP中的误差显着提高。校正后,Kistler 6123 IMEP误差的范围从-7%和-20%降低至-1.5%和+ 1.4%。 Kistler 6125a换能器的等效值为-4.9%至-2.1%,未校正至-0.4%和+ 0.8%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号