期刊文献+

基于离子电流的爆震波压力非线性模型

Nonlinear Model of Detonation Wave Pressure Based on Ion Current
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摘要 为了实现爆震波压力的软测量,依据碳氢焰离子形成原理及爆震波高速传播的特点,在分析爆震波离子形成机理的基础上,根据爆震波离子电流与压力信号的相似性,提出基于离子电流的爆震波压力非线性模型建模思路。采用RBF网络建立爆震波非线性模型,并给出网络结构、样本选取原则和预处理方法。开展了单次脉冲爆震试验,利用试验数据建立该压力非线性模型,并通过试验数据和模型输出的对比校核模型的有效性和准确性。 The ion formation mechanism in the detonation wave is analyzed based on the ion formation mechanism of the hydrocarbon flame and the character of high propagation speed of the detonation wave. Because of the similarity between the pressure signal of detonation wave and the ion current signal, the nonlinear pressure modeling is proposed. The RBF neural network is employed to establish the nonlinear pressure model by using the data from the single-detonation experiments. The network structure, the principle of training data selection and the data preprocess method are proposed. The model is validated by comparison between the ext)erimental data and the network output.
出处 《推进技术》 EI CAS CSCD 北大核心 2012年第2期322-326,共5页 Journal of Propulsion Technology
基金 南京航空航天大学基本科研业务费专项科研项目中青年创新基金(NS2010043)
关键词 脉冲爆震发动机 离子电流 压力非线性模型 爆震波 RBF神经网络 Pulse detonation engine Ion current Pressure nonlinear model Detonation wave, RBF neural network
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参考文献19

  • 1Santoro R J, Yang V,Shepherd J E, et al. A Muhidisci- plinary Study of Pulse Detonation Engine Propulsion[ R]. ADA409967, 2003.
  • 2Cooper M, Jackson S, Austin J,et al. Direct Experimen- tal Impulse Measurements for Detonations and Deflagra- tions[R]. AIAA 2001-3812.
  • 3Helfrich T M, Schauer F R. Ignition and Detonation-Initi- ation Characteristics of Hydrogen and Hydrocarbon Fuels in a PDE[ R]. AIAA 2007-234.
  • 4JeflYey S Zdenek, Ralph A Anthenien. Ion Based High- Temperature Pressure Sensor[ R]. AIAA 2004-470.
  • 5潘慕绚,黄金泉,郭伟,张彭岗.脉冲爆震发动机高温压力测量方法[J].推进技术,2009,30(3):355-359. 被引量:6
  • 6Lundstrom D, Schagerberg S. Misfire Detection for Pre- chamber SI Engines Using Ion Sensoring and Rotational Speed Measurement[ R]. SAE 2001-01-0993.
  • 7吴筱敏,李康,魏若男,蒋德明.利用离子信号计算已燃质量分数[J].燃烧科学与技术,2007,13(5):403-406. 被引量:2
  • 8Saitzkoff A, Reinmann R, Mauss F, et al. In-Cylinder Pressure Measurements Using the Spark Plug as an Ioniza- tion Sensor[ R]. SAE 970857,1997.
  • 9Schneider D. An Experimental Study of Correlations Be- tween Ionic Current and Operating Parameters in SI En- gine[ D]. US: Wayne State University, 2000.
  • 10bustion Institute oudera J, Flowers D, et al Engines Determined by Ion - Sensor: Ex- Kinetie Modeling[ J ]. Proceeding of Corn- , 2005,30(2) :2701-2703.

二级参考文献33

  • 1吴筱敏,杜卫宁,廖世勇.定容燃烧弹中离子信号的特征分析[J].燃烧科学与技术,2005,11(2):101-104. 被引量:9
  • 2何小民,张彭岗,王家骅.爆震管内爆燃到爆震转捩过程的实验研究[J].推进技术,2005,26(3):252-255. 被引量:12
  • 3李建文,刘书亮,王天友,刘伍权,杨生辉.点燃式发动机火花塞离子电流的数学模型[J].天津大学学报,2006,39(B06):66-70. 被引量:3
  • 4Lee J, Moen I. The mechanism of transition from deflagration to detonation in vapor cloud explosions.[J]Progress of Energy and Combustion Science, 1980, 6 (3):359-389.
  • 5Knystautas R, Lee J . Flame acceleration and transition to detonation in benzene air mixture[J]. Combustion and Flame, 1998,15:424-436
  • 6Lee S Y,Conrad C, Watts J, et al. Deflagration to detonation transition study using simultaneous schlieren and OH PL1F images[R]. AIAA 2000-3217.
  • 7Schauer F R, Miser C L, Tucker K C. Detonation initiation of hydrocarbon air mixtures in a pulsed detonation engine[R]. AIAA2005 -1343.
  • 8Meyer T R, Hoke J L, Brown M S. Experimental study of detlagration to-detonation enhancement techniques in a H2/Air pulse-detonation engine[R]. AIAA 2002 -3720.
  • 9Khokhlov A M, Oran E S. Numerical simulation of detonation initiation in a flame brush:the role of hot spots[J].Combustion and Flame, 1999,119:400-416.
  • 10Gamezo V N, Khokhlov A M, Oran E S. The influence of shock bifurcations on shock-flame interactions and DDT[J]. Combustion and Flame, 2001,126:1810 -1826.

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