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稀燃模式下直喷氢气发动机性能试验
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作者 王雷 李海玉 +2 位作者 栾阔 赵妞 陈广源 《中国农机化学报》 北大核心 2024年第11期125-130,共6页
为研究氢气直喷发动机在稀薄燃烧下的燃油经济性、环保性和动力性,进行不同混合气浓度和不同负荷下的氢气直喷发动机燃烧特性研究。结果显示稀薄燃烧可以降低燃烧率和缸内压力升高率,并通过提高工质多变系数降低传热损失,从而显著提高... 为研究氢气直喷发动机在稀薄燃烧下的燃油经济性、环保性和动力性,进行不同混合气浓度和不同负荷下的氢气直喷发动机燃烧特性研究。结果显示稀薄燃烧可以降低燃烧率和缸内压力升高率,并通过提高工质多变系数降低传热损失,从而显著提高热效率。混合气变稀对火焰传播的影响较大,负荷对燃烧持续期的影响较小。过量空气系数λ在1.1~1.6范围时,NO_(X)排放最高,但加浓和稀释混合气均可降低排放。负荷增加也会显著增加NO_(X)排放。在小负荷下(平均有效制动压力BMEP=0.2 MPa),当λ>1.8时,NO_(X)排放低于10-5;而在负荷较大(BMEP=1.2 MPa)时,即使λ=2.0,NO_(X)排放仍超过0.002。 展开更多
关键词 直喷发动机 稀薄燃烧 燃烧特性 混合气稀释 NO_(X)排放
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氮气稀释丙烷空气混合气的层流火焰速度测量 被引量:4
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作者 李兴虎 《燃烧科学与技术》 EI CAS CSCD 2001年第4期288-289,共2页
用本生灯法对用氮气稀释的丙烷空气混合气的层流火焰速度进行了测量。火焰照片拍摄使用纹影摄影光学系统。数字照相机得到的锥形火焰平面投影照片输入计算机并进行几何尺寸测量 ,由火焰照片几何尺寸和混合气流量计算出层流火焰速度。
关键词 层流火焰速度 丙烷 稀释混合 纹影摄影
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Determination of Transport Properties of Dilute Binary Mixtures Containing Carbon Dioxide through Isotropic Pair Potential Energies 被引量:1
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作者 Delara Mohammad-Aghaie Mohammad Mehdi Papari Amjad Reza Ebrahimi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第3期274-286,共13页
The present work is concerned with extracting information about intermolecular potential energies of binary mixtures of CO2 with C2H6, C3H8, n-C4Hlo and iso-C4Hlo, by the usage of the inversion method, and then predic... The present work is concerned with extracting information about intermolecular potential energies of binary mixtures of CO2 with C2H6, C3H8, n-C4Hlo and iso-C4Hlo, by the usage of the inversion method, and then predicting the dilute gas transport properties of the mixtures. Using the inverted pair potential energies, the Chap- man-Enskog version of the kinetic theory was applied to calculate transport properties, except thermal conductivity of mixtures. The calculation of thermal conductivity through the methods of Schreiber et al. and Uribe et al. was discussed. Calculations were performed over a wide temperature range and equimolar composition. Rather accurate correlations for the viscosity coefficients of the mixtures in the temperature range were reproduced from the pre- sent unlike intermolecular potential energies. Our estimated accuracies for the viscosity are within ±2%. Acceptable agreement between the predicted values of the viscosity and thermal conductivity with the literature values demon- strates the predictive power of the inversion scheme. In the case of thermal conductivity our results are in favor of the preference of Uribe et al.'s method over Schreiber et al.'s scheme. 展开更多
关键词 intermolecular potential transport properties carbon dioxide inversion scheme
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