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环境温度对掺水乳化柴油喷雾燃烧特性的影响 被引量:1
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作者 王兆文 石书国 +3 位作者 黄胜 唐劼 杜涛 成晓北 《内燃机学报》 EI CAS CSCD 北大核心 2019年第3期203-212,共10页
柴油机中燃用掺水乳化柴油有提高燃烧热效率的潜力,并同时降低碳烟和NOx排放.利用定容燃烧弹台架,对比试验了纯柴油和掺水乳化柴油的燃烧特性,并重点研究了环境温度对掺水乳化柴油喷雾和燃烧特性的影响.结果表明:相比于纯柴油,掺水乳化... 柴油机中燃用掺水乳化柴油有提高燃烧热效率的潜力,并同时降低碳烟和NOx排放.利用定容燃烧弹台架,对比试验了纯柴油和掺水乳化柴油的燃烧特性,并重点研究了环境温度对掺水乳化柴油喷雾和燃烧特性的影响.结果表明:相比于纯柴油,掺水乳化柴油能明显降低燃烧过程中碳烟的生成量;掺水乳化柴油中水的蒸发和微爆作用随环境温度的升高逐渐增强,能有效促进喷雾雾化和油、气混合过程;随着环境温度的升高,掺水乳化柴油的滞燃期及火焰升举长度均减小,燃烧火焰亮度增大.高环境温度工况下,碳烟前期生成速率和后期氧化速率均增大,使得不同环境温度工况下掺水乳化柴油最终碳烟的排放量相差较小. 展开更多
关键词 掺水乳化柴油 定容燃烧弹 环境温度 喷雾燃烧
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Detached-eddy Simulation for Time-dependent Turbulent Cavitating Flows 被引量:10
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作者 HUANG Biao WANG Guoyu +1 位作者 YU Zhiyi shi shuguo 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第3期484-490,共7页
The Reynolds-averaged Navier-Stokes(RANS),such as the original k-ω two-equation closures,have been very popular in providing good prediction for a wide variety of flows with presently available computational resour... The Reynolds-averaged Navier-Stokes(RANS),such as the original k-ω two-equation closures,have been very popular in providing good prediction for a wide variety of flows with presently available computational resource.But for cavitating flows,the above equations noticeably over-predict turbulent production and hence effective viscosity.In this paper,the detached eddy simulation(DES) method for time-dependent turbulent cavitating flows is investigated.To assess the state-of-the-art of computational capabilities,different turbulence models including the widely used RANS model and DES model are conducted.Firstly,in order to investigate the grid dependency in computations,different grid sizes are adopted in the computation.Furthermore,the credibility of DES model is supported by the unsteady cavitating flows over a 2D hydrofoil.The results show that the DES model can effectively reduce the eddy viscosities.From the experimental validations regarding the force analysis,frequency and the unsteady cavity visualizations,more favorable agreement with experimental visualizations and measurements are obtained by DES model.DES model is better able to capture unsteady phenomena including cavity length and the resulting hydrodynamic characteristics,reproduces the time-averaged velocity quantitatively around the hydrofoil,and yields more acceptable and unsteady dynamics features.The DES model has shown to be effective in improving the overall predictive capability of unsteady cavitating flows. 展开更多
关键词 CAVITATION detached-eddy simulation unsteady cavitating flows
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