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柴油引燃预混合天然气实现准均质压燃着火燃烧方式的理论研究 被引量:5
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作者 姚春德 姚广涛 +1 位作者 宋金瓯 段峰 《汽车工程》 EI CSCD 北大核心 2005年第2期168-171,共4页
通过重新构建引燃油着火模型和双燃料燃烧模型,对在不同当量比情况下,引燃油雾化、蒸发与着火的特点及对燃烧过程的影响进行了较深入的理论研究,提出了柴油引燃预混合天然气实现准均质压燃着火的引燃油喷油特性。
关键词 柴油 预混合天然气 准均质压燃着火燃烧方式 引燃油雾化 喷油特性 发动机
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Experimental Study on Emission Control of Premixed Catalytic Combustion of Natural Gas Using Preheated Air 被引量:2
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作者 许考 刘中良 +2 位作者 何洪 程水源 马重芳 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2007年第1期68-74,共7页
In this paper the premixed catalytic combustion emissions such as CO, unburned hydrocarbon (UHC), NOx and the temperature distribution in the catalytic monolith with ultra low concentration of Pd were studied. Three t... In this paper the premixed catalytic combustion emissions such as CO, unburned hydrocarbon (UHC), NOx and the temperature distribution in the catalytic monolith with ultra low concentration of Pd were studied. Three types of monoliths were used for experiments and the temperature of preheated air was respectively 50℃ , 100℃ and 200℃ . The results showed that preheated air made radial temperature in the catalytic monolith uniform which helped to avoid local hot spots so as to decrease NOx emission. The experiment also proved that the shorter monolith showed much better catalytic combustion performance than longer one and the temperature at the exit of the shorter monolith was relatively lower. On the contrary, the temperature was higher in the longer monolith and the lethal NOx emission was slightly increased. 展开更多
关键词 catalytic combustion preheated air natural gas EMISSION
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Prediction of Volumetric Properties(p-v-T)of Natural Gas Mixtures Using Extended Tao-Mason Equation of State
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作者 Hajir Karimi Fakhri Yousefi Mohammad Mehdi Papari 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第3期496-503,共8页
A statistical-mechanical-based equation of state(EOS)for pure substances,the Tao-Mason equation of state,is successfully extended to prediction of the(p-v-T)properties of fourteen natural gas mixtures at temperatures ... A statistical-mechanical-based equation of state(EOS)for pure substances,the Tao-Mason equation of state,is successfully extended to prediction of the(p-v-T)properties of fourteen natural gas mixtures at temperatures from 225 K to 483 K and pressures up to 60.5 MPa.This work shows that the Tao-Mason equation of state for multicomponent natural gas is predictable with minimal input information,namely critical temperature,critical pressure,and the Pitzer acentric factor.The calculated results agree well with the experimental data.From a total of 963 data of density and 330 data of compressibility factor for natural gases examined in this work,the average absolute deviations(AAD)are 1.704%and 1.344%,respectively.The present EOS is further assessed through the comparisons with Peng-Robinson(PR)equation of state.For the all of mixtures Tao-Mason(TM)EOS outperforms the PR EOS. 展开更多
关键词 equation of state natural gas MIXTURE density compressibility factor
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