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初始条件与NH_(3)体积分数协同的NH_(3)/柴油双燃料燃烧和污染物生成特性研究
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作者 袁文华 赵少敏 马仪 《中南大学学报(自然科学版)》 北大核心 2025年第7期2995-3008,共14页
为探究不同初始温度和初始压力下氨体积分数对NH_(3)/柴油双燃料燃烧和污染物生成特性的影响,基于定容燃烧弹建立NH_(3)/柴双燃料燃烧数值模型,研究不同NH_(3)体积分数(2.73%~12.27%)、初始温度(800~1200 K)和压力(1.5~3.5 MPa)条件下... 为探究不同初始温度和初始压力下氨体积分数对NH_(3)/柴油双燃料燃烧和污染物生成特性的影响,基于定容燃烧弹建立NH_(3)/柴双燃料燃烧数值模型,研究不同NH_(3)体积分数(2.73%~12.27%)、初始温度(800~1200 K)和压力(1.5~3.5 MPa)条件下先导柴油引燃预混NH_(3)的燃烧和污染物生成特性。研究结果表明:随NH_(3)体积分数增大,热释放率(HRR)从单峰向双峰转变,且该转变所需的NH_(3)体积分数随着初始温度升高和压力增大而降低,在单峰HRR模式下,燃烧持续期和HRR峰值随NH_(3)体积分数、初始温度升高和压力增大而增加,而在双峰HRR模式中,由于后期燃烧增强导致燃烧持续时间缩短,且第一个HRR峰值随着NH_(3)体积分数的增加而降低,第二个HRR峰值持续上升,此外,NH_(3)体积分数越高,氧化亚氮(N_(2)O)生成得越少,二氧化碳(CO_(2))生成也略有减少,但柴油燃烧受到抑制导致碳烟和氮氧化物(NO_(x))摩尔分数增大,通过将NH_(3)体积分数控制在HRR从单峰向双峰转变的临界点并增加初始压力,可显著减小NO_(x)的摩尔分数。 展开更多
关键词 NH_(3)/柴油 燃烧 排放 仿真 恒容室
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Electrical capacitance volume tomography for measurement soil water infiltration in vessel experiments
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作者 Muhammad Mukhlisin Marlin Ramadhan Baidillah Mohd Raihan Taha 《Journal of Central South University》 SCIE EI CAS 2014年第1期358-364,共7页
Electrical capacitance volume tomography(ECVT) is a recently-developed technique for real-time,non-invasive 3D monitoring of processes involving materials with strong contrasts in dielectric permittivity.This work is ... Electrical capacitance volume tomography(ECVT) is a recently-developed technique for real-time,non-invasive 3D monitoring of processes involving materials with strong contrasts in dielectric permittivity.This work is first application of the method to visualization of water flow in soil.We describe the principles behind the method,and then demonstrate its use with a simple laboratory infiltration experiment.32 ECVT sensors were installed on the sides of an empty PVC column.Water was poured into the column at a constant rate,and ECVT data were collected every second.The column was then packed with dry sand and again supplied with water at a constant rate with data collected every second.Data were analyzed to give bulk average water contents,which proved consistent with the water supply rates.Data were also analyzed to give 3D images(216 voxels) allowing visualization of the water distribution during the experiments.Result of this work shows that water infiltration into the soil,wall flow,progress of the unstable wetting front and the final water distribution are clearly visible. 展开更多
关键词 soil water infiltration electrical capacitance volume tomography real time imaging
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