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基于不同压缩比的焦炉气与天然气混燃发动机燃烧特性的研究

Research of coke oven gas and natural gas co-combustion engine combustion characteristics based on different compression ratio

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【作者】 何明山; 罗卫东; 张立; 杨冬根; 陈启新;

【Author】 He Mingshan;Luo Weidong;Zhang Li;Yang Donggen;Chen Qixin;School of Mechanical Engineering, Guizhou University;

【机构】 贵州大学机械工程学院;

【摘要】 为了研究不同压缩比对焦炉气与天然气混然发动机性能的影响,以一台6缸焦炉气发动机为研究对象。运用CATIA三维建模软件建立了4种不同压缩比的燃烧室模型,然后在相同的边界条件、初始条件及过量空气系数等条件下,利用AVL-FIRE流体力学分析软件对不同压缩比的发动机的压缩及膨胀过程进行了数值模拟。模拟结果表明:当压缩比为12时,在点火时刻缸内的最大气流流速最小,有利于初始稳定火核的形成,压缩上止点时在强挤流的作用下产生横向流动的气流流向火花塞的远处,有利于火焰向远离火花塞的位置传播;与原机和其他压缩比的发动机相比,压缩比为12的发动机性能较好。

【Abstract】 In order to study different compression ratios on mixed natural gas and coke oven gas engine performance, we take a six-cylinder coke oven gas engine as the research object. We use CATIA 3D modeling software to establish four combustion chamber models with different compression ratio. With the limitations of the same boundary conditions, initial conditions and excess air system and other conditions, using AVL- FIRE fluid dynamics analysis software of different compression ratio to simulate engine compression and expansion process. The simulation results show that when the compression ratio is 12, the maximum flow velocity is the minimum in the cylinder at the ignition timing and creates favorable initial nucleus of a stable fire. Under the action of the strong squeezing flow the compression top dead point can generate the flow direction of the air flow to the spark plug which is favorable to the fire to spread away from the location of the spark plug. Compared the original machine with other machines, the engine which Compression ratio is 12 perform better.

【关键词】 压缩比; 数值模拟; AVL-FIRE; 流场; 影响;
【Key words】 compression ratio; numerical simulation; AVL-FIRE; flow field; influence;
【基金】 贵州大学研究生创新基金项目(2014022);贵阳市科技计划项目(2011101-1-27);面向智能装备领域的“技术众筹”研究生创新基地项目(CXJD-2015-003)
  • 【文献出处】 可再生能源 ,Renewable Energy Resources , 编辑部邮箱 ,2016年08期
  • 【分类号】U464.174
  • 【被引频次】2
  • 【下载频次】104
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