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首页> 外文期刊>Energy Conversion & Management >Emissions and performance with diesel and waste lubricating oil: A fundamental study into cold start operation with a special focus on particle number size distribution
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Emissions and performance with diesel and waste lubricating oil: A fundamental study into cold start operation with a special focus on particle number size distribution

机译:柴油和废润滑油的排放和性能:冷启动操作的基础研究,特别关注颗粒数大小分布

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摘要

This study investigates the effect of engine temperature during cold start and hot start engine operation on particulate matter emissions and engine performance parameters. In addition to a fundamental study on cold start operation and the effect of lubricating oil during combustion, this research introduces important knowledge about regulated particulate number emissions and particulate size distribution during cold start, which is an emerging area in the literature. A further aspect of this work is to introduce waste lubricating oil as a fuel. By using diesel and two blends of diesel with 1 and 5% waste lubricating oil in a 6-cylinder turbocharged engine on a cold start custom test, this investigation studied particle number (PN), friction losses and combustion instability with diesel and waste lubricating oil fuel blends. In order to understand and explain the results the following were also studied: particle size distribution and median diameter, engine oil, coolant and exhaust gas temperatures, start of injection, friction mean effective pressure (FMEP), mechanical efficiency, coefficient of variation (CoV) of engine speed, CoV of indicated mean effective pressure (IMEP) and maximum rate of pressure rise were also studied. The results showed that during cold start the increase in engine temperature was associated with an increase in PN and size of particles, and a decrease in FMEP and maximum rate of pressure rise. Compared to a warmed up engine, during cold start, PN, start of injection and mechanical efficiency were lower; while FMEP, CoV of IMEP and maximum rate of pressure rise were higher. Adding 5% waste lubricating oil to the fuel was associated with a decrease in PN (during cold start), decreased particle size, maximum rate of pressure rise and CoV of IMEP and was associated with an increase in PN and nucleation mode particles (during hot start) and FMEP.
机译:这项研究调查了发动机温度在冷启动和热启动发动机运行期间对颗粒物排放和发动机性能参数的影响。除了对冷启动操作和燃烧过程中润滑油的影响进行基础研究之外,本研究还介绍了有关冷启动期间调节的颗粒数量排放和颗粒尺寸分布的重要知识,这在文献中是一个新兴领域。这项工作的另一方面是引入废润滑油作为燃料。通过在6缸涡轮增压发动机的冷启动定制测试中使用柴油和两种柴油与1%和5%废润滑油的混合气,本研究研究了柴油和废润滑油的颗粒数(PN),摩擦损失和燃烧不稳定性混合燃料。为了理解和解释结果,还对以下内容进行了研究:粒度分布和中值直径,机油,冷却液和废气温度,喷射开始,摩擦平均有效压力(FMEP),机械效率,变异系数(CoV)还研究了发动机转速,指示平均有效压力(IMEP)的CoV和最大压力上升率。结果表明,在冷启动过程中,发动机温度的升高与PN和颗粒尺寸的增加,FMEP的降低以及最大压力升高速率有关。与暖机相比,冷启动时的PN,喷射启动和机械效率要低。 FMEP,IMEP的CoV和最大压力上升率较高。向燃料中添加5%的废润滑油与PN的减少(冷启动期间),减小的粒度,IMEP的最大压力上升速率和CoV关联,并且与PN和成核模式粒子的增加(热过程中)相关开始)和FMEP。

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