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A comparison of the effects of additives on spark-ignited combustion in a laminar flow system and in an engine under cold-start conditions

机译:添加剂对光起动系统和冷启动条件下发动机中火花点火燃烧对火花点火燃烧的影响的比较

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Experiments have been conducted in a laminar flow system and in a research engine to investigate the effect of additives on the combustion of gasoline-like fuels. The purpose of the laminar system is to enable rapid screening of additives to determine which, if any, have an enhancing effect on the early stages of combustion, especially under conditions of poor fuel vaporization which exist during cold-start in a spark-ignited engine and which make flame propagation difficult to start and sustain. The base fuel used in the laminar and engine systems was a 9-component mixture formulated to simulate those components of gasoline expected to be present in the vapor phase in the intake system of an engine under cold-start conditions. In the laminar system, the pre-mixed, pre-vaporized fuel-air mixture is ignited and a time history of the combustion generated, hydroxyl radical chemiluminescence is recorded. Data were collected and analyzed for at least 30 ignition events for three fuel mixtures in a semi-automated process. In experiments with the base fuel, the laminar apparatus was shown to be capable of resolving equivalence ratio differences of 0.01 as a result of the chemiluminescence emission variation with equivalence ratio. In experiments with the base fuel and base fuel-additive mixtures, enhanced chemiluminescence from a mixture containing an additive is considered a predictor of enhanced cold-start performance in the engine. To test this prediction, tests were then made in a DaimlerChrysler V-6 engine modified for single-cylinder operation. In each engine test, instrumentation allows measurement and recording of various temperatures, cylinder pressure, crank angle position, and exhaust unburned hydrocarbons for the first 200 cycles of operation. Ten such tests for each fuel were performed. By comparing performance results from tests with and without the additive in the fuel, its effects on the combustion process and on cyclic variability are determined.
机译:实验已经在层流系统和研究发动机中进行,以研究添加剂对汽油状燃料燃烧的影响。层层系统的目的是能够快速筛选添加剂,以确定哪些对燃烧早期阶段的增强作用,尤其是在火花点火发动机冷启动期间存在于燃料蒸发的差的条件下它使火焰传播难以启动和维持。层状和发动机系统中使用的基础燃料是配制的9组分混合物,以模拟在冷启动条件下发动机的进气系统中的汽油中的那些成分存在于蒸汽相中。在层状系统中,被点燃的预混合预汽化的燃料 - 空气混合物,并记录产生羟基的燃烧的时间历史。在半自动过程中收集并分析了三种燃料混合物的至少30个点火事件。在用基础燃料的实验中,由于具有对等当量比的化学发光发射变化,层状装置能够解决0.01的等效比差。在基础燃料和基础燃料添加剂混合物的实验中,来自含有添加剂的混合物的增强化学发光被认为是发动机中增强的冷启动性能的预测因子。为了测试这种预测,然后在修改单缸操作的戴姆勒克莱斯勒V-6发动机中进行测试。在每个发动机测试中,仪器允许为前200个循环的操作进行测量和记录各种温度,缸压力,曲柄角度位置和排气未燃烧的烃。进行了每次燃料的十种这样的测试。通过将性能从燃料中的燃料中与添加剂进行比较,确定其对燃烧过程和环状变异性的影响。

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