首页> 外文会议>2002 Spring Technical Conference of the ASME Internal Combustion Engine Division, Apr 14-17, 2002, Rockford, Illinois >SUPERSONIC INJECTION OF GASEOUS FUEL DESCRIBED AS POSSIBLE SOLUTION FOR NOX EMISSIONS FROM LARGE-BORE GAS ENGINES
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SUPERSONIC INJECTION OF GASEOUS FUEL DESCRIBED AS POSSIBLE SOLUTION FOR NOX EMISSIONS FROM LARGE-BORE GAS ENGINES

机译:超声喷射气态燃料作为大口径天然气发动机NOx排放的可能解决方案

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摘要

Both physical and mathematical models were built to describe the main processes in large-bore gas engines. Based on the detail modeling and analysis of cylinder airflow, fuel injection, mixing, combustion and NOx generation, it was possible to pinpoint the problem of abnormal NOx production, even for lean mixtures, that occurs in these engines. In addition, analysis of the experimental data of jet mixing using highspeed photographic evidence, as well as engine performance data, has helped in the understanding of the mixing process. This has resulted in the development of a new way of the mixing of fuel and air utilizing multiple-nozzle supersonic injection. The fuel injection system is designed to optimize the mixing of the methane fuel with the air in the cylinder of a large bore natural gas engine. The design goals of low-pressure (<130 psi), all-electronic valve actuation, and optimal mixing were all achieved with a unique valveozzle arrangement. Later, a laser induced fluorescence method was used to take high-speed photographs of the development of the fuel jet exiting the newly developed supersonic electronic fuel injector (SSEFI). This result, together with the results of numerous experimental testing of SSEFI on different engines (GMVH-6, GMW-10, V-250, UTC-165) are presented as evidence of the success of the SSEFI application for the improvement of engine performance, engine control and NOx reduction.
机译:建立了物理模型和数学模型来描述大口径燃气发动机的主要过程。基于对气缸气流,燃料喷射,混合,燃烧和NOx生成的详细建模和分析,有可能查明这些发动机中发生的NOx异常生成问题,即使是稀混合气也是如此。此外,使用高速摄影证据对喷射混合的实验数据以及发动机性能数据进行分析,有助于理解混合过程。这导致开发了利用多喷嘴超音速喷射的燃料和空气混合的新方法。燃油喷射系统旨在优化甲烷燃料与大口径天然气发动机气缸内空气的混合。低压(<130 psi),全电子阀致动和最佳混合的设计目标均通过独特的阀/喷嘴布置实现。后来,激光诱导荧光方法被用于拍摄从新开发的超音速电子燃油喷射器(SSEFI)出来的燃油射流的发展的高速照片。该结果以及在不同发动机(GMVH-6,GMW-10,V-250,UTC-165)上进行的SSEFI的大量实验测试的结果,被证明是SSEFI应用成功提高发动机性能的证据。 ,发动机控制和NOx还原。

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