首页> 外文会议>ASME Internal Combustion Engine Division technical conference >OPTIMIZATION OF ELECTRODE ARRANGEMENT AND PRECHAMBER GEOMETRY OF PASSIVE PRECHAMBER SPARK PLUGS FOR TURBOCHARGED GAS ENGINES WITH HIGH CHARGE MOTION
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OPTIMIZATION OF ELECTRODE ARRANGEMENT AND PRECHAMBER GEOMETRY OF PASSIVE PRECHAMBER SPARK PLUGS FOR TURBOCHARGED GAS ENGINES WITH HIGH CHARGE MOTION

机译:涡轮增压气体发动机无源腔室火花塞的电极布置和腔室几何形状的优化

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Turbocharged gas engines for combined heat and power units are optimized to increase efficiency while observing and maintaining legitimate exhaust gas emissions. In order to do so, the charge motion is raised. This study investigates the influence of passive prechamber spark plugs in high turbulent combustion chambers. The subjects of investigation are two different gas engine types, one of them running on sewage gas the other one on biogas. The occurring charge motions initiated by the cylinder heads are measured by integrative determination of swirl motion on a flow bench. In addition, three different passive prechamber spark plugs are characterized by a combustion analysis. Each of the three spark plugs comes with a different electrode or prechamber geometry. The resulting combustion and operating conditions are compared while the equal brake mean effective pressure and constant NO_x-emissions are sustained. The results of the combustion analysis show a rising influence of the spark plug with increasing air-to-fuel-ratio induced by charge motion. Furthermore, clear differences between the spark plugs are determined: electrode arrangement and prechamber geometry help to influence lean misfire limits, engine smoothness, start behavior and ignition delay. The results indicate the capability of spark plugs to increase lifetime and engine efficiency.
机译:对用于热电联产的涡轮增压燃气发动机进行了优化,以提高效率,同时遵守并保持合法的废气排放。为此,提高了充电运动。这项研究调查了高湍流燃烧室中被动式预燃室火花塞的影响。调查的对象是两种不同的燃气发动机类型,其中一种使用污水,另一种使用沼气。通过整体确定旋流台上的涡旋运动来测量由气缸盖引发的发生的充气运动。此外,通过燃烧分析对三种不同的被动式预燃室火花塞进行了表征。三个火花塞中的每一个都具有不同的电极或预燃室几何形状。比较产生的燃烧和工况,同时维持相等的制动平均有效压力和恒定的NO_x排放量。燃烧分析的结果表明,随着充气运动引起的空燃比的增加,火花塞的影响越来越大。此外,确定了火花塞之间的明显区别:电极布置和前室几何形状有助于影响稀薄失火极限,发动机平滑度,起动性能和点火延迟。结果表明火花塞具有增加使用寿命和发动机效率的能力。

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