首页> 外文会议>ASME Internal Combustion Engine Division technical conference >ASSESSING THE IMPACT OF THERMAL BARRIER COATINGS ON CHARGE TEMPERATURE STRATIFICATION WITHIN A HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINE
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ASSESSING THE IMPACT OF THERMAL BARRIER COATINGS ON CHARGE TEMPERATURE STRATIFICATION WITHIN A HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINE

机译:评估均质充压点火引擎中热障涂层对充注温度分层的影响

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The application of a Thermal Barrier Coating (TBC) to combustion chamber surfaces within a Low Temperature Combustion (LTC) engine alters conditions at the gas-wall boundary and affects the temperature field of the interior charge. Thin, low-conductivity, TBCs (~I50μm) exhibit elevated surface temperatures during late compression and expansion processes. This temperature 'swing' reduces gas-to-wall heat transfer during combustion and expansion, alters reaction rates in the wall affected zones, and improves thermal efficiency. In this paper, Thermal Stratification Analysis (TSA) is employed to quantify the impact of Thermal Barrier Coatings on the charge temperature distribution within a gasoline-fueled Homogeneous Charge Compression Ignition (HCCI) engine. Using an empirically derived ignition delay correlation for HCCI-relevant air-to-fuel ratios, an autoignition integral is tracked across multiple temperature 'zones'. Charge mass is assigned to each zone by referencing the Mass Fraction Burn (MFB) profile from the corresponding heat release analysis. Closed-cycle temperature distributions are generated for baseline (i.e., 'metal') and TBC-treated engine configurations. In general, the TBC-treated engine configurations are shown to maintain a higher percentage of charge mass at temperatures approximating the isentropic limit.
机译:将热障涂层(TBC)应用于低温燃烧(LTC)发动机内的燃烧室表面会改变气壁边界处的条件,并影响内部装料的温度场。薄的,低电导率的TBC(〜I50μm)在后期压缩和膨胀过程中表现出较高的表面温度。温度的“波动”减少了燃烧和膨胀过程中气体与壁之间的热传递,改变了壁受影响区域的反应速率,并提高了热效率。在本文中,采用热分层分析(TSA)来量化热障涂层对汽油均质充气压缩点火(HCCI)发动机内充气温度分布的影响。使用根据经验得出的与HCCI相关的空燃比的点火延迟相关性,可以在多个温度“区域”内跟踪自燃积分。通过参考相应的放热分析中的质量分数燃烧(MFB)曲线,将装料质量分配给每个区域。针对基线(即“金属”)和经TBC处理的发动机配置生成闭环温度分布。通常,经TBC处理的发动机配置显示在接近等熵极限的温度下可保持较高百分比的装料质量。

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