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Titlebook: Knocking in Gasoline Engines; 5th International Co Michael Günther,Marc Sens Conference proceedings 2018 Springer International Publishing

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書(shū)目名稱(chēng)Knocking in Gasoline Engines
副標(biāo)題5th International Co
編輯Michael Günther,Marc Sens
視頻videohttp://file.papertrans.cn/544/543781/543781.mp4
概述Combustion process specialists, design engineers and application experts discuss approaches to prevent or reliably control knocking and other irregular combustion events.State-of-the-art contributions
圖書(shū)封面Titlebook: Knocking in Gasoline Engines; 5th International Co Michael Günther,Marc Sens Conference proceedings 2018 Springer International Publishing
描述The book includes the papers presented at the conference discussing approaches to prevent or reliably control knocking and other irregular combustion events. The majority of today’s highly efficient gasoline engines utilize downsizing. High mean pressures produce increased knocking, which frequently results in a reduction in the compression ratio at high specific powers. Beyond this, the phenomenon of pre-ignition has been linked to the rise in specific power in gasoline engines for many years. Charge-diluted concepts with high compression cause extreme knocking, potentially leading to catastrophic failure.. The introduction of RDE legislation this year will further grow the requirements for combustion process development, as residual gas scavenging and enrichment to improve the knock limit will be legally restricted despite no relaxation of the need to reach the main center of heat release as early as possible. New solutions in thermodynamics and control engineering are urgently needed to further increase the efficiency of gasoline engines..
出版日期Conference proceedings 2018
關(guān)鍵詞Conference Proceedings; Research; Applications; gasoline engines; combustion engine
版次1
doihttps://doi.org/10.1007/978-3-319-69760-4
isbn_softcover978-3-319-69759-8
isbn_ebook978-3-319-69760-4
copyrightSpringer International Publishing AG 2018
The information of publication is updating

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Approaches to Meeting Fluctuating Natural Gas Quality in Large Bore Engine Applications pilot) – leads to the problem of auto-ignition. The detection of knocking combustion is an important measure for the active prevention of engine damage. Different regimes during the combustion process result in a diversification of the cylinder pressure signal as well as the acceleration sensor sig
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Investigating the Cause of Initial Pre-ignition - A New Approachto develop in order to achieve this goal, a completely new test bed with a constant volume combustion cell as the centerpiece has been developed..While maintaining characteristic thermodynamic conditions for a modern boosted gasoline engine, the interaction of the in-cylinder flow and the detachment
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Optical Diagnostic Tools for Detection and Evaluation of Glow Ignitionstical access via the spark plug is presented. In addition, the use of infrared measurement technologies is discussed to enable a thermography of the combustion chamber surfaces..It is explained how these analysis tools can be used for the detection of auto ignitions. Furthermore, the application lim
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Chemical Analysis of Potential Initiating Fluid for Low-Speed Pre-ignitionires that some characteristics of the crevice fluid are altered from the original fluids..To investigate this aspect of LSPI, a rapid-acting sampling valve was developed to permit sampling of the fluid in the piston crevice while avoiding sampling of cylinder contents when the piston crevice was not
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Development of a Model for Predicting the Knock Boundary in Consideration of Cooled Exhaust Gas Recicould be advanced by up to 9° CA with the addition of EGR leading to a four percenter higher indicated efficiency. The influence of catalytically treated exhaust gas was examined as well. At high EGR rates of 25% catalytically treated exhaust gas allowed a 2° CA earlier center of combustion. Further
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