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Intake Manifold Primary Trumpet Tuning Options for Fuel Flow Limited High Performance I.C.E.

机译:进气歧管初级小号调整燃料流量有限公司高性能I.C.E.

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The 2014 change in Formula One regulations, from naturally aspirated to highly-downsized and heavily-boosted hybridized power units, led to a relevant increase of the internal combustion engine brake specific power output in comparison with former V-8 units. The newly designed “down-sized” engines are characterized by a fuel flow limitation and a relevant increase in the thermal loads acting on the engine components, in particular on those facing the combustion chamber. Furthermore, efficiency becomes an equivalent paradigm as performance. In the power unit layout, the air path is defined by the compressor, the intercooler and the piping from the intake plenum to the cylinder. Intake duct length is defined from intake plenum to valve seat and it is a key parameter for engine performance. In order to find the optimum length different design criteria can be applied: the so called “tuning”, the “un-tuning” or the “anti-tuning” are all valid possibilities, showing pros and cons. The scope of the paper is to study and present the possible different tuning options for the internal combustion engine (ICE) part of a hybrid F1 powertrain. From 2015, variable trumpet can be used: the continuous variable length may be used to optimize volumetric efficiency and furthermore to reduce knocking and improve combustion accordingly. The scope of the paper is to show and qualitatively compare all the different options for a hybrid powertrain with fuel flow limited combustion unit.
机译:在一级方程式赛车赛事规则2014年的变化,从自然吸气到高度小型化和重提高杂交动力单元,导致内燃机制动比功率输出与前V-8个单位比较相关的增加。新设计的“尺寸减小的”发动机通过燃料流量限制和相关增加的热负荷作用于发动机部件,尤其是在那些面对燃烧室表征。此外,效率变得等效范例表现。在动力单元布局中,空气通道由所述压缩机,所述中间冷却器和从进气充气室到气缸的管道限定。进气管长度是从进气充气室向阀座定义,它是用于发动机性能的关键参数。为了找到最佳长度不同的设计标准可应用于:所谓的“调谐”中,“未调谐”或“抗调谐”都是有效的可能性,显示出的优点和缺点。本文的范围是研究和呈现可能的不同的优化选项为内燃机(ICE)的混合动力传动系的F1的一部分。从2015年起,可变小号可用于:连续可变长度可以被用于优化容积效率进而减少爆震,并相应地改善燃烧。本文的范围是显示和定性比较用于与燃料流燃烧的限制单元中的混合动力传动系的所有的不同选项。

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