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直5与V6
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作者 柯文 《汽车维修》 1995年第6期29-29,共1页
在旧日的汽车机械理论中,发动机的气缸数目必定要是双数,主要原因是关系到点火时间的分配,和曲轴转动发挥扭矩的平均性等问题。故此,4气缸是很好的设计,对容积大的发动机而言,4气缸会形成大直径与长冲程,又会产生爆发力与稳定性方面的... 在旧日的汽车机械理论中,发动机的气缸数目必定要是双数,主要原因是关系到点火时间的分配,和曲轴转动发挥扭矩的平均性等问题。故此,4气缸是很好的设计,对容积大的发动机而言,4气缸会形成大直径与长冲程,又会产生爆发力与稳定性方面的困难。解决方法是增加气缸数目,以6或8作为进一步提升的级数,然而气缸太多,列式设计会造成发动机本体过长,不利车身外形的改变。 展开更多
关键词 发动机容积 气缸设计 V型发动机 解决方法 气缸数 车身外形 点火时间 前轮驱动 曲轴转动 长冲程
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猛虎战野狼——宝马M3比本田NSX-T
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作者 杨光 《交通世界》 1997年第4期21-22,共2页
宝马M3和本田NSX-T之间没有什么相似之处,宝马M3是双门四座桥车,NSX是双门双座跑车;M3身高1.35米,NSX只有1.2米高;M3的直列式6缸发动机排气量3.2升,安装在车的前部,输出功率321马力,而NSX的中置式V6发动机只有3升,功率仅274马力;M3在市... 宝马M3和本田NSX-T之间没有什么相似之处,宝马M3是双门四座桥车,NSX是双门双座跑车;M3身高1.35米,NSX只有1.2米高;M3的直列式6缸发动机排气量3.2升,安装在车的前部,输出功率321马力,而NSX的中置式V6发动机只有3升,功率仅274马力;M3在市场上只需5.6万美元就可以买一辆,而NSX的价格要贵上近一倍,11万美元一辆。除了以上特点外,两款车还有许多不同的地方,把它们扯在一起似乎有点荒唐。 展开更多
关键词 发动机设计 野狼 V6发动机 输出功率 差动器 发动机 变速器 发动机容积 本田 中置式
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Semi-empirical modeling of volumetric efficiency in engines equipped with variable valve timing system 被引量:1
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作者 Mostafa Ghajar Amir Hasan Ka Kaee Behrooz Mashadi 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第12期3132-3142,共11页
Volumetric efficiency and air charge estimation is one of the most demanding tasks in control of today's internal combustion engines.Specifically,using three-way catalytic converter involves strict control of the ... Volumetric efficiency and air charge estimation is one of the most demanding tasks in control of today's internal combustion engines.Specifically,using three-way catalytic converter involves strict control of the air/fuel ratio around the stoichiometric point and hence requires an accurate model for air charge estimation.However,high degrees of complexity and nonlinearity of the gas flow in the internal combustion engine make air charge estimation a challenging task.This is more obvious in engines with variable valve timing systems in which gas flow is more complex and depends on more functional variables.This results in models that are either quite empirical(such as look-up tables),not having interpretability and extrapolation capability,or physically based models which are not appropriate for onboard applications.Solving these problems,a novel semi-empirical model was proposed in this work which only needed engine speed,load,and valves timings for volumetric efficiency prediction.The accuracy and generalizability of the model is shown by its test on numerical and experimental data from three distinct engines.Normalized test errors are 0.0316,0.0152 and 0.24 for the three engines,respectively.Also the performance and complexity of the model were compared with neural networks as typical black box models.While the complexity of the model is less than half of the complexity of neural networks,and its computational cost is approximately 0.12 of that of neural networks and its prediction capability in the considered case studies is usually more.These results show the superiority of the proposed model over conventional black box models such as neural networks in terms of accuracy,generalizability and computational cost. 展开更多
关键词 engine modeling modeling and simulation spark ignition engine volumetric efficiency variable valve timing
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