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Modeling and Analysis of Powertrain NVH with Focus on Growl Noise

机译:动力总成NVH的建模与分析,重点是咆哮噪声

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Superior NVH performance is a key focus in the development of new powertrains. In recent years, computer simulations have gained an increasing role in the design, development, and optimization of powertrain NVH at component and system levels. This paper presents the results of a study carried out on a 4-cylinder in-line spark-ignition engine with focus on growl noise. Growl is a low frequency noise (300-700 Hz) which is primarily perceived at moderate engine speeds (2000-3000 rpm) and light to moderate throttle tip-ins. For this purpose, a coupled and fully flexible multi-body dynamics model of the powertrain was developed. Structural components were reduced using component mode synthesis and used to determine dynamics loads at various engine speeds and loading conditions. A comparative NVH assessment of various crankshaft designs, engine configurations, and in-cylinder gas pressures was carried out. The main results include the crankshaft front-end and rear-end vibrations, bearing caps accelerations spectrum, and structure surface velocity levels in octave and 3 rd octave bands. The correlation with experimental data was used to validate the analytical model. The analysis shows that a stiffer crankshaft results in a reduction of forced excitation transmitted to the bottom-end structure. The bearing beam stiffener also reduces bearing cap accelerations significantly. Both structural enhancements result in dramatically reduced growl noise.
机译:优越的NVH性能是开发新动力的关键。近年来,计算机模拟在组件和系统级别的动力总成NVH的设计,开发和优化中取得了越来越大的作用。本文介绍了在4缸在线火花点火发动机上进行的研究结果,重点是咆哮的噪音。 Growl是一种低频噪声(300-700Hz),主要以适度的发动机速度(2000-3000rpm)和灯光为适度的油门灌输。为此目的,开发了动力系的耦合和完全灵活的多体动力学模型。使用组分模式合成减少了结构组分,并用于确定各种发动机速度和装载条件的动态负载。进行了各种曲轴设计,发动机配置和缸内气体压力的比较NVH评估。主要结果包括曲轴前端和后端振动,轴承盖加速度谱,八波和3个RD八波段的结构表面速度水平。使用实验数据的相关性用于验证分析模型。该分析表明,变硬的曲轴导致减少传递到底端结构的强制激发。轴承束加强件也显着减少了轴承盖加速度。两个结构增强都会导致大大减少咆哮的噪音。

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