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Digital Aeroacoustics Design Method of Climate Systems for Improved Cabin Comfort

机译:用于改进机舱舒适性的气候系统数字气流系统设计方法

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Over the past decades, interior noise from wind noise or engine noise have been significantly reduced by leveraging improvements of both the overall vehicle design and of sound package. Consequently, noise sources originating from HVAC systems (Heat Ventilation and Air Conditioning), fans or exhaust systems are becoming more relevant for perceived quality and passenger comfort. This study focuses on HVAC systems and discusses a Flow-Induced Noise Detection Contributions (FIND Contributions) numerical method enabling the identification of the flow-induced noise sources inside and around HVAC systems. This methodology is based on the post-processing of unsteady flow results obtained using Lattice Boltzmann based Method (LBM) Computational Fluid Dynamics (CFD) simulations combined with LBM-simulated Acoustic Transfer Functions (ATF) between the position of the sources inside the system and the passenger’s ears. It provides an approximation of the contribution of each noise source to the passenger’s ear locations. By identifying and quantifying noise sources, this method guides engineers at treating the main sources in confined systems, usually a daunting task experimentally. In a first part, the accuracy of this numerical approach is investigated by comparing predicted aeroacoustics results to measured data: in a first step for a simple lateral duct with vent; in a second step for a HVAC unit in fresh air ventilation mode. In a second part, the Flow-Induced Noise Detection Contributions method is used to highlight the location and intensity of the various noise sources for the different operating conditions. In the third and last part, limited modifications are made to the HVAC system geometry within design constraints, and LBM simulations are performed on the modified design to numerically assess the reduction of the noise levels.
机译:在过去的几十年中,通过利用整体车辆设计和声音包装的改善,已经显着降低了风噪声或发动机噪声的内部噪声。因此,源自HVAC系统(热通风和空调),风扇或排气系统的噪声来源对于感知质量和乘客舒适性变得更加相关。本研究重点介绍了HVAC系统,并讨论了流动引起的噪声检测贡献(查找贡献)数值方法,其能够识别HVAC系统内外的流动噪声源。该方法基于使用基于格子Boltzmann的方法(LBM)计算流体动力学(CFD)模拟获得的非定常流量结果的后处理与系统内部源的位置之间的LBM模拟声学传递函数(ATF)组合乘客的耳朵。它提供了每个噪声源对乘客耳位置的贡献的近似值。通过识别和量化噪声源,这种方法指导工程师在狭窄系统中处理主要来源,通常是一项实验的令人生畏的任务。在第一部分中,通过将预测的航空声结果与测量数据进行比较来研究这种数值方法的准确性:在具有通风口的简单横向管道的第一步中;在新鲜空气通气模式下的HVAC单元的第二步中。在第二部分中,流动引起的噪声检测贡献方法用于突出各种噪声源的位置和强度,用于不同的操作条件。在第三个和最后一部分中,对设计约束中的HVAC系统几何形状进行有限的修改,并且在改进的设计上执行LBM仿真以在数值上评估噪声水平的降低。

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