首页> 外文会议>International Congress on Sound and Vibration >A NEW ADAPTIVE ORDER FEM APPROACH, FEM AO, FOR VIBRO-ACOUSTIC PROBLEMS: A REPORT ON ITS ACCURACY AND TIME PERFORMANCE IN PREDICTING ACOUSTIC TRANSFER FUNCTIONS FOR AN ENGINE IN ENGINE BAY MOCKUP
【24h】

A NEW ADAPTIVE ORDER FEM APPROACH, FEM AO, FOR VIBRO-ACOUSTIC PROBLEMS: A REPORT ON ITS ACCURACY AND TIME PERFORMANCE IN PREDICTING ACOUSTIC TRANSFER FUNCTIONS FOR AN ENGINE IN ENGINE BAY MOCKUP

机译:一种新的自适应命令FEM方法,FEM AO,用于振动声学问题:关于其准确性和时间性能的报告,其在发动机湾样机中预测发动机的声学传递函数

获取原文

摘要

As legislation for automotive pass-by noise is becoming more stringent, the industry looks to further optimize the engine and engine bay to reach the quietest design. It is clear that engineering insight is crucial to achieve quiet solutions as early as possible in the design process. This explains the interest in using simulations to help making the right design decisions before any prototype is made. Moreover, recently a couple of advances have been made in modeling and solver technologies for predicting engine radiated noise, not only in free condition but also in installed condition, i.e. the engine in the engine bay. For the latter, advanced methods are required to obtain results in a reasonable amount of time, thus allowing for examining multiple sound proofing design layouts. This is challenging because the models for such exterior acoustic application are rather large, as they need to represent the engine bay part of the vehicle or even the full vehicle and cover a broad frequency range up to 4 or 5 kHz (for PBN). This paper will discuss on Finite Element Method (FEM) and Boundary Element Method (BEM) acoustic technologies available to predict exterior Acoustic Transfer Functions (ATFs) for a mock-up model of an engine installed in the engine bay. The focus will be on a recently developed FEM method, FEM AO (FEM Adaptive order). In a first series of models, the mock-up's panels are assumed to be rigid and the acoustic treatments are represented by frequency dependent surface impedances. In a second step, the flexibility of the mock-up's plywood panels is included to assess its influence on the acoustic transfer functions.
机译:由于汽车通过噪音的立法变得更加严格,该行业希望进一步优化发动机和发动机湾达到最安静的设计。很明显,在设计过程中尽早尽早实现安静的解决方案是至关重要的。这解释了利用模拟,以帮助在任何原型之前做出正确的设计决策。此外,最近在建模和求解技术方面已经进行了几个进步,用于预测发动机辐射噪声,不仅是自由条件,而且还在安装条件下,即发动机舱中的发动机。对于后者,需要先进的方法在合理的时间内获得结果,从而允许检查多种声音打样设计布局。这是具有挑战性的,因为这种外部声学应用的模型相当大,因为它们需要代表车辆的发动机舱部或甚至全车辆,并且覆盖高达4或5kHz的宽频率范围(用于PBN)。本文将在有限元方法(FEM)和边界元方法(BEM)上讨论用于预测发动机托架中的发动机的模型模型的外部声学传递函数(ATF)。重点将是最近开发的有限元方法,有限元的FEM AO(FEM自适应顺序)。在第一系列模型中,假设模拟的面板是刚性的,并且声学处理由频率依赖性表面阻抗表示。在第二步中,包括模拟的胶合板面板的灵活性,以评估其对声学转移功能的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号