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Catalyst and DPF Acoustic Transmission Loss Benchmark Study

机译:催化剂和DPF声学传输损失基准研究

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The ability to accurately predict exhaust system acoustics, including transmission loss (TL) and tailpipe noise, based on CAD geometry has long been a requirement of most OEM’s and Tier 1 exhaust suppliers. Correlation to measurement data has been problematic under various operating conditions, including flow. This study was undertaken to develop robust modelling technique, ensuring sensible correlation between the 1-D models and test data. Ford use Ricardo WAVE as one of their 1-D NVH tools, which was chosen for the purpose of this benchmark study. The most commonly used metrics for evaluating the acoustical performance of mufflers are insertion loss (IL), TL, and noise reduction (NR). TL is often the first step of analysis, since it represents the inherent capability of the muffler to attenuate sound if both the source and termination are assumed to be anechoic. It can also be reliably measured and numerically simulated without having to connect to an engine. For the purpose of software validation, TL benchmarking should be the first step. This study focused around two key exhaust components: Catalysts and Diesel Particulate Filter (DPF), with TL measurements collected for validation purposes. These measurements were compared to simulation data to validate Ricardo WAVE models that directly reflected the test set up. Differences were identified, and model sensitivities studies conducted resulting in revised modeling recommendations for CAT’s and DPF’s. This resulted in more accurate modelling of TL before any hardware is procured.
机译:基于CAD几何体的准确预测排气系统声学的能力,包括传输损耗(TL)和尾管噪声,这一直是大多数OEM和1级排气供应商的要求。在各种操作条件下,与测量数据的相关性存在问题,包括流量。本研究旨在开发强大的建模技术,确保1-D模型和测试数据之间的明智相关性。福特使用Ricardo Wave作为其1-D NVH工具之一,该工具是为该基准测试的目的而选择的。用于评估消声器的声学性能的最常用的度量是插入损耗(IL),TL和降噪(NR)。 TL通常是分析的第一步,因为它代表了消声器的固有能力,如果假设源和终端都被假定为AneChoice则会衰减声音。也可以可靠地测量和数值模拟而无需连接到发动机。出于软件验证的目的,TL基准应该是第一步。本研究重点围绕两个关键排气组分:催化剂和柴油颗粒过滤器(DPF),TL测量用于验证目的。将这些测量值与仿真数据进行比较,以验证直接反映测试设置的Ricardo波模型。鉴定了差异,并进行了模型敏感性研究,从而导致猫和DPF的修订建模建议。这导致采购任何硬件之前的TL更准确的建模。

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