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Optimization of an Air Intake System to Reduce Multiple Whoosh Noises from an Engine

机译:进气系统的优化,以减少发动机的多个Whoosh噪声

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The direct injection common rail technology coupled with variable geometry turbocharger on the modern diesel engine has improved the diesel engine performance (power and torque) greatly as compared to the conventional diesel engine. Diesel engine performance is greatly dependent on the abundant air availability. And it is facilitated by Variable Geometry Turbocharger (VGT) in modern engines. The engines with variable geometry turbocharger offer quick response to the demand in various driving conditions especially in transient driving conditions. During transient driving conditions, the air intake system experiences a rapid air flow pressure and velocity changes. The pressure differentials across air intake system during transient events allow flow direction changes in the system. This kind of phenomenon generates unusual "Multiple Whoosh" noises in the air intake system of the sport utility vehicle engine. The 'whoosh' noise was kind of a noise generated when pressurized air suddenly rushes through a narrow passage. Two to three peaks of such noises were experienced in a very short span of time. The work presented here describes the approach to reduce multiple whoosh noises from the air intake system of an engine. The engine hardware changes and fine tuning could bring multiple whoosh noises to an acceptable limit.
机译:与现代柴油发动机上的可变几何涡轮增压器相结合的直喷式公共轨道技术,与传统的柴油发动机相比,柴油发动机性能(功率和扭矩)大大提高。柴油发动机性能大大依赖于丰富的空气可用性。它是通过现代发动机的可变几何涡轮增压器(VGT)而促进。具有可变几何涡轮增压器的发动机可快速响应各种驾驶条件的需求,特别是在瞬态驾驶条件下。在瞬态驾驶条件期间,进气系统经历快速的空气流量和速度变化。在瞬态事件期间跨进气系统的压差允许系统中的流动方向变化。这种现象在运动型多功能车辆发动机的进气系统中产生了不寻常的“多个WHOOSH”噪声。当加压空气突然穿过狭窄的通道时,“嗖嗖的噪音”是一种噪音。在非常短的时间内经历了两到三个这样的噪音。此处提出的工作描述了从发动机的进气系统减少多个Whoosh噪声的方法。发动机硬件变化和微调可以将多个Whoosh噪声带来可接受的极限。

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