首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Generation Mechanism and Prediction Model for Low Frequency Noise Induced by Energy Dissipating Submerged Jets during Flood Discharge from a High Dam
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Generation Mechanism and Prediction Model for Low Frequency Noise Induced by Energy Dissipating Submerged Jets during Flood Discharge from a High Dam

机译:消能式射流在高坝泄洪过程中引起的低频噪声产生机理及预测模型。

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摘要

As flood water is discharged from a high dam, low frequency (i.e., lower than 10 Hz) noise (LFN) associated with air pulsation is generated and propagated in the surrounding areas, causing environmental problems such as vibrations of windows and doors and discomfort of residents and construction workers. To study the generation mechanisms and key influencing factors of LFN induced by energy dissipation through submerged jets at a high dam, detailed prototype observations and analyses of LFN are conducted. The discharge flow field is simulated using a gas-liquid turbulent flow model, and the vorticity fluctuation characteristics are then analyzed. The mathematical model for the LFN intensity is developed based on vortex sound theory and a turbulent flow model, verified by prototype observations. The model results reveal that the vorticity fluctuation in strong shear layers around the high-velocity submerged jets is highly correlated with the on-site LFN, and the strong shear layers are the main regions of acoustic source for the LFN. In addition, the predicted and observed magnitudes of LFN intensity agree quite well. This is the first time that the LFN intensity has been shown to be able to be predicted quantitatively.
机译:当洪水从高坝上排出时,与空气脉动相关的低频(即低于10 Hz)噪音(LFN)在周围区域产生并传播,从而引起环境问题,例如门窗振动和通风不适。居民和建筑工人。为了研究高坝淹没射流能量耗散引起的LFN的产生机理和关键影响因素,对LFN进行了详细的原型观测和分析。使用气液湍流模型模拟了排气流场,然后分析了涡度波动特征。 LFN强度的数学模型是基于涡旋声理论和湍流模型开发的,并通过原型观测进行了验证。模型结果表明,高速淹没射流周围强剪切层的涡度波动与现场LFN高度相关,强剪切层是LFN声源的主要区域。此外,LFN强度的预测值和观测值非常吻合。这是首次证明可以定量预测LFN强度。

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