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Numerical study of plume emission from an elevated line source in a wall-bounded flow

机译:壁限流升高线源羽流发射的数值研究

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Purpose - This paper aims to study turbulent dispersion of a passive plume emitting from a single elevated line source of different elevations in a plane channel flow by using direct numerical simulation (DNS). Design/methodology/approach - The investigation was conducted in both physical and spectral spaces, which includes an analysis of statistical moments and pre-multiplied spectra of the velocity and concentration fields. The pre-multiplied power spectra of the velocity and concentration fields are compared to identify the transition of the plume development from the turbulent convective stage to the turbulent diffusive stage. Findings - It is observed that due to the presence of wall shear, the mean plume drifts toward the wall for the near-wall source release case. It is also observed that streamwise development of the plume is sensitive to both the source elevation and the downstream distance from the source. For the line source placed near the center of the channel, the plume development is dominated by the bulk meandering effects. However, for the plume emitting from the near-wall line source, it hits the ground soon after its release and becomes dominated by the wall shear. As the downstream distance from the line source increases, the streamwise development of the plume released from the near-wall line source transitions from a turbulent convective stage to a turbulent diffusive stage. Originality/value - This paper represents an original DNS study of turbulent mixing and dispersion of a passive plume emitting from a line source of different elevations in a wall-bounded flow. This paper proposes a practical method to identify the transition of the plume development from the turbulent convective to the turbulent diffusive stages.
机译:目的 - 本文旨在通过使用直接数值模拟(DNS)在平面通道流中从单个升高的线源发出的被动羽流的湍流分散。设计/方法/方法 - 在物理和光谱空间中进行调查,其包括对速度和浓度场的统计矩和预乘以光谱的分析。比较速度和浓度场的预乘以功率光谱,以识别羽流发育从湍流对流阶段到湍流扩散阶段的转变。结果 - 观察到,由于存在墙面剪切,平均羽流朝向墙壁源释放壳体漂移。还观察到,羽流的流动发展对源极高和距离源的下游距离敏感。对于放置在频道中心附近的线源,羽流的开发是由散装蜿蜒效应的主导。然而,对于从近壁线源发射的羽流,释放后很快就会击中地面,并且由墙壁剪切占主导地位。随着距线源的下游距离增加,羽流的流动从近壁线源从湍流对流阶段转换到湍流扩散阶段。原创性/值 - 本文代表了从壁限流的不同凸起的线源发射的湍流混合和湍流混合和分散的原始DNS研究。本文提出了一种实用的方法,识别血管发育从湍流对流转变为湍流扩散阶段的过渡。

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