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Studies on the Application of Steady State Assumption in 1DV Model for the Estimation of Settling Velocity of Suspended Sediments in a Shallow Estuary

机译:1DV模型稳态假设在浅滩沉积沉积物沉降速度估算中的应用研究

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Settling velocity is one of the important parameters in sediment transport modeling of estuaries. The methods adopted for its determination vary from theoretical equations to experimental methods. The theoretical equation generally adopted in the 1DV model include assumptions in order to simplify the solution. It is generally assumed that either the condition is steady or the vertical diffusion is negligible. This study evaluated the relative importance of the two assumptions made for the estimation of settling velocity. Two approaches were adopted: unsteady and negligible vertical diffusion (NS-NVD) and steady with vertical diffusion (S-VD) to estimate the settling velocity. The Muthupet Estuary in the Coromandal coast of India was selected for the study. The S-VD approach estimated settling velocity fairly well at the two locations with appreciable vertical diffusion. The NS-NVD approach was observed to be superior for estimating settling velocity at shallow reaches of the estuary having low flow velocity. The calculated settling velocity was further applied in 1DV model to predict the suspended sediment concentration. The S-VD approach predicted suspended sediment concentration at those locations with appreciable vertical diffusion with an R-2 value of 0.82 against 0.67 for the NS-NVD approach. At the other shallow reach of the estuary with low flow velocity, the NS-NVD approach gave an R-2 value of 0.822 against 0.71 for the S-VD approach. The vertical diffusion was observed to play a secondary role at those locations which are shallow with a water depth of 0.6 m and with a low flow velocity of the order of 0.01 m/s. The study demonstrated that localized hydrodynamic conditions influence the method adopted for the estimation of settling velocity.
机译:沉降速度是河口沉积物运输建模中的重要参数之一。其测定采用的方法因实验方法而异。在1DV模型中通常采用的理论方程包括假设,以简化解决方案。通常假设条件稳定或垂直扩散可忽略不计。本研究评估了对沉降速度估计的两个假设的相对重要性。采用两种方法:不稳定,可忽略不计的垂直扩散(NS-NVD),垂直扩散(S-VD)稳定以估计沉降速度。在印度科美兰德海岸的Muthupet河口被选中为这项研究。 S-VD在具有明显的垂直扩散的两个位置估计稳定稳定的速度。观察到NS-NVD方法优于估计浅到河口的沉降速度,其浅距离具有低流速。计算的沉降速度进一步应用于1dV模型以预测悬浮的沉积物浓度。 S-VD方法在具有可观的垂直扩散的那些位置预测悬浮沉积物浓度,其R-2值为0.82,用于NS-NVD方法。在河口的其他浅景点,具有低流速的河口,对于S-VD方法,NS-NVD方法将R-2值为0.822。观察到垂直扩散在那些浅的地方发挥次要作用,其水深为0.6μm,具有0.01m / s的低流速。该研究表明,局部流体动力学条件影响沉降速度估计所采用的方法。

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