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THREE-DIMENSIONAL NUMERICAL SIMULATION OF WIND-INDUCED CIRCULATION IN LAKE TAIHU

机译:太湖风诱导环流的三维数值模拟

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A three-dimensional (3-D) numerical circulation model for shallow-lake is presented and described in detail in this paper, which employs model-splitting technique in order to calculate water level, mean-depth velocities and horizontal and vertical velocities at different depth simultaneously. The results show the current circulation pattern features four eddies with two clockwise and two anticlockwise induced by prevailing wind. Opposite wind field will lead to opposite current pattern with phase shifted by 180° The surface convergence zone is located in the upwind area and the surface divergence part in the downwind region, This results in drastic vertical movement in the two zones and the return currents at the bottom with phase shifted by 180° from the surface current vectors. Thus the water level decreases significantly at the leeward side and increases quickly at the windward part. Verification and calibration for the model were made based on the water-level and current data observed during the 9711 Storm in Lake Taihu. The predicted results are in satisfactory agreement with the observed data, which raises the possibility that this model can be used to decide the bottom current stress for sediment resuspension and also to simulate sediment transportation. It can provide a fundamental tool to study the nutrient release from bottom sediment in Lake Taihu.
机译:提出并详细描述了一个三维(3-D)浅湖数值环流模型,该模型采用模型分解技术来计算不同位置的水位,平均深度速度以及水平和垂直速度深度同时。结果表明,当前的环流模式具有四个涡流,其中两个涡流由盛行风诱导产生两个顺时针方向和两个逆时针方向。相反的风场将导致相反的电流模式,相移了180°。表面会聚区位于上风区,而表面发散区位于顺风区,这将导致两个区的垂直运动剧烈,并且返回电流为底部与表面电流向量的相位相差180°。因此,水位在下风侧显着下降,在上风侧迅速上升。该模型的验证和校准是根据太湖9711暴风雨期间观测到的水位和当前数据进行的。预测结果与实测数据吻合良好,这增加了该模型可用于确定沉积物再悬浮的底流应力并模拟沉积物运输的可能性。它可以为研究太湖底部沉积物的养分释放提供基础工具。

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