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SSFATE (Suspended Sediment FATE), a Model of Sediment Movement From Dredging Operations

机译:SSFate(悬浮沉积命运),疏浚作业沉积物运动模型

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SSFATE is designed to assist project managers defining temporal windows for dredging operations. Operational windows are intended to protect biological resources or their habitats, as requested during interagency coordination processes for dredging projects. SSFATE employs a shell-based approach consisting of a color graphics based, menu-driven user interface, GIS, environmental data management tools, gridding software, and interfaces to supply inputs and display outputs from the model. SSFATE runs on a personal computer. Data input/output is interactive and mainly graphics based. SSFATE can be set up to operate at any dredging operation site and includes a series of mapping/analysis tools to facilitate applications. Initial setup for new locations of dredging operations can normally be accomplished in a few hours, unless numerical hydrodynamic models are run to provide flow fields. A computational model predicts the transport, dispersion, and settling of suspended dredged material released to the water column as a result of dredging operations. User inputs enable definition of sediment source strength and the vertical distribution of sediments generated by the dredging operation. SSFATE requires a flow field for execution of the particle tracking computations. The flow field can be sketched in, using limited field data, or can be imported as output from a hydrodynamic model. The processes modeled are primarily far field processes in which the mean transport and turbulence associated with ambient currents dominate. A random walk particle model predicts transport and dispersion of suspended material. Animated model output includes both horizontal and vertical concentration contours of each or all sediment classes, time-series of suspended sediment concentrations at a particular point, spatial distribution of sediment deposited on the sea bottom, and tabular summaries of sediment in suspension, and deposited. The user interacts with the contoured data to obtain pertinent information such as a cross-sectional view along a transect, the distance to features from the sediment source, and the area covered by material that has been deposited on the bottom.
机译:SSFate旨在帮助为疏浚操作定义时间窗口的项目经理。根据疏浚项目的间歇性协调流程的要求,运营窗户旨在保护生物资源或其栖息地。 SSFate采用基于Shell的方法,包括基于彩色图形,菜单驱动的用户界面,GIS,环境数据管理工具,网格软件以及用于从模型提供输入和显示输出的接口。 SSFate在个人计算机上运行。数据输入/输出是交互式且主要是基于图形的。可以在任何疏浚操作站点设置SSFate,包括一系列映射/分析工具,以便于应用程序。除非运行数值流体动力学模型来提供流场,否则通常可以在几个小时内完成疏浚操作的新位置的初始设置。计算模型预测由于疏浚操作而导致释放到水柱的悬浮疏浚材料的运输,分散和沉降。用户输入使沉积物源强度的定义能够定义疏浚操作产生的沉积物的垂直分布。 SSFate需要一个用于执行粒子跟踪计算的流场。流场可以使用有限的现场数据绘制在,或者可以从流体动力学模型的输出导入。所建模的过程主要是远场过程,其中与环境电流相关的平均传输和湍流占主导地位。随机步行粒子模型预测悬浮材料的运输和分散。动画模型输出包括每个或所有沉积物等级的水平和垂直浓度轮廓,特定点的悬浮沉积物浓度的时序序列,沉积在海底上的沉积物的空间分布,以及悬浮液中沉积物的表格摘要,并沉积。用户与轮廓数据交互以获得沿横截面的横截面视图的相关信息,与沉积物源的特征距离,以及被沉积在底部的材料覆盖的区域。

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