In recent years, attempts have been made to develop numerical models for unsteady flows in channels with sediment transport. The work presented in Reports KH-R-43A and KH-R-43B was conducted to analyze two essential ingredients of any numerical model: the relationship between the hydraulic variables (slope, depth, and velocity), and the predictor of sediment concentration.ududReport KH-R-43A presents a detailed analysis of the two components and examines their role in numerical modeling. Six hydraulic relationships and 13 sediment concentration predictors are examined and compared. New relationships are then developed which appear to be more accurate than the existing techniques. Finally, the new relationships are utilized in a numerical unsteady flow, moveable bed model which uses a four-point implicit finite difference solution scheme.ududThe data base utilized in the first report is presented in Report KH-R-43B. The data base contains 7,027 records (5,263 laboratory records and 1,764 field records), in 77 data files. Not all records were used in the final analyses, but they have been included in an attempt to provide a historically complete set of alluvial channel observations.ududThe material presented in these reports is essentially the same as the thesis submitted by the author in partial fulfillment of the requirements for the degree of Doctor of Philosophy. A common list of references, with data sources separated from other references, has been included in both reports.
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机译:近年来,已经尝试开发具有泥沙输送的河道中非稳定流动的数值模型。报告KH-R-43A和KH-R-43B中介绍的工作是为了分析任何数值模型的两个基本要素:水力变量(坡度,深度和速度)之间的关系以及沉积物浓度的预测指标。 ud udReport KH-R-43A提供了对这两个组件的详细分析,并检查了它们在数值建模中的作用。检查并比较了六个水力关系和13个沉积物浓度预测因子。然后开发新的关系,这些关系似乎比现有技术更准确。最后,新的关系被用于数值不稳定的流动床模型中,该模型使用四点隐式有限差分解决方案。 ud ud第一个报告中使用的数据库在报告KH-R-43B中提供。该数据库包含77个数据文件中的7,027条记录(5,263条实验室记录和1,764条现场记录)。并非所有记录都用于最终分析中,但已被包括在试图提供历史上完整的冲积通道观测资料中。 ud ud这些报告中提供的材料与作者在2002年提交的论文基本上相同。部分满足哲学博士学位的要求。两种报告都包含一个通用的参考列表,其数据源与其他参考分开。
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