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Steady-State Flow Distribution and Monthly Flow Duration in Selected Branches ofSt. Clair and Detroit Rivers within the Great Lakes Waterway

机译:所选分支中的稳态流量分布和月流量持续时间。克莱尔和底特律河在大湖水道内

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St. Clair and Detroit Rivers are connecting channels between Lake Huron and LakeErie in the Great Lakes waterway, and form part of the boundary between the United States and Canada. St. Clair River, the upper connecting channel, drains 222,400 square miles and has an average flow of about 182,000 cubic feet per second. Water from St. Clair River combines with local inflows and discharges into Lake St. Clair before flowing into Detroit River. In some reaches of St. Clair and Detroit Rivers, islands and dikes split the flow into two to four branches. Even when the flow in a reach is known, proportions of flows within individual branches of a reach are uncertain. Simple linear regression equations, subject to a flow continuity constraint, are developed to provide estimators of these proportions and flows. The equations are based on 533 paired measurements of flow in 13 reaches forming 31 branches. The equations provide a means for computing the expected values and uncertainties of steady-state flows on the basis of flow conditions specified at the upstream boundaries of the waterway.

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