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首页> 外文期刊>Journal of Soil and Water Conservation >Drop-box weir for measuring flow rates under extreme flow conditions
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Drop-box weir for measuring flow rates under extreme flow conditions

机译:用于在极端流量条件下测量流量的滴水箱堰

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摘要

Measuring discharge rates in stream flows laden with sediment using precalibrated flow structures, such as flumes and weirs, is difficult and flow measurements can quickly become inaccurate. This is because large particles ranging from sand-sized particles to rocks easily clog the structures, changing the approach velocities and flow directions during a runoff event. These conditions often occur during extreme runoff events when there is sufficient transport capacity in the flows, causing deposition. Furthermore, assumptions are often made for individual structures regarding the approach conditions in a stream channel, such as a minimum channel slope and direction of flow. The drop-box weir is one of two flow-measuring devices (the other is the critical-depth flume) that can be used to monitor under these conditions and give accurate flow measurements.rnThe operating principle of the drop-box weir is to maximize the turbulence in stream flows to suspend large sediment particles. This is accomplished by forcing two water streams to flow into each other from opposite sides of a box, after falling into the box. The box is located upstream from a V-measuring section. At low flow rates, the water streams enter the box toward the front near the V section.
机译:使用预先校准的水流结构(例如水槽和堰)来测量充满泥沙的水流的排放速率很困难,并且流量测量可能很快变得不准确。这是因为从沙子大小的颗粒到岩石的大颗粒都容易阻塞结构,从而在径流事件中改变进场速度和流向。这些条件通常发生在极端径流事件中,当流中有足够的输送能力时,会导致沉积。此外,通常针对单个结构进行有关流道中进场条件的假设,例如最小流道斜率和流向。滴水箱堰是两个流量测量装置之一(另一个是临界深度水槽),可用于在这些条件下进行监控并提供准确的流量测量值。rn滴水箱堰的工作原理是最大程度地提高流量。流中的湍流使大的沉积物颗粒悬浮。这是通过在使两个水流落入箱中之后迫使它们从箱的相对侧彼此流入来实现的。该盒子位于V测量段的上游。在低流速下,水流朝V形部分附近的前面进入盒子。

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