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Yangtze River ADCP discharge measurement using multiple external sensor inputs

机译:使用多个外部传感器输入进行长江ADCP流量测量

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During high flow season, the sediment load of the Yangtze River can reach 20 grams per liter. When the sediment load is high, acoustic absorption and scattering interfere with the bottom tracking of ADCPs used to measure discharge on the Yangtze River. In addition, the Changjiang Water Resources Commission (CWRC) uses 30 meter steel hulled vessels to perform discharge measurements on much of the Yangtze River. The steel hull of the vessel prevents using the ADCP's internal flux-gate compass as a heading reference. We performed tests to determine if accurate discharge measurements could be performed using an ADCP to measure water velocity, a depth sounder for water depth, DGPS to determine vessel speed over ground, and a gyrocompass to provide heading information. The tests were performed during normal flow conditions when the ADCP bottom tracking is reliable. Using four different ADCPs with the three other external devices, we measured discharge at the CWRC Three Gorges Huangling Temple Hydrology Station. Discharge computed using the external depth sounder, DGPS, and gyrocompass was found to be within 2% of the discharge computed using the ADCP alone. The results of those tests are presented in this paper.
机译:在高流量季节,长江的沉积物负荷可以达到每升20克。当沉积物负荷很高时,声吸收和散射会干扰用于测量长江流量的ADCP的底部跟踪。此外,长江水利委员会(CWRC)使用30米长的钢壳船在长江的大部分地区进行流量测量。船只的钢制船体无法将ADCP的内部流量门罗盘用作航向参考。我们进行了测试,以确定是否可以使用ADCP测量水速,使用测深仪测量水深,使用DGPS确定船只在地面上的速度以及使用陀螺罗盘提供航向信息来进行准确的排放测量。当ADCP底部跟踪可靠时,在正常流量条件下进行了测试。通过使用四个不同的ADCP和其他三个外部设备,我们在CWRC三峡黄陵寺水文站测量了流量。发现使用外部测深仪,DGPS和陀螺罗盘计算的放电量在仅使用ADCP计算​​的放电量的2%以内。这些测试的结果在本文中介绍。

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