首页> 外文会议>International Symposium on River Sedimentation >HIGH-RESOLUTION MONITORING OF SUSPENDED-SEDIMENT CONCENTRATION AND GRAIN SIZE IN THE COLORADO RIVER IN GRAND CANYON USING A LASER-ACOUSTIC SYSTEM
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HIGH-RESOLUTION MONITORING OF SUSPENDED-SEDIMENT CONCENTRATION AND GRAIN SIZE IN THE COLORADO RIVER IN GRAND CANYON USING A LASER-ACOUSTIC SYSTEM

机译:使用激光声学系统在大峡谷的大峡谷悬浮沉积物浓度和晶粒尺寸的高分辨率监测

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To monitor sediment transport in the Colorado River in Grand Canyon, Arizona, USA, we have designed and are evaluating a laser-acoustic system for measuring the concentration and grain size of suspended sediment every 15 min. This system consists of (1) a subaqueously deployed laser-diffraction instrument (either a LISST 100 or a LISST 25X) connected to an automatic pump sampler, and (2) an EZQ acoustic-doppler current meter. When laser transmission drops below a user-defined threshold (as a result of increased suspended-sediment concentrations), the LISST triggers the automatic pump sampler to collect samples at a user-defined rate. This allows samples to be collected when the suspended-sediment concentrations exceed the upper limit for the LISST and the EZQ acoustic-Doppler current meter (around 2,000 mg·l~(-1) -3,000 mg·l~(-1). Beginning in August 2002, we began testing this system on the Colorado River in Grand Canyon, and have developed stable coefficients relating the pump, laser-diffraction, and acoustic-backscatter measurements to cross-sectionally integrated measurements of suspended-sediment concentration and grain size. Variability between either sequential laser-diffraction or acoustic-backscatter measurements is substantially less than the variability between sequential cross-sectionally integrated measurements of concentration and grain size (collected with standard U.S. Geological Survey samplers and methods). Furthermore, the variability between either the laser-diffraction or acoustic-backscatter point measurements and the cross-sectionally integrated measurements is typically less than the variability between paired cross-sectionally integrated measurements of concentration and grain size. These observations suggest that more error may be introduced during the computation of suspended-sediment loads based on conventional sampling methods than is introduced during the computation of suspended-sediment loads using the laser-acoustic system.
机译:为了监测美国亚利桑那州大峡谷的Colorado河流的沉积物运输,我们已经设计并评估了每15分钟测量悬浮沉淀物的浓度和粒度的激光声学系统。该系统由(1)由连接到自动泵采样器的子基部署的激光 - 衍射仪(LISST 100或LISST 25X)组成,以及(2)EZQ声学 - 多普勒电流表。当激光传输下降到低于用户定义的阈值时(由于增加的悬浮沉积物浓度),LISST触发了自动泵采样器以用户定义的速率收集样本。这允许当悬浮沉积物浓度超过LISST和EZQ声学 - 多普勒电流表的上限时待收集样品(约2,000mg·L〜(-1)-3,000mg·l〜(-1)。开始2002年8月,我们开始在大峡谷的科罗拉多河上测试该系统,并开发了稳定的系数,与泵,激光衍射和声反向散射测量有关,以横截面综合悬浮沉积物浓度和晶粒尺寸的测量。顺序激光 - 衍射或声反向散射测量之间的可变性显着小于浓度和晶粒尺寸的顺序横截面综合测量之间的可变性(用标准的美国地质调查采样器和方法收集)。此外,激光之间的可变性-diffraction或声反向散射点测量和横截面集成测量通常小于VariaBi浓度和晶粒尺寸的配对横截面综合测量之间的借鉴。这些观察结果表明,在基于使用激光声系统计算期间引入的传统采样方法,可以在计算悬浮沉积物载荷期间引入更多误差。

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