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Application of an Ultrasonic Sensor to Monitor Soil Erosion and Deposition

机译:超声波传感器在监测土壤侵蚀和沉积中的应用

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Monitoring erosion at high temporal resolution can provide researchers and managers the data necessary to manage erosion. Current erosion monitoring methods tend to be invasive to the area of interest, record low-frequency measurements, have a narrowspatial range of measurement, or are expensive. There is a need for an affordable system capable of monitoring erosion and deposition non-invasively at high temporal resolution. The objectives of this research were to (1) design and construct a non-invasive sediment monitoring system (SMS) using an ultrasonic sensor capable of monitoring erosion and deposition continuously, (2) test the system in the lab and field, and (3) determine the applications and limitations of the system. The SMS was tested in the lab to determine the extent to which the soil type, slope, surface topography, change in distance, and vegetation impacted the measurements of the ultrasonic sensor. Soil type, slope, and surface topography had little effect on the measurement, but distance and the introduction of vegetation impacted the measurement. In the field during high flows, as erosion and deposition occurred, the changes in distance were determined in near real-time, allowing calculation of erosion and deposition quantities.The SMS was deployed to monitor deposition on sandy streambanks in the Nebraska Sandhills and erosion on a streambank and field plot in Lincoln, Nebraska. The SMS proved successful in measuring sediment change during high-flow events but yielded some error: ±1.06 mm in controlled lab settings and +10.79 mm when subjected to environmental factors such as temperature, relative humidity, and wind.
机译:以高时间分辨率监测侵蚀可以为研究人员和管理人员提供管理侵蚀所需的数据。目前的侵蚀监测方法往往会侵入感兴趣的区域,记录低频测量,测量的空间范围狭窄,或者价格昂贵。需要一个价格合理的系统,能够以高时间分辨率无创地监测侵蚀和沉积。本研究的目标是:(1)使用能够连续监测侵蚀和沉积的超声波传感器设计和构建一个非侵入性沉积物监测系统(SMS),(2)在实验室和现场测试该系统,以及(3)确定该系统的应用和局限性。在实验室测试SMS,以确定土壤类型、坡度、表面地形、距离变化和植被对超声波传感器测量的影响程度。土壤类型、坡度和地表地形对测量几乎没有影响,但距离和植被的引入影响了测量。在高流量期间的现场,随着侵蚀和沉积的发生,距离的变化几乎实时确定,从而可以计算侵蚀和沉积量。SMS被部署用于监测内布拉斯加州沙丘沙质河岸上的沉积,以及内布拉斯加州林肯市河岸和农田的侵蚀。SMS成功地测量了高流量事件期间的沉积物变化,但产生了一些误差:在受控实验室设置中为±1.06 mm,在受到温度、相对湿度和风等环境因素影响时为+10.79 mm。

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