首页> 外文期刊>Journal of Hydrology >Application of time domain reflectometry to high suspended sediment concentration measurements: Laboratory validation and preliminary field observations in a steep mountain stream
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Application of time domain reflectometry to high suspended sediment concentration measurements: Laboratory validation and preliminary field observations in a steep mountain stream

机译:时域反射测缝在高悬浮沉积物浓度测量中的应用:陡峭山溪流中的实验室验证和初步现场观测

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摘要

The dielectric constant around a sensor was measured with a time domain reflectometry (TDR) system and used to calculate the volumetric sediment concentration (SC) of stream water and deposition on a streambed. The measurements of various SCs in laboratory experiments demonstrated that the TDR system proposed in this study had an accuracy of 0.01 m(3) M-3 for practical uses, and that the measured concentrations were not sensitive to particle size. The vertical SC distributions were measured at heights of 17-37 cm in a steep mountain stream. The resulting SCs at the various heights increased by 0.01-0.07 m(3) M the time of peak stream discharge during an extreme storm with a return period of approximately 12 years. After extreme precipitation, the SC of the lowest probe increased rapidly from approximately 0 to 0.4 m(3) m(-3). This was followed by rapid increases in the SCs at the other heights, indicating deposition around each probe. The TDR measurement system, with its straightforward calibration procedure, effectively measured deposition and a high-concentration layer above the deposited layer even during the storm event.
机译:用时域反射测量(TDR)系统测量传感器周围的介电常数,并用于计算流水的体积沉积物浓度(SC)和沉积物流。实验室实验中各种SCS的测量表明,该研究中提出的TDR系统具有0.01μm(3)m-3的实际用途,并且测量的浓度对粒度不敏感。垂直SC分布在陡峭的山溪流中以17-37厘米的高度测量。在极端风暴期间,各个高度的所得SC在返回期间增加了0.01-0.07 m(3)米的峰值流放电时间约为12年。在极端沉淀后,最低探针的SC从大约0到0.4m(3)m(-3)迅速增加。随后是在另一个高度的SCS中快速增加,表明每个探针周围的沉积。 TDR测量系统,其简单的校准程序,即使在暴风雨事件期间也能有效地测量沉积层上方的沉积和高浓度层。

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