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Multi-offset GPR methods for hyporheic zone investigations

机译:多偏移GPR方法用于流血区检查

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摘要

Porosity of stream sediments has a direct effect on hyporheic exchange patterns and rates. Improved estimates of porosity heterogeneity will yield enhanced simulation of hyporheic exchange proc-esses. Ground-penetrating radar (GPR) velocity measurements are strongly controlled by water content thus accurate measures of GPR velocity in saturated sediments provides estimates of poros-ity beneath stream channels using petrophysical relationships. Imaging the substream system using surface based reflection measurements is particularly challenging due to large velocity gradients that occur at the transition from open water to saturated sediments. The continuous multi-offset method improves the quality of subsurface images through stacking and provides measurements of vertical and lateral velocity distributions. We applied the continuous multi-offset method to stream sites on the North Slope, Alaska and the Sawtooth Mountains near Boise, Idaho, USA. From the continuous multi-offset data, we measure velocity using reflection tomography then estimate water content and porosity using the Topp equation. These values provide detailed measurements for improved stream channel hydraulic and thermal modelling.
机译:河流沉积物的孔隙度直接影响流变交换方式和速率。改进的孔隙度非均质性估计将增强对流变交换过程的模拟。探地雷达(GPR)速度测量受含水量的强烈控制,因此,对饱和沉积物中GPR速度的精确测量可以利用岩石物理关系来估算河道下方的孔隙度。由于从露天水到饱和沉积物的过渡过程中会出现较大的速度梯度,因此使用基于表面的反射测量对子流系统进行成像特别具有挑战性。连续多次偏移法通过堆叠提高了地下图像的质量,并提供了垂直和横向速度分布的测量结果。我们将连续多次偏移法应用到阿拉斯加北坡和美国爱达荷州博伊西附近的锯齿山的流场。从连续的多次偏移数据中,我们使用反射层析成像测量速度,然后使用Topp方程估算含水量和孔隙率。这些值提供了详细的测量值,以改善流道的水力和热力模型。

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