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Experimental and Model-Based Investigation of the Effect of the Free-Surface Flow Regime on the Detection Threshold of Warm Water Inflows

机译:基于模型的自由表面流动制度对温水流入检测阈值的实验和模型研究

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摘要

Heat has been used as a tracer to identify and quantify groundwater inflows into streams. Over the last decade, a few methods have used fiber-optic distributed temperature sensing to facilitate assessment of such inflows into small streams. However, these methods focused mainly on the groundwater percentage and the thermal contrast between groundwater and surface water without considering the flow regime of the surface water. In this study, artificial water inflows into a controlled flume were examined using fiber-optic distributed temperature sensing to quantify the thermal anomalies induced as a function of the flow regime (turbulent or laminar). Computer simulations were then performed to widen the range of the parameters tested and provide insight into the physical processes involved. Experiments conducted under the turbulent regime were in accordance with results and uncertainties of previous studies. Under the laminar regime, however, the inflow-induced thermal anomalies were always smaller than those under the turbulent regime for a given inflow percentage. Therefore, the actual inflow percentage may be underestimated when using a classic method under a laminar regime.
机译:热量已被用作示踪剂,以识别和量化地下水进入流中的地下水。在过去十年中,一些方法使用光纤分布式温度感测,以便于评估这种流入的小流。然而,这些方法主要集中在地下水百分比和地下水和地表水之间的热对比,而不考虑表面水的流动状态。在该研究中,使用光纤分布式温度感测检查人造水流入受控的水槽,以量化作为流动状态(湍流或层状)的函数所引起的热异常。然后执行计算机仿真以扩大测试的参数范围,并提供洞察所涉及的物理过程。在湍流制度下进行的实验符合先前研究的结果和不确定性。然而,在层流制度下,流入诱导的热异常总是小于给定流入百分比的湍流制度下的热异常。因此,当在层状制度下使用经典方法时,可以低估实际流入百分比。

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