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A review of some tracer-test design equations for tracer-mass estimation and sample-collection frequency

机译:示踪质量估计和样本收集频率的示踪测试设计方程的综述

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Determination of necessary tracer mass, initial sample-collection time, and subsequent sample-collection frequency are the three most difficult aspects to estimate for a proposed tracer test prior to conducting the tracer test. To facilitate tracer-mass estimation, 33 mass-estimation equations have been developed over the past century. These 33 equations are reviewed here, 32 of which were evaluated using previously published tracer-test design examination parameters. Comparison of the results produced a wide range of estimated tracer mass, but no means is available by which one equation may be reasonably selected over the others. Each equation produces a simple approximation for tracer mass. Most of the equations are based primarily on estimates or measurements of discharge, transport distance, and suspected transport times. Although the basic field parameters commonly employed are appropriate for estimating tracer mass, the 33 equations are problematic in that they were all probably based on the original developers experience in a particular field area and not necessarily on measured hydraulic parameters or solute-transport theory. Suggested sampling frequencies are typically based primarily on probable transport distance, but with little regard to expected travel times. This too is problematic in that tracer sampling remains a haphazard process that tends to result in false negatives or data aliasing. Simulations from the recently developed efficient hydrologic tracer-test design methodology (EHTD) were compared with those obtained from 32 of the 33 published tracer-mass estimation equations and suggested sampling frequencies. EHTD applies functional relationships developed from hydrologic measurements in a solute-transport model to develop a preliminary tracer-breakthrough curve that has been shown to reasonably predict actual tracer-test results.
机译:确定必要的示踪剂质量,初始样品收集时间和随后的样品收集频率是在进行示踪剂测试之前对拟议的示踪剂测试进行估算的三个最困难的方面。为了促进示踪质量估计,在过去的一个世纪中,已经开发了33个质量估计方程。这里回顾了这33个方程,其中32个方程是使用先前发布的示踪剂测试设计检查参数进行评估的。结果的比较产生了估计的示踪剂质量,范围很广,但是没有一种方法可以合理地选择一个方程来代替另一个方程。每个方程式都能得出示踪剂质量的简单近似值。大多数方程主要基于排放量,运输距离和可疑运输时间的估计或测量。尽管通常采用的基本场参数适用于估算示踪剂质量,但33个方程存在问题,因为它们全都基于特定领域的原始开发人员经验,而不一定基于测得的水力参数或溶质运移理论。建议的采样频率通常主要基于可能的运输距离,但很少考虑预期的旅行时间。这也存在问题,因为示踪剂采样仍然是偶然的过程,容易导致假阴性或数据混叠。将最近开发的高效水文示踪剂测试设计方法(EHTD)的模拟结果与从33种已发布的示踪剂质量估计方程式中的32个以及建议的采样频率进行了比较。 EHTD在溶质运移模型中应用了从水文测量中得出的功能关系来开发初步的示踪剂突破曲线,该曲线已被证明可以合理地预测实际的示踪剂测试结果。

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