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首页> 外文期刊>Journal of environmental & engineering geophysics >Using Resistivity Arrays to Monitor Groundwater Impacts near Runoff Holding Ponds
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Using Resistivity Arrays to Monitor Groundwater Impacts near Runoff Holding Ponds

机译:使用电阻率阵列监测径流保持池附近的地下水影响

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Mineral and organic salts from beef manure contained in precipitation runoff from feedyard pen surfaces can alter the conductivity properties of soil and water receiving it. Typically, holding ponds are constructed to control runoff from concentrated animal feeding operations. The integrity of these holding ponds has come under increased scrutiny since leakage has the potential to affect soil and groundwater quality. Traditionally, ponds are monitored by installing monitoring wells at key locations to evaluate the impact of these ponds on the environment. These monitoring wells are expensive and subject to ambiguous interpretation. A subsurface resistivity array was installed at a beef cattle feedyard located at the U.S Meat Animal Research Center, Clay Center, Nebraska (Feedyard A) and at a cattle feeding cooperator site (Feedyard B). Array probes were permanently installed at Feedyard A (16 probes spaced 6.1-m apart at a depth of 30 cm) and at Feedyard B (32 probes spaced 3.05-m apart at a depth of 50 cm). Weekly readings from each site were evaluated to monitor the stability of the zone of hydration near the pond. The low hydraulic conductivity soils at Feedyard A provided a very quiescent environmental system to evaluate the resistivity array's inherent measurement stability. Seasonal changes could easily be accounted for by variation in seasonal soil temperatures. The Feedyard B site was typified by coarse textured parent material that had high hydraulic conductivity properties. This site experienced dynamic changes week to week and throughout the season. The resistivity array system was able to adequately measure these dynamics. Additional analysis using difference maps improved the illustration of the resulting dynamic. The results of this study indicate that the resistivity array system has the potential to improve monitoring of runoff holding ponds and warrants additional validation.
机译:饲养场围栏表面的降水径流中所含的牛肉粪便中的矿物盐和有机盐会改变土壤和接收它的水的导电特性。通常,建造蓄水池是为了控制集中动物饲养作业的径流。由于渗漏有可能影响土壤和地下水质量,这些蓄水池的完整性受到越来越多的审查。传统上,通过在关键位置安装监测井来监测池塘,以评估这些池塘对环境的影响。这些监测井价格昂贵,并且存在模棱两可的解释。在位于内布拉斯加州克莱中心的美国肉类动物研究中心的肉牛饲养场(饲养场 A)和牛饲养合作社(饲养场 B)安装了地下电阻率阵列。阵列探头永久安装在饲养场 A(16 个探头,间隔 6.1 米,深度为 30 厘米)和饲养场 B(32 个探头,间距 3.05 米,深度为 50 厘米)。评估每个地点的每周读数,以监测池塘附近水合区的稳定性。料场 A 的低水力传导率土壤提供了一个非常静止的环境系统来评估电阻率阵列固有的测量稳定性。季节性变化可以很容易地通过季节性土壤温度的变化来解释。Feedyard B 场地的典型特征是具有高水力传导特性的粗糙纹理母材。这个网站每周和整个季节都经历了动态变化。电阻率阵列系统能够充分测量这些动力学。使用差异图进行的额外分析改进了对结果动态的说明。这项研究的结果表明,电阻率阵列系统有可能改善对径流蓄水池的监测,并需要进一步验证。

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