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Measurement of Solute Transport from an Earthen Reserve Pit During Drilling and Post Closure Operational Phases: Part I. Site Characteristics and Experiemtnal Design

机译:钻井和封闭后运营阶段从土储备坑中溶质运移的测量:第一部分。场地特征和实验设计

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This paper reports the construction and experimental design of the first known instrumented earthen reserve pit. The instrumentation allowed the measurement of solute transport from a field reserve pitdurign drilling operations and after pit closure. The field study, conducted in Brazos County Texas, shows the limitations and advantages of the various instrumentation techniques utilized. Accordingly, other investigators can avoid use of inappropriate or unnecessary monitoring devices. Additionally, limited field data are discussed. The field study, which is the basis for this paepr, consists of 3 parts: Site Characteirstics and Experiemtnal Design, Field Measurement, and Laboratory Analyses and Interpretation. This paper presents the Site characteristics and Experiemtnal design for the reserve pit. No other field study attempts to capture solute migrating from a reserve pit, measure the chemical constituents and explain the mechanism impeding or excluding contaminatn migration. The authors rely on lysimeters, soil moisture cups, monitoring wells, and electrical resistance sensors in obtaining the field data. The lysimeters and soil moisture cups function well. However, the moisture cups provide more useable data. The resistance sensors provided no useable data. parameter analyses for soil cores taken in the pit area at pre-drilling and post-closure operational phases correlated well with soil water monitoring device data, substantiating the observations of insignificant solution migration. Further, the data are confirmed by analyzing monitoring well data over a period of more than 2 years.
机译:本文报道了第一个已知的仪器化的土质储藏坑的建设和实验设计。该仪器可以测量现场储藏的深层钻探作业和封闭井后的溶质运移。在德克萨斯州的布拉索斯县进行的现场研究表明了所使用的各种仪器技术的局限性和优势。因此,其他研究者可以避免使用不合适或不必要的监视设备。此外,讨论了有限的字段数据。现场研究是该论文的基础,包括3个部分:现场特性和实验设计,现场测量以及实验室分析和解释。本文介绍了保护区的场地特征和实验设计。没有其他现场研究试图捕获从保留坑中迁移出来的溶质,测量化学成分并解释阻碍或排除污染物迁移的机理。作者依靠测渗仪,土壤湿度杯,监测井和电阻传感器来获取现场数据。测渗仪和土壤水分杯功能良好。但是,防潮杯提供了更多有用的数据。电阻传感器未提供可用数据。钻孔前和关闭后操作阶段在坑区采集的土壤核心的参数分析与土壤水分监测装置的数据很好地相关,从而证实了溶液迁移量微不足道的观察结果。此外,通过分析超过两年的监测井数据来确认数据。

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