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Comparing apparent electrical conductivity measurements on a paddy field under flooded and drained conditions

机译:在淹水和排水条件下比较稻田的表观电导率测量值

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摘要

Every growing season, paddy fields are kept both flooded and drained for a significant period of time. As a consequence, these soils develop distinct physico-chemical characteristics. For practical reasons, these soils are mostly sampled under dry conditions, but the question arises how representative the results are for the wet growing conditions. Therefore, the apparent electrical conductivity (ECa) of a 1.4 ha alluvial paddy field located in the Brahmaputra floodplain of Bangladesh was measured in both dry and wet conditions by a sensing system using the electromagnetic induction sensor EM38, which does not require physical contact with the soil, and compared both surveys. Due to the smooth water surface under wet conditions which ensured increased stability of the sensing platform, the results of the survey showed considerably reduced micro-scale variability of ECa. Furthermore, the wet survey results more reliably furnished soil-related information mainly due to the absence of soil moisture dynamics. The differences between ECa under wet and dry conditions were attributed to differences in soil texture, mainly the sand content variation having considerable effect on soil moisture differences when flooded following drainage. Accordingly, the largest differences between ECa under wet and dry conditions were found in those parts of the field with a large sand content. Hence, the conclusion was that an ECa survey on flooded fields has an added value to precision soil management.
机译:在每个生长季节,稻田都会在相当长的一段时间内都被淹没和排干。结果,这些土壤表现出独特的理化特性。出于实际原因,这些土壤大部分是在干燥条件下取样的,但问题是,对于潮湿的生长条件,结果的代表性如何。因此,通过使用电磁感应传感器EM38的传感系统,在干燥和潮湿条件下,测量了孟加拉国布拉马普特拉泛滥平原上一个1.4公顷冲积稻田的表观电导率(EC a )。不需要物理接触土壤,并比较了两个调查。由于在潮湿条件下水表面光滑,从而确保了传感平台的稳定性增加,所以调查结果显示EC a 的微观尺度变异性大大降低。此外,由于缺乏土壤水分动力学,湿法调查结果更可靠地提供了与土壤有关的信息。 EC a 在干湿条件下的差异归因于土壤质地的差异,主要是含沙量的变化对排水后淹水时的土壤水分差异有相当大的影响。因此,在潮湿和干燥条件下的EC a 之间最大的差异是在含沙量大的田地中发现的。因此,结论是EC a 洪水田地调查对精确土壤管理具有附加价值。

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