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首页> 外文期刊>Journal of Hydrology >Downscaling near-surface soil moisture from field to plot scale: A comparative analysis under different environmental conditions
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Downscaling near-surface soil moisture from field to plot scale: A comparative analysis under different environmental conditions

机译:从场到绘制范围的近近表面土壤水分:不同环境条件下的比较分析

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摘要

Indirect measurements of field-scale (hectometer grid-size) spatial-average near-surface soil moisture are becoming increasingly available by exploiting new-generation ground-based and satellite sensors. Nonetheless, modeling applications for water resources management require knowledge of plot-scale (1-5 m grid-size) soil moisture by using measurements through spatially-distributed sensor network systems. Since efforts to fulfill such requirements are not always possible due to time and budget constraints, alternative approaches are desirable. In this study, we explore the feasibility of determining spatial-average soil moisture and soil moisture patterns given the knowledge of long-term records of climate forcing data and topographic attributes. A downscaling approach is proposed that couples two different models: the Eco-Hydrological Bucket and Equilibrium Moisture from Topography. This approach helps identify the relative importance of two compound topographic indexes in explaining the spatial variation of soil moisture patterns, indicating valley- and hillslope-dependence controlled by lateral flow and radiative processes, respectively. The integrated model also detects temporal instability if the dominant type of topographic dependence changes with spatial-average soil moisture. Model application was carried out at three sites in different parts of Italy, each characterized by different environmental conditions. Prior calibration was performed by using sparse and sporadic soil moisture values measured by portable time domain reflectometry devices. Cross-site comparisons offer different interpretations in the explained spatial variation of soil moisture patterns, with time-invariant valley-dependence (site in northern Italy) and hillslope-dependence (site in southern Italy). The sources of soil moisture spatial variation at the site in central Italy are time-variant within the year and the seasonal change of topographic dependence can be conveniently correlated
机译:间接测量现场规模(升级仪网格尺寸)空间平均近表面土壤水分越来越多地通过开采新一代地基和卫星传感器来获得。尽管如此,水资源管理的建模应用需要通过空间分布的传感器网络系统使用测量来了解绘图级(1-5米网格尺寸)土壤水分。由于由于时间和预算限制而努力实现这些要求的努力,因此可选择的方法是可取的。在这项研究中,鉴于了解气候迫使数据和地形属性的长期记录,探讨了确定空间平均土壤水分和土壤水分模式的可行性。提出了一种缩小的方法,以耦合两种不同的型号:生态水文桶和地形的平衡水分。该方法有助于识别两种复合地形指标在解释土壤湿度图案的空间变化,表示由横向流动和辐射过程控制的谷和山坡依赖性的空间变化。如果具有空间平均土壤水分的主要类型依赖性变化,综合模型还会检测时间不稳定。模型应用在意大利不同地区的三个地点进行,每个地点都以不同的环境条件为特征。通过使用便携式时域反射器件测量的稀疏和散发性土壤湿度值来执行先前的校准。跨场比较在解释的土壤水分模式的空间变化中提供了不同的解释,其中不变的谷依赖(北意大利北部的遗址)和山坡依赖(意大利南部的遗址)。意大利中部地点的土壤水分空间变化来源是年内的时变态,地形依赖的季节变化可以方便地相关

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