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首页> 外文期刊>Vadose zone journal VZJ >How Many Measurements of Soil Moisture within the Footprint of a Ground-Based Microwave Radiometer Are Required to Account for Meter-Scale Spatial Variability?
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How Many Measurements of Soil Moisture within the Footprint of a Ground-Based Microwave Radiometer Are Required to Account for Meter-Scale Spatial Variability?

机译:考虑到米级空间变异性,需要对地面微波辐射计的足迹内的土壤水分进行多少测量?

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Validation of ground-based microwave remote sensing measurements with point measurements of soil moisture remains an important task. The number of point measurements needed to characterize the mean soil moisture of an area on the order of tens of square meters, and the manner in which these observations should be made remain unknown. We conducted a field experiment in central Iowa to characterize the spatial process of soil moisture and sampling strategies for estimating the mean soil moisture of anarea that represents the footprint of a ground-based microwave radiometer. We determined the spatial dependence of the moisture content of bare soil at this scale, which allows the determination of the mean soil moisture from point measurements. This spatial dependence can be described by an exponential variogram model. The parameters of this model vary according to mean moisture conditions. The accuracy of the estimate of mean soil moisture depends on the number of point measurements, what sampling technique is used, and mean moisture conditions. When we use spatial dependence, we increase the accuracy and precision of our estimates of the mean. Lattice and stratified sampling schemes require fewer measurements than random sampling when a higher levelof accuracy in the estimate of mean soil moisture is desired. Practically, if measurements of soil moisture are made in random locations and spatial dependence is not used, we found that approximately 20 measurements within a 7 by 9 m footprint would estimate the mean to within close to 0.01 m3 m-3 of the true value for the entire range of soil moisture conditions that we observed.
机译:用土壤水分的点测量来验证基于地面的微波遥感测量仍然是一项重要的任务。表征一个区域的平均土壤湿度大约几十平方米所需的点测量次数以及进行这些观测的方式仍然未知。我们在爱荷华州中部进行了田间实验,以表征土壤湿度的空间过程,并采用采样策略来估算代表地面微波辐射计足迹的anarea平均土壤湿度。我们确定了这种规模的裸露土壤水分含量的空间依赖性,这使得可以通过点测量确定平均土壤水分。这种空间依赖性可以通过指数变异函数模型来描述。该模型的参数根据平均湿度条件而变化。平均土壤湿度的估算准确性取决于点测量的次数,所使用的采样技术以及平均湿度条件。当使用空间相关性时,我们提高了均值估计的准确性和精确度。当需要更高的平均土壤湿度估算精度时,格子和分层采样方案需要的测量量要少于随机采样。实际上,如果在随机位置进行土壤湿度测量并且不使用空间依赖性,我们发现在7 x 9 m的覆盖范围内大约进行20次测量,估计平均值将接近真实值的0.01 m3 m-3。我们观察到的整个土壤湿度条件范围。

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