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Systematic errors in ground heat flux estimation and their correction

机译:地热通量估算中的系统误差及其校正

摘要

Incoming radiation forcing at the land surface is partitioned among the components of the surface energy balance in varying proportions depending on the time scale of the forcing. Based on a land-atmosphere analytic continuum model, a numerical land surface model, and field observations we show that high-frequency fluctuations in incoming radiation (with period less than 6 h, for example, due to intermittent clouds) are preferentially partitioned toward ground heat flux. These higher frequencies are concentrated in the 0–1 cm surface soil layer. Subsequently, measurements even at a few centimeters deep in the soil profile miss part of the surface soil heat flux signal. The attenuation of the high-frequency soil heat flux spectrum throughout the soil profile leads to systematic errors in both measurements and modeling, which require a very fine sampling near the soil surface (0–1 cm). Calorimetric measurement techniques introduce a systematic error in the form of an artificial band-pass filter if the temperature probes are not placed at appropriate depths. In addition, the temporal calculation of the change in the heat storage term of the calorimetric method can further distort the reconstruction of the surface soil heat flux signal. A correction methodology is introduced which provides practical application as well as insights into the estimation of surface soil heat flux and the closure of surface energy balance based on field measurements.
机译:地面上的入射辐射强迫根据强迫的时间尺度以不同的比例分配在表面能平衡的各个组成部分中。基于陆地-大气解析连续体模型,数值地表模型和野外观测,我们发现入射辐射的高频波动(例如,由于间歇性云而小于6 h)优先分配给地面热通量。这些较高的频率集中在0-1cm的表层土壤层中。随后,即使在土壤剖面深处几厘米处进行的测量也遗漏了部分表面土壤热通量信号。整个土壤剖面中高频土壤热通量谱的衰减会导致测量和建模方面的系统误差,这需要在土壤表面附近(0-1cm)进行非常精细的采样。如果温度探头未放置在适当的深度,则量热测量技术会以人工带通滤波器的形式引入系统误差。另外,量热法储热时间变化的时间计算会进一步扭曲地表土壤热通量信号的重建。介绍了一种校正方法,该方法提供了实际应用,并提供了基于野外测量的表层土壤热通量估算和表层能量平衡封闭的见识。

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