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首页> 外文期刊>Journal of Hydrology >Towards an unbiased filter routine to determine precipitation and evapotranspiration from high precision lysimeter measurements
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Towards an unbiased filter routine to determine precipitation and evapotranspiration from high precision lysimeter measurements

机译:朝向无偏的过滤器常规,以确定高精度溶血仪测量的沉淀和蒸发

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Weighing lysimeters are considered to be the best means for a precise measurement of water fluxes at the interface between the soil-plant system and the atmosphere. Any decrease of the net mass of the lysimeter can be interpreted as evapotranspiration (ET), any increase as precipitation (P). However, the measured raw data need to be filtered to separate real mass changes from noise. Such filter routines typically apply two steps: (i) a low pass filter, like moving average, which smooths noisy data, and (ii) a threshold filter that separates significant from insignificant mass changes. Recent developments of these filters have identified and solved some problems regarding bias in the data processing. A remaining problem is that each change in flow direction is accompanied with a systematic flow underestimation due to the threshold scheme. In this contribution, we analyze this systematic effect and show that the absolute underestimation is independent of the magnitude of a flux event. Thus, for small events, like dew or rime formation, the relative error is high and can reach the same magnitude as the flux itself. We develop a heuristic solution to the problem by introducing a so-called "snap routine". The routine is calibrated and tested with synthetic flux data and applied to real measurements obtained with a precision lysimeter for a 10-month period. The heuristic snap routine effectively overcomes these problems and yields an almost unbiased representation of the real signal. (C) 2017 Elsevier B.V. All rights reserved.
机译:称重式型仪被认为是在土厂系统和大气之间的界面处精确测量水通量的最佳方法。尿素仪的净质量的任何降低可以解释为蒸发(ET),随着沉淀(P)的任何增加。然而,需要过滤测量的原始数据以将来自噪声的真实变化分开。这种过滤程序通常施加两个步骤:(i)低通滤波器,如移动平均值,其平滑噪声数据,并且(ii)与微不足道的质量变化分开的阈值滤波器。这些过滤器的最新发展已经确定并解决了数据处理中偏差的一些问题。剩下的问题是,由于阈值方案,流动方向的每个变化伴随着系统的流量低估。在这一贡献中,我们分析了这种系统效果,并表明绝对低估与磁通事件的大小无关。因此,对于小事件,与露水或霜形成一样,相对误差高,并且可以达到与通量本身相同的幅度。我们通过引入所谓的“捕捉例程”来开发启发式解决问题。常规校准并用合成磁通数据进行测试,并应用于使用精密立体计获得的真实测量,以便为10个月的时间。启发式捕捉程序有效地克服了这些问题,并产生了实际信号的几乎无偏见表示。 (c)2017年Elsevier B.V.保留所有权利。

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