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Reversing hydrology: quantifying the temporal aggregation effect of catchment rainfall estimation using sub-hourly data

机译:逆向水文学:使用亚小时数据量化流域降雨估算的时间聚集效应

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Inferred rainfall sequences generated by a novel method of inverting a continuous time transfer function show a smoothed profile when compared to the observed rainfall, however, streamflow generated using the inferred catchment rainfall is almost identical to observed streamflow (R_t~2 > 97%). This paper compares the effective rainfall inferred by the regularised inversion process (termed inferred effective rainfall (IER)) proposed by the authors with effective rainfall derived from the observed catchment rainfall (termed observed effective rainfall (OER)) in both time and frequency domains in order to confirm that, by using the dominant catchment dynamics in the inversion process, the main characteristics of catchment rainfall are being captured by the IER estimates. Estimates of the resolution of the IER are found in the time domain by comparison with aggregated sequences of OER, and in the frequency domain by comparing the amplitude spectra of observed and IER. The temporal resolution of the rainfall estimates is affected by the slow time constant of the catchment, reflecting the presence of slow hydrological pathways, for example, aquifers, and by the rainfall regime, for example, dominance of convective or frontal rainfall. It is also affected by the goodness-of-fit of the original forward rainfall-streamflow model.
机译:与观测到的降雨相比,通过一种新颖的连续时间传递函数反演方法生成的推断降雨序列显示出平滑的剖面,但是,使用推断集水区降雨产生的流量几乎与观测到的流量相同(R_t〜2> 97%)。本文比较了作者提出的正则反演过程推断的有效降雨量(称为推断有效降雨量(IER))与时域和频域的观测流域降雨得出的有效降雨量(称为观测有效降雨量(OER))。为了确认,通过在反演过程中利用主要的流域动力学,IER估计值可以捕捉到流域降雨的主要特征。通过与OER的聚合序列进行比较,可以在时域中找到IER分辨率的估计值,通过比较观察到的和IER的幅度谱,可以在频域中找到IER的分辨率估计。降雨估算的时间分辨率受流域缓慢的时间常数(反映出缓慢的水文路径(例如含水层)的存在)和降雨制度(例如对流或正面降雨的优势)的影响。它也受到原始正向降雨流模型的拟合优度的影响。

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