首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Hydro-climatic trends in the last 50 years in the lower reach of the Shiyang River Basin, NW China.
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Hydro-climatic trends in the last 50 years in the lower reach of the Shiyang River Basin, NW China.

机译:中国西北地区石羊河流域下游近50年的水文气候趋势。

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The hydro-climatic trends were examined for the lower reach of the Shiyang River Basin in NW China using the wavelet analysis and the Mann-Kendall (M-K) test. In order to identify the optimal combination of the hydro-climatic data series in the discrete wavelet transform (DWT), the results from DWT were tested by the Mann-Kendall test. The results showed that the discharge significantly decreased during the last five decades, while there was no noticeable change in precipitation. Temperature increased significantly in all periods, and evaporation decreased slightly in spring, summer and autumn. The results indicated that the DWT combination of DW1+DW2+DW4+DW5 was close to the real Mann-Kendall trend values. A 26-year periodicity in discharge was identified by applying the global wavelet spectra and continuous wavelet transform (CWT) method. Because the Shiyang River Basin is located in the cold region of NW China, the contribution of glacier and snow to the discharge is significant. Therefore, the significantly increased temperature during the last 50 years would eventually lead to an increased discharge due to the increased amount of melt water from glacier and snow. However, the increasing water demand for the economic development and oasis expansion in the middle reach of the basin will reduce discharge flowing into the lower reach of the basin. Compared to the impact of climate change, it should be pointed out that the flow regime is strongly affected by human activities.
机译:利用小波分析和Mann-Kendall(M-K)检验研究了中国西北地区石羊河流域下游的水文气候趋势。为了确定离散小波变换(DWT)中水文气候数据序列的最佳组合,通过Mann-Kendall检验对DWT的结果进行了检验。结果表明,在过去的五十年中,流量显着减少,而降水没有明显变化。在所有时期,温度均显着升高,而在春季,夏季和秋季,蒸发量略有下降。结果表明,DW1 + DW2 + DW4 + DW5的DWT组合接近于实际的Mann-Kendall趋势值。通过应用整体小波谱和连续小波变换(CWT)方法确定了26年的放电周期。由于石羊河流域位于中国西北部的寒冷地区,因此冰川和积雪对流量的贡献很大。因此,由于冰川和积雪融化的水量增加,过去50年中温度的显着升高最终将导致流量增加。然而,流域中游地区经济发展和绿洲扩张对水的需求不断增加,将减少流入流域下游地区的水量。与气候变化的影响相比,应该指出的是,人类活动对水流的影响很大。

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