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首页> 外文期刊>Hydrology and Earth System Sciences >Ecohydrological effects of stream-aquifer water interaction: a case study of the Heihe River basin, northwestern China
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Ecohydrological effects of stream-aquifer water interaction: a case study of the Heihe River basin, northwestern China

机译:河流-含水层水相互作用的生态水文效应-以中国西北黑河流域为例

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A scheme describing the process of stream-aquifer interaction was combined with the land model CLM4.5 to investigate the effects of stream water conveyance over riparian banks on ecological and hydrological processes. Two groups of simulations for five typical river cross sections in the middle reaches of the arid-zone Heihe River basin were conducted. The comparisons between the simulated results and the measurements from water wells, the FLUXNET station, and remote sensing data showed good performance of the coupled model. The simulated riparian groundwater table at a propagation distance of less than 1 km followed the intra-annual fluctuation of the river water level, and the correlation was excellent (R-2 = 0.9) between the river water level and the groundwater table at the distance 60 m from the river. The correlation rapidly decreased as distance increased. In response to the variability of the water table, soil moisture at deep layers also followed the variation of river water level all year, while soil moisture at the surface layer was more sensitive to the river water level in the drought season than in the wet season. With increased soil moisture, the average gross primary productivity and respiration of riparian vegetation within 300 m from the river in a typical section of the river increased by approximately 0.03 and 0.02 mg Ca m(-2) s(-1), respectively, in the growing season. Consequently, the net ecosystem exchange increased by approximately 0.01 mg C m(-2) s(-1), and the evapotranspiration increased by approximately 3 mm day(-1). Furthermore, the length of the growing season of riparian vegetation also increased by 2-3 months due to the sustaining water recharge from the river. Overall, the stream-aquifer water interaction plays an essential role in the controlling of riparian hydrological and ecological processes.
机译:描述河流-含水层相互作用过程的方案与土地模型CLM4.5相结合,以研究河流对河岸的输水对生态和水文过程的影响。对干旱区黑河流域中游的五个典型河流断面进行了两组模拟。模拟结果与水井,FLUXNET站和遥感数据的测量结果之间的比较表明,耦合模型具有良好的性能。传播距离小于1 km的模拟河岸地下水位跟随河流水位的年内波动,并且该距离处的河流水位与地下水位之间的相关性极佳(R-2 = 0.9)距河60 m。随着距离的增加,相关性迅速降低。响应于地下水位的变化,深层土壤水分也全年跟随河水位的变化,而干旱季节表层土壤水分对河水水平的敏感度高于湿季。 。随着土壤湿度的增加,在典型河流中,距河流300 m以内的河岸植被的平均总初级生产力和呼吸作用分别增加了约0.03和0.02 mg Ca m(-2)s(-1)。生长季节。因此,净生态系统交换量增加了约0.01 mg C m(-2)s(-1),蒸散量增加了约3 mm day(-1)。此外,由于河水持续补给,河岸植被的生长期也增加了2-3个月。总体而言,溪流-含水层水相互作用在控制河岸水文和生态过程中起着至关重要的作用。

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