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首页> 外文期刊>Hydrology and Earth System Sciences >The impact of forest regeneration on streamflow in 12 mesoscale humid tropical catchments
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The impact of forest regeneration on streamflow in 12 mesoscale humid tropical catchments

机译:森林更新对12个中尺度湿润热带流域河流流量的影响

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Although regenerating forests make up an increasingly large portion of humid tropical landscapes, little is known of their water use and effects on streamflow (Q). Since the 1950s the island of Puerto Rico has experienced widespread abandonment of pastures and agricultural lands, followed by forest regeneration. This paper examines the possible impacts of these secondary forests on several Q characteristics for 12 mesoscale catchments (23-346 km2; mean precipitation 1720-3422 mm yr-1) with long (33-51 yr) and simultaneous records for Q, precipitation (P), potential evaporation (PET), and land cover. A simple spatially-lumped, conceptual rainfall-runoff model that uses daily P and PET time series as inputs (HBV-light) was used to simulate Q for each catchment. Annual time series of observed and simulated values of four Q characteristics were calculated. A least-squares trend was fitted through annual time series of the residual difference between observed and simulated time series of each Q characteristic. From this the total cumulative change (?) was calculated, representing the change in each Q characteristic after controlling for climate variability and water storage carry-over effects between years. Negative values of ? were found for most catchments and Q characteristics, suggesting enhanced actual evaporation overall following forest regeneration. However, correlations between changes in urban or forest area and values of ? were insignificant (P ≥ 0.389) for all Q characteristics. This suggests there is no convincing evidence that changes in the chosen Q characteristics in these Puerto Rican catchments can be ascribed to changes in urban or forest area. The present results are in line with previous studies of meso-and macro-scale (sub-)tropical catchments, which generally found no significant change in Q that can be attributed to changes in forest cover. Possible explanations for the lack of a clear signal may include errors in the land cover, climate, Q, and/or catchment boundary data; changes in forest area occurring mainly in the less rainy lowlands; and heterogeneity in catchment response. Different results were obtained for different catchments, and using a smaller subset of catchments could have led to very different conclusions. This highlights the importance of including multiple catchments in land-cover impact analysis at the mesoscale.
机译:尽管再生森林占湿润热带景观的比例越来越大,但对其用水和对水流的影响知之甚少。自1950年代以来,波多黎各岛经历了牧场和农业用地的广泛荒废,随后森林再生。本文研究了这些次生林对12个中尺度集水区(23-346 km2;平均降水量1720-3422 mm yr-1),长期(33-51年)的几个Q特征的可能影响以及同时记录的Q,降水量( P),潜在蒸发量(PET)和土地覆盖。一个简单的空间集中的概念性降雨径流模型,该模型使用每日P和PET时间序列作为输入(HBV光)来模拟每个流域的Q。计算了四个Q特征的观测值和模拟值的年度时间序列。通过每个Q特征的观测时间序列与模拟时间序列之间的残差的年度时间序列拟合最小二乘趋势。据此,计算出总的累积变化量(?),表示控制了年份之间的气候变异性和储水结转效应后每个Q特性的变化。负值?发现大多数集水区和Q特征,表明森林更新后总体实际蒸发量增加。但是,城市或森林面积的变化与?值之间的相关性。对于所有Q特性,微不足道(P≥0.389)。这表明没有令人信服的证据表明这些波多黎各流域所选Q特征的变化可归因于城市或森林面积的变化。目前的结果与中小型和大型(亚)热带流域的先前研究相吻合,该研究通常没有发现可归因于森林覆盖率变化的Q值显着变化。缺乏清晰信号的可能解释可能包括土地覆盖,气候,Q和/或流域边界数据中的错误;森林面积的变化主要发生在少雨的低地;流域响应的异质性。对于不同的流域获得了不同的结果,使用较小的流域子集可能会得出截然不同的结论。这突出了在中尺度上将多个流域纳入土地覆盖影响分析的重要性。

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