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首页> 外文期刊>Journal of Hydrology >Tropical Montane Cloud Forests: Hydrometeorological variability in three neighbouring catchments with different forest cover
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Tropical Montane Cloud Forests: Hydrometeorological variability in three neighbouring catchments with different forest cover

机译:热带蒙太糖云森林:三个邻近集水区的水质气象变异,不同的森林覆盖物

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Highlights ? We provide unique hydro-meteorological data for continental TMCF located upwind from seasonally flooded savannahs. ? From all meteorological variables rainfall presents the stronger seasonal contrast. ? Dry season runoffs are sustained by persistent precipitation on the high elevations. ? Forests provide a first order control on peak flows. ? Because TMCF present tight water balances runoff uncertainty estimations are crucial. Abstract Mountain areas are characterized by a large heterogeneity in hydrological and meteorological conditions. This heterogeneity is currently poorly represented by gauging networks and by the coarse scale of global and regional climate and hydrological models. Tropical Montane Cloud Forests (TMCFs) are found in a narrow elevation range and are characterized by persistent fog. Their water balance depends on local and upwind temperatures and moisture, therefore, changes in these parameters will alter TMCF hydrology. Until recently the hydrological functioning of TMCFs was mainly studied in coastal regions, while continental TMCFs were largely ignored. This study contributes to fill this gap by focusing on a TMCF which is located on the northern eastern Andes at an elevation of 1550–2300m asl, in the Orinoco river basin highlands. In this study, we describe the spatial and seasonal meteorological variability, analyse the corresponding catchment hydrological response to different land cover, and perform a sensitivity analysis on uncertainties related to rainfall interpolation, catchment area estimation and streamflow measurements. Hydro-meteorological measurements, including hourly solar radiation, temperature, relative humidity, wind speed, precipitation, soil moisture and streamflow, were collected from June 2013 to May 2014 at three gauged neighbouring catchments with contrasting TMCF/grassland cover and less than 250m elevation difference. We found wetter and less seasonally contrasting conditions at higher elevations, indicating a positive relation between elevation and fog or rainfall persistence. This pattern is similar to that of other eastern Andean TMCFs, however, the study site had higher wet season rainfall and lower dry season rainfall su
机译:<![cdata [ 亮点 我们为Continally TMCF提供独特的水流气象数据,从季节性淹水的大草原上位于unwind。 来自所有气象变量降雨呈现出更强的季节性对比。 旱季径流通过高度高度持续降水来维持。 林在峰值流中提供了一个第一顺序控制。 因为tmcf目前的紧身水平径流不确定性估计至关重要。 < / ce:list> 抽象 山区域的特点是水文和气象条件的大异质性。这种异质性目前通过衡量网络和全球和区域气候和水文模型的粗略规模表示不良。热带蒙太烷云森林(TMCF)在狭窄的海拔范围内被发现,其特点是持久的雾。它们的水平衡取决于局部和挤压温度和湿度,因此,这些参数的变化将改变TMCF水文。直到最近,TMCFS的水文运作主要在沿海地区研究,而大陆TMCF在很大程度上被忽略了。本研究有助于填补这个差距,专注于位于北部北部的TMCF,在1550-2300 M ASL,在奥林科河流域高地。在这项研究中,我们描述了空间和季节性气象变异性,分析了对不同陆地覆盖的相应集水区水文响应,对与降雨插值,集水区估计和流流量测量有关的不确定性进行敏感性分析。在2013年6月至2014年5月,在2013年6月至2014年5月,在2013年6月至2014年5月,在3月份邻近集水区,包括较高的邻近集水区,包括液态气象学测量,包括每小时太阳辐射,温度,相对湿度,风速,降水,土壤水分和流出流量,占TMCF /草原覆盖率较小,较小:HSP SP =“0.25”/> M海拔差异。 我们发现更潮湿,较低的季节性对比条件在更高的高度上,表明海拔和雾之间的积极关系或降雨持久性。这种模式类似于其他东部的TMCFS的模式,然而,研究现场具有更高的湿季降雨和较低的旱季降雨量

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