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Runoff characteristics and the influence of land cover in drylands of western Texas.

机译:德克萨斯州西部旱地的径流特征和土地覆盖的影响。

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In dryland regions, where water is a limited resource, land use/land cover has undergone and continues to undergo significant change mainly due to human activities. The nature of runoff from dryland regions and the influence of land use/land cover change are largely not quantified. The objective of this study is to examine runoff dynamics and the influence of land cover in drylands of western Texas across multiple spatial and temporal scales. The study consists of four major components: (1) an experimental study at Honey Creek upland catchment (19 ha) to assess vegetation treatment effects on runoff by hydrometric and isotopic methods; (2) a hydrochemical evaluation of hydrologic linkage between the upland and bottomland at the second-order Honey Creek watershed; (3) a detailed precipitation-streamflow analysis at North Concho River basin to assess long-term and large-scale precipitation-streamflow-vegetation dynamics; and (4) a comparison of streamflow in North, Middle, and South Concho River basins and a regional streamflow trend analysis for the entire western Texas. The study indicates runoff production in the drylands of western Texas is dominated by a few large runoff-producing events. The small catchment experiment indicated that runoff increased about 40 mm per year when 60% of woody plants were removed. This effect may relate to the presence of a baseflow component, but was not verified in regional trend analysis for the Edwards Plateau region where most rivers are spring-fed. The decrease in streamflow in North Concho River basin after the 1950's is in large part related to the enhanced infiltration capacity from reduced grazing pressure and improved vegetation cover. Regional streamflow trend analysis suggests some headwater areas outside the Edwards Plateau region experienced patterns of streamflow change similar to those in North Concho River basin, although artificial impoundments complicated the analysis. The study has broader application in ecohydrological research beyond specific geographic areas and specific vegetation types when evaluating the impact of ecosystem structure change on hydrology and water resources.
机译:在缺水的干旱地区,主要由于人类活动,土地利用/土地覆盖已发生并继续发生重大变化。干旱地区径流的性质和土地利用/土地覆被变化的影响在很大程度上尚未量化。这项研究的目的是研究德克萨斯州西部干旱地区跨多个时空尺度的径流动态和土地覆盖的影响。该研究包括四个主要部分:(1)在霍尼克里克高地流域(19公顷)进行的一项实验研究,以水文法和同位素方法评估植被对径流的影响; (2)对二阶Honey Creek流域高地与低地之间的水文联系进行水化学评估; (3)在北康乔河流域进行详细的降水-流量分析,以评估长期和大规模的降水-流量-植被动态; (4)比较北,中和南康乔河流域的水流,并分析整个德克萨斯州西部的区域水流趋势。研究表明,得克萨斯州西部干旱地区的径流生产主要由一些大型径流产生事件主导。小流域实验表明,当去除60%的木本植物时,径流每年增加约40毫米。这种影响可能与基流成分的存在有关,但并未在爱德华兹高原地区的大部分河流都是春季喂养的地区趋势分析中得到证实。 1950年代后,北康乔河流域的水流量减少,在很大程度上与放牧压力降低和植被覆盖度提高而增加了入渗能力有关。区域流量趋势分析表明,尽管人工蓄水使分析复杂化,但爱德华兹高原地区以外的一些源头地区的流量变化模式与北康乔河流域相似。在评估生态系统结构变化对水文和水资源的影响时,该研究在特定地区和特定植被类型之外的生态水文学研究中具有更广泛的应用。

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