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Effect of changing vegetation and precipitation on denudation – Part?2: Predicted landscape response to transient climate and vegetation cover over millennial to million-year timescales

机译:改变植被和降水对裸露的影响 - 部分?2:预测对千禧一年的瞬间气候和植被覆盖的景观响应

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We present a numerical modeling investigation into the interactions between transient climate and vegetation cover with hillslope and detachment limited fluvial processes. Model simulations were designed to investigate topographic patterns and behavior resulting from changing climate and the associated changes in surface vegetation cover. The Landlab surface process model was modified to evaluate the effects of temporal variations in vegetation cover on hillslope diffusion and fluvial erosion. A suite of simulations were conducted to represent present-day climatic conditions and satellite derived vegetation cover at four different research areas in the Chilean Coastal Cordillera. These simulations included steady-state simulations as well as transient simulations with forcings in either climate or vegetation cover over millennial to million-year timescales. Two different transient variations in climate and vegetation cover including a step change in climate or vegetation were used, as well as 100kyr oscillations over 5Myr. We conducted eight different step-change simulations for positive and negative perturbations in either vegetation cover or climate and six simulations with oscillating transient forcings for either vegetation cover, climate, or oscillations in both vegetation cover and climate. Results indicate that the coupled influence of surface vegetation cover and mean annual precipitation shifts basin landforms towards a new steady state, with the magnitude of the change being highly sensitive to the initial vegetation and climate conditions of the basin. Dry, non-vegetated basins show higher magnitudes of adjustment than basins that are situated in wetter conditions with higher vegetation cover. For coupled conditions when surface vegetation cover and mean annual precipitation change simultaneously, the landscape response tends to be weaker. When vegetation cover and mean annual precipitation change independently from one another, higher magnitude shifts in topographic metrics are predicted. Changes in vegetation cover show a higher impact on topography for low initial surface cover values; however, for areas with high initial surface cover, the effect of changes in precipitation dominate the formation of landscapes. This study demonstrates the sensitivity of catchment characteristics to different transient forcings in vegetation cover and mean annual precipitation, with initial vegetation and climate conditions playing a crucial role.
机译:我们对山坡和脱离限制频道过程进行了数值建模调查,进入瞬态气候和植被覆盖物之间的相互作用。模型模拟旨在调查因改变气候和表面植被覆盖的相关变化而导致的地形模式和行为。修改了Landlab表面过程模型,以评估植被覆盖对山坡扩散和河流侵蚀的时间变化的影响。进行了一套模拟,以代表智利沿海科特纳州四个不同研究领域的日期气候条件和卫星衍生的植被覆盖。这些模拟包括稳态模拟以及气候或植被覆盖的强制瞬态模拟,超过千禧一年的时间尺度。使用包括气候或植被的步骤变化的气候和植被覆盖的两种不同的瞬态变化,以及100kyr振荡超过5myr。我们在植被覆盖或气候中进行了八种不同的步骤变化模拟,以及六种模拟,具有植被覆盖,气候或植被覆盖和气候中的植被覆盖,气候或振动的振荡。结果表明,表面植被覆盖的耦合影响和平均年降水将盆地地貌朝向新的稳态转移,变化的大小对盆地的初始植被和气候条件非常敏感。干燥的非植被盆地显示比位于具有更高植被覆盖物的湿润条件下的盆地更高的调节幅度。对于耦合条件,当表面植被覆盖和平均年降水同时变化时,景观响应趋于较弱。当植被覆盖和平均年降水量彼此独立变化时,预测了地形指标中的更高幅度变化。植被覆盖的变化对低初始表面覆盖值的地形产生更高的影响;然而,对于具有高初始表面覆盖的区域,降水变化的影响主导了景观的形成。本研究表明,在植被覆盖和平均年降水中,集水特征对不同瞬态强制的敏感性,初始植被和气候条件发挥了至关重要的作用。

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