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Abrupt Change in Forest Height along a Tropical Elevation Gradient Detected Using Airborne Lidar

机译:使用机载激光雷达探测到的热带高度沿热带海拔梯度的突然变化

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Most research on vegetation in mountain ranges focuses on elevation gradients as climate gradients, but elevation gradients are also the result of geological processes that build and deconstruct mountains. Recent findings from the Luquillo Mountains, Puerto Rico, have raised questions about whether erosion rates that vary due to past tectonic events and are spatially patterned in relation to elevation may drive vegetation patterns along elevation gradients. Here we use airborne light detection and ranging (LiDAR) technology to observe forest height over the Luquillo Mountain Range. We show that models with different functional forms for the two prominent bedrock types best describe the forest height-elevation patterns. On one bedrock type there are abrupt decreases in forest height with elevation approximated by a sigmoidal function, with the inflection point near the elevation of where other studies have shown there to be a sharp change in erosion rates triggered by a tectonic uplift event that began approximately 4.2 My ago. Our findings are consistent with broad geologically mediated vegetation patterns along the elevation gradient, consistent with a role for mountain building and deconstructing processes.
机译:大部分关于山区植被的研究都将海拔梯度作为气候梯度,但海拔梯度也是构造和破坏山脉的地质过程的结果。来自波多黎各卢基洛山脉的最新发现提出了这样一个问题,即侵蚀速率是否因过去的构造事件而变化并且相对于海拔高度呈空间格局,可能会沿海拔梯度推动植被格局。在这里,我们使用机载光检测和测距(LiDAR)技术来观察卢奎洛山脉上空的森林高度。我们表明,对于两种主要基岩类型,具有不同功能形式的模型可以最好地描述森林的高程格局。在一种基岩类型上,森林高度突然下降,其高度近似于S形函数,拐点接近高程,而其他研究表明,这种高岭土的侵蚀率急剧变化是由于构造隆升事件开始的,而这种隆起始于4.2我的前任我们的发现与沿海拔梯度的宽广地质介导的植被格局一致,与山区建设和解构过程的作用一致。

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