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首页> 外文期刊>Vadose zone journal VZJ >The Intensively Managed Landscape Critical Zone Observatory: A Scientific Testbed for Understanding Critical Zone Processes in Agroecosystems
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The Intensively Managed Landscape Critical Zone Observatory: A Scientific Testbed for Understanding Critical Zone Processes in Agroecosystems

机译:集中管理横向关键区域天文台:一个科学测试,用于了解农业系统中的关键区域进程

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In intensively managed landscapes, interactions between surface (tillage) and subsurface (tile drainage) management with prevailing climate/weather alter landscape characteristics, transport pathways, and transformation rates of surface/ subsurface water, soil/sediment, and particulate/dissolved nutrients. To capture the high spatial and temporal variability of constituent transport and residence times in the critical zone (between the bedrock and canopy) of these altered landscapes, both storm event and continuous measurements are needed. The Intensively Managed Landscapes Critical Zone Observatory (IML-CZO) is comprised of three highly characterized, well instrumented, and representative watersheds (i.e., Clear Creek, Iowa; Upper Sangamon River, Illinois; and Minnesota River, Minnesota). It is organized to quantify the heterogeneity in structure and dynamic response of critical zone processes to human activities in the context of the glacial and management (anthropogenic) legacies. Observations of water, sediment, and nutrients are made at nested points of the landscape in the vertical and lateral directions during and between storm events (i.e., continuously). The measurements and corresponding observational strategy are organized as follows. First, reference measurements from surface soil and deep core extractions, geophysical surveys, lidar, and hyperspectral data, which are common across all Critical Zone Observatories, are available. The reference measurements include continuous quantification of energy, water, solutes, and sediment fluxes. The reference measurements are complemented with event-based measurements unique to IML-CZO. These measurements include water table fluctuations, enrichment ratios, and roughness as well as bank erosion, hysteresis, sediment sources, and lake/floodplain sedimentation. The coupling of reference and event-based measurements support testing of the central hypothesis (i.e., system shifts from transformer to transporter in IML-CZO due to the interplay between management and weather/climate). Data collected since 2014 are available through a data repository and through the Geodashboard interface, which can be used for process-based model simulations.
机译:在集中管理的景观中,表面(耕作)和地下(瓦片排水)的相互作用,具有普遍的气候/天气改变景观特征,运输途径和表面/地下水,土壤/沉积物和颗粒/溶解营养素的转化率。为了在这些改变的景观的临界区(基岩和遮篷之间)中的构成传输和停留时间的高空间和时间可变性,需要暴雨事件和连续测量。集中管理的景观临界区观测站(IML-CZO)由三种高度特征,良好的仪器和代表性的流域组成(即,Clear Creek,爱荷华州;伊利诺伊州上桑蒙河;和明尼苏达河,明尼苏达州)。有组织,以量化冰川和管理(人为)遗产的背景下对临界区流程的结构和动态响应的异质性。在垂直和横向期间和横向方向之间的垂直和横向方向的嵌套点(即,连续)之间的嵌套观察,在横向方向上的嵌套点进行观察。测量和相应的观察策略如下组织。首先,从地表土壤和深核心提取,地球物理调查,激光雷达和高光谱数据中,可以获得各种关键区域观察员的参考测量。参考测量包括连续定量能量,水,溶质和沉积物助熔剂。参考测量与IML-CZO独特的基于事件的测量额相互补。这些测量包括水表波动,富集比和粗糙度以及银行侵蚀,滞后,沉积物来源和湖泊/洪泛区沉降。基于参考和事件的测量的耦合支持中央假设的测试(即,由于管理和天气/气候之间的相互作用,从IML-CZO中的变压器转移到IML-CZO中的转运器。自2014年以来收集的数据可通过数据存储库和通过地理柜接口获得,可用于基于过程的模型模拟。

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