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Unravelling the physical template of a terminal flood plain-wetland sediment storage system

机译:解开终端洪水平原沉积物存储系统的物理模板

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Flood plain-wetlands are hotspots of biological diversity and productivity, especially in semiarid environments and this is driven by water subsidies as well as the physical and chemical properties of flood plain- wetland soils. The purpose of this study is to examine surface soil characteristics in a complex, spatially diverse terminal flood plain-wetland to determine whether the surface soil characteristics follow a hydraulic gradient or reflect the more complex spatial mosaic Surface soil samples (16.3) were collected from a regular grid with an average spacing of 1.8 km Multivariate statistical analyses were performed to elicit spatial patterns in soil character and a series of surface maps of soil characteristics were derived to further explore spatial patterns within the flood plain-wetland complex. Results show surface soil characteristics to be spatially heterogeneous at multiple spatial scales and more complex than can be described by a series of hydraulic gradients.
机译:洪水平原湿地是生物多样性和生产力的热点,特别是在半干旱环境中,这是由水补贴驱动的,以及洪水湿地土壤的物理和化学性质。本研究的目的是检查一个复杂的空间多样化的终端洪水平原表面土壤特性,以确定表面土壤特性是否遵循液压梯度或反射更复杂的空间马赛克表面土壤样品(16.3)从a中收集常规网格具有1.8 km多变量统计分析的平均间隔,以引发土壤特性的空间模式,并得出一系列土壤特性的表面图,以进一步探索洪水平原复合物内的空间模式。结果显示在多个空间尺度上具有空间异质的表面土壤特性,并且比通过一系列液压梯度描述的更复杂。

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