Collaborative Research: Hillslope hydrology under glass: Controlled experimental testing of hillslope-scale hydrologic transport theories at Biosphere2
Collaborative Research: Hillslope hydrology under glass: Controlled experimental testing of hillslope-scale hydrologic transport theories at Biosphere2
批准号:
1344552
负责人:
Peter Troch
金额:
$29.18万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-03-01 至 2018-02-28
中文摘要
由于景观的复杂性以及控制流动和运输的过程,溶质在山坡和流域的运输是难以预测的。目前的方法使用从小尺度观测中得到的过程描述,利用尺度相关参数的有效值,在更大的尺度上进行预测。然而,众所周知,这种范式是有缺陷的,因为在许多情况下,参数不能轻易测量或预测。人们越来越频繁地呼吁建立新的理论,以便更好地将大规模预测与景观的可观察特性联系起来。最近发展了一个新的理论框架来表示山坡和流域尺度上的溶质运移。然而,作为关键要素的“年龄函数”,其框架是不完整的,没有从理论上加以规定,必须进行实证研究。这些函数描述了如何从系统内不同年龄的水分布中选择离开系统的水。如果这些年龄函数可以从现有的景观数据中参数化,那么这个框架将为山坡和流域尺度上的运输建模提供一个严格的替代方案,从而规避其他方法面临的一些与尺度相关的挑战。该项目将利用生物圈2上新的景观演化观测站(LEO)研究设施,使用一套新颖的示踪实验,在山坡尺度上直接观察这些年龄函数的形状。该设施可用于在三个330平方米的人工山坡上创建精确控制和复制的流动和运输现象,并通过1500多个传感器和500个土壤水采样器以前所未有的空间和时间分辨率观察它们。使用稳定水同位素示踪剂的精心设计的实验序列将用于直接测量这些年龄函数,并使用专门为此目的开发的名为PERTH(周期示踪等级)的新型实验程序将其性质与流道结构联系起来。该项目有四个目标:1)直接测量近地轨道的年龄函数;2)利用综合建模方法来理解年龄函数与坡下结构之间的关系,并将实证结果推广到更广泛的景观单元类别中;3)检验一系列关于年龄函数控制的假设,为构建可操作理论铺平道路;4)提出并验证了可编码于流域尺度输运业务模型的年龄函数的功能形式。科学家、管理者和决策者需要工具来预测溶质在大空间尺度上通过景观的运动,例如从农业流域分布的肥料中氮的运动。目前最先进的模型无法捕捉这种传输的许多特征,因为它们所依赖的参数无法在景观中进行足够详细的测量。该项目将推进一种新的运输建模方法,这种方法不依赖于这些精细尺度的参数,而是直接在山坡的尺度上进行预测。这一理论比通常用于大规模预测的模型更为普遍,后者依赖于对运输过程的限制性假设,或者没有充分考虑到在风暴、季节和气候变化下流经景观的流量变化对运输的影响。本项目将培养两名博士生和几名本科生,研究水文实验和环境建模的新方法。此外,生物圈2号是一个科学教育中心,每年有10万人参观该设施,这项工作将成为该设施的一部分。美国的教育计划。
英文摘要
The transport of solutes through hillslopes and watersheds is difficult to predict due to the complexity of the landscape and the processes controlling flow and transport. The current approaches use process descriptions derived from observations at small scales to make predictions at much larger scales, using effective values of the scale dependent parameters. However, this paradigm is known to be flawed, as in many cases the parameters cannot be measured or predicted easily. Increasingly frequent calls have been made for new theories that better link large-scale predictions to observable properties of the landscape. A new theoretical framework has recently been developed to represent solute transport at hillslope and watershed scales. However the framework is incomplete as a key element, the "age functions", is not specified from theory and must be investigated empirically. These functions characterize how the water leaving the system is selected from the distribution of water of different ages within the system. If these age functions could be parameterized from available landscape data, this framework would provide a rigorous alternative for modeling transport at hillslope and watershed scales that circumvents some of the scale-related challenges other methods face. This project will use the new Landscape Evolution Observatory (LEO) research facility at Biosphere2 to directly observe the shape of these age functions at a hillslope scale using a novel set of tracer experiments. This facility can be used to create precisely controlled and replicated flow and transport phenomena in three 330 m2 artificial hillslopes, and observe them with an unprecedented spatial and temporal resolution with over 1,500 sensors and 500 soil water samplers. A carefully designed sequence of experiments using stable water isotope tracers will be used to directly measure these age functions and relate their properties to the structure of flow paths using a novel experimental procedure entitled PERTH (PERiodic Tracer Hierarchy), developed specifically for this purpose. This project has four goals: 1) to make direct measurements of the age function in the LEO; 2) to use an integrated modeling approach to understand the relationship between the age function and underlying hillslope structure, and generalize the empirical findings to a broader class of landscape units 3) to test a series of hypotheses about the controls on the age function that pave the way towards an operational theory; and 4) to propose and test functional forms of the age functions that can be encoded in operational models of watershed-scale transport. Scientists, managers and policy-makers need tools to predict the movement of solutes through the landscape at large spatial scales, such as the movement of nitrogen from fertilizer distributed across agricultural watersheds into streams. Current state-of-the-art models are not able to capture many of the features of this transport, because the parameters they rely on cannot be measured at sufficiently fine detail in the landscape. This project will advance a new approach to modeling transport that does not rely on these fine-scale parameters, but instead makes predictions directly at the scale of hillslopes. This theory is more general than the models typically used for large-scale predictions, which rely on restrictive assumptions about the transport processes, or do not adequately account for the effect on transport of changes in flow through the landscape across storms, seasons and under climate change. This project will train two PhD students and several undergraduate students in new methods for hydrologic experimentation and environmental modeling. Furthermore, Biosphere2 is a hub of science education with 100,000 people visiting the facility each year, and this work will form part of the facility?s educational program.
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Hydrologic closure relationships at different levels of hillslope model complexity
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批准号:2120113
-
项目类别:Standard Grant
-
资助金额:$50.79万
-
财政年份:2021
-
负责人:Peter Troch
-
依托单位:
ACQUISITION OF AN INSTRUMENTATION ARRAY TO MONITOR AND MODEL WATER, CARBON AND ENERGY FLUXES AT THE HILLSLOPE SCALE IN THE LANDSCAPE EVOLUTION OBSERVATORY
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批准号:1340912
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项目类别:Standard Grant
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资助金额:$18.83万
-
财政年份:2014
-
负责人:Peter Troch
-
依托单位:
COLLABORATIVE RESEARCH: COUPLED HYDROLOGICAL AND GEOCHEMICAL PROCESS EVOLUTION AT THE LANDSCAPE EVOLUTION OBSERVATORY
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批准号:1417097
-
项目类别:Continuing Grant
-
资助金额:$48.63万
-
财政年份:2014
-
负责人:Peter Troch
-
依托单位:
NSF/AGU CHAPMAN CONFERENCE PROPOSAL: SOIL-MEDIATED DRIVERS OF COUPLED BIOGEOCHEMICAL AND HYDROLOGICAL PROCESSES ACROSS SCALES
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批准号:1342558
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项目类别:Standard Grant
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资助金额:$4.0万
-
财政年份:2013
-
负责人:Peter Troch
-
依托单位:
Collaborative Research: Biotic alteration of soil hydrologic properties and feedback with vegetation dynamics in water limited ecosystems
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批准号:0910666
-
项目类别:Standard Grant
-
资助金额:$13.94万
-
财政年份:2009
-
负责人:Peter Troch
-
依托单位:
Collaborative Research: Understanding the Hydrologic Implications of Landscape Structure and Climate -- Towards a Unifying Framework of Watershed Similarity
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批准号:0635770
-
项目类别:Continuing Grant
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资助金额:$15.88万
-
财政年份:2007
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负责人:Peter Troch
-
依托单位:
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