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首页> 外文期刊>Frontiers in Plant Science >Call for Participation: Collaborative Benchmarking of Functional-Structural Root Architecture Models. The Case of Root Water Uptake
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Call for Participation: Collaborative Benchmarking of Functional-Structural Root Architecture Models. The Case of Root Water Uptake

机译:呼吁参与:功能结构根系结构模型的协同基准。根水吸收的情况

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Three-dimensional models of root growth, architecture and function are becoming important tools that aid the design of agricultural management schemes and the selection of beneficial root traits. However, while benchmarking is common in many disciplines that use numerical models, such as natural and engineering sciences, functional-structural root architecture models have never been systematically compared. The following reasons might induce disagreement between the simulation results of different models: different representation of root growth, sink term of root water and solute uptake and representation of the rhizosphere. Presently, the extent of discrepancies is unknown, and a framework for quantitatively comparing functional-structural root architecture models is required. We propose, in a first step, to define benchmarking scenarios that test individual components of complex models: root architecture, water flow in soil and water flow in roots. While the latter two will focus mainly on comparing numerical aspects, the root architectural models have to be compared at a conceptual level as they generally differ in process representation. Therefore, defining common inputs that allow recreating reference root systems in all models will be a key challenge. In a second step, benchmarking scenarios for the coupled problems are defined. We expect that the results of step 1 will enable us to better interpret differences found in step 2. This benchmarking will result in a better understanding of the different models and contribute toward improving them. Improved models will allow us to simulate various scenarios with greater confidence and avoid bugs, numerical errors or conceptual misunderstandings. This work will set a standard for future model development.
机译:根本增长,架构和功能的三维模型正在成为有助于设计农业管理计划和有益根特征的重要工具。然而,虽然基准在许多使用数字模型的许多学科中是常见的,但是使用自然和工程科学的数值模型,但功能结构根系结构模型从未系统地进行了系统。以下原因可能会导致不同模型的模拟结果之间的分歧:不同的根生长的表示,根水的沉降项和根际的溶质吸收和表示。目前,差异的程度是未知的,并且需要一种用于定量比较功能结构根系结构模型的框架。我们在第一步提出,定义测试复杂模型的各个组件的基准场景:根系结构,土壤中的水流和根部的水流。虽然后两个主要集中在比较数值方面,但必须在概念水平上比较根架构模型,因为它们通常在过程表示中通常不同。因此,定义允许在所有模型中重新创建引用根系系统的常见输入将是一个关键挑战。在第二步中,定义了耦合问题的基准测试场景。我们预计步骤1的结果将使我们能够更好地解释在步骤2中发现的差异。该基准将导致更好地了解不同的模型并有助于改善它们。改进的模型将使我们能够模拟各种场景,更有信心,避免错误,数值错误或概念性误解。这项工作将为未来的模型开发设定标准。

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