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A Resource Allocation Framework for Experiment-Based Validation of Numerical Models

机译:基于实验的数值模型验证的资源分配框架

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摘要

In experiment-based validation, uncertainties and systematic biases in model predictions are reduced by either increasing the amount of experimental evidence available for model calibration-thereby mitigating prediction uncertainty-or increasing the rigor in the definition of physics and/or engineering principles-thereby mitigating prediction bias. Hence, decision makers must regularly choose between either allocating resources for experimentation or further code development. The authors propose a decision-making framework to assist in resource allocation strictly from the perspective of predictive maturity and demonstrate the application of this framework on a nontrivial problem of predicting the plastic deformation of polycrystals.
机译:在基于实验的验证中,通过增加可用于模型校准的实验证据的数量(从而减轻预测的不确定性)或增加物理和/或工程原理的定义的严格性,来减少模型预测中的不确定性和系统偏差。预测偏差。因此,决策者必须定期在为实验分配资源或进一步开发代码之间进行选择。作者提出了一个决策框架,严格从预测成熟度的角度协助资源分配,并证明了该框架在预测多晶塑性变形的非平凡问题上的应用。

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