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Quantifying Errors In Trace Species Transport Modeling

机译:痕量物种迁移建模中的量化误差

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摘要

One expectation when computationally solving an Earth system model is that a correct answer exists, that with adequate physical approximations and numerical methods our solutions will converge to that single answer. With such hubris, we performed a controlled numerical test of the atmospheric transport of CO_2 using 2 models known for accurate transport of trace species. Resulting differences were unexpectedly large, indicating that in some cases, scientific conclusions may err because of lack of knowledge of the numerical errors in tracer transport models. By doubling the resolution, thereby reducing numerical error, both models show some convergence to the same answer. Now, under realistic conditions, we identify a practical approach for finding the correct answer and thus quantifying the advection error.
机译:在计算上求解地球系统模型时,人们期望存在一个正确的答案,即通过适当的物理近似和数值方法,我们的解决方案将收敛到该单个答案。在这种狂妄自大的情况下,我们使用了2种已知的微量物质精确传输模型来对CO_2的大气传输进行了受控数值测试。结果差异出乎意料地大,表明在某些情况下,由于对示踪剂传输模型中的数字错误缺乏了解,科学结论可能会出错。通过将分辨率加倍,从而减少数值误差,两个模型都显示出对同一答案的收敛性。现在,在现实条件下,我们找到一种实用的方法来找到正确的答案,从而量化对流误差。

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