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Verification of the time evolution of cosmological simulations via hypothesis-driven comparative and quantitative visualization

机译:通过假设驱动的比较和定量可视化验证宇宙模拟的时间演化

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We describe a visualization-assisted process for the verification of cosmological simulation codes. The need for code verification stems from the requirement for very accurate predictions in order to interpret observational data confidently. We compare different simulation algorithms in order to reliably predict differences in simulation results and understand their dependence on input parameter settings. Our verification process consists of the integration of iterative hypothesis-verification with comparative, feature and quantitative visualization. We validate this process by verifying the time evolution results of three different cosmology simulation codes. The purpose of this verification is to study the accuracy of AMR methods versus other N-body simulation methods for cosmological simulations.
机译:我们描述了一种用于验证宇宙模拟代码的可视化辅助过程。对代码验证的需求源于对非常准确的预测的要求,以便能够自信地解释观测数据。我们比较不同的仿真算法,以便可靠地预测仿真结果中的差异,并了解它们对输入参数设置的依赖性。我们的验证过程包括迭代假设验证与比较,特征和定量可视化的集成。我们通过验证三种不同的宇宙学模拟代码的时间演化结果来验证此过程。验证的目的是研究AMR方法相对于其他N体模拟方法在宇宙学模拟中的准确性。

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