遇见数据集

Centroid Moment Tensor solutions for the earthquake dataset of the project IMAGINE_IT

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Zenodo2022-02-07 更新2026-05-25 收录
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The project IMAGINE_IT (PI Dr. Dimitri Komatitsch) received 40 million CPU-hours on the Tier-0 GENCI/TGCC CURIE supercomputer as a winner of the 9th PRACE consortium call (2014). The awarded computational resources allowed us to construct a new 3D tomographic model for the Italian lithosphere, <em>Im25</em>,<em> </em>by combining spectral-element three-dimensional wavefield simulations and an adjoint-state method. To obtain the final model <em>Im25, </em>we performed 25 adjoint tomography iterations. Moreover, two additional source inversion iterations have been performed in order to improve the earthquake source parameter estimates and reduce the misfit between observed and synthetic seismograms: one inversion using the 3D wavespeed model considered as starting model of the tomographic procedure, and one inversion for the improved wavespeed model at iteration 12 (<em>Im12</em>). The presented table contains the Centroid Moment Tensor parameters of the163 earthquakes considered in the IMAGINE_IT project for: the initial (Time Domain Moment Tensor; http://terremoti.ingv.it/) source solution based on a 1D wavespeed model (iter=0), the source inversion solution with the starting 3D wavespeed model (iter=1), and the source inversion solution with model <em>Im12</em> (iter=2). <strong> </strong>

由Dimitri Komatitsch博士担任首席研究员的IMAGINE_IT项目,作为2014年第9届PRACE联盟申请的中标项目,获得了Tier-0级GENCI/TGCC CURIE超级计算机的4000万CPU小时算力支持。本次获批的计算资源使得我们能够结合谱元法三维波场模拟与伴随状态法(adjoint-state method),构建出针对意大利岩石圈的全新三维层析成像模型**Im25**。为得到最终模型Im25,我们共开展了25次伴随层析成像迭代。此外,为优化地震震源参数估计、降低观测地震图与合成地震图之间的残差,我们额外完成了两次震源反演迭代:一次采用作为层析成像流程初始模型的三维波速模型,另一次针对第12次迭代得到的优化波速模型(**Im12**)。本次提供的表格收录了IMAGINE_IT项目所涉及的163次地震的质心矩张量(Centroid Moment Tensor)参数,涵盖三类震源解:基于一维波速模型的初始(时域矩张量;http://terremoti.ingv.it/)震源解(迭代次数iter=0)、使用初始三维波速模型的震源反演解(iter=1),以及使用模型Im12的震源反演解(iter=2)。

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Zenodo
创建时间:
2022-02-07
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