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大洋中脊热流的分形密度与奇异性分析。

Fractal density and singularity analysis of heat flow over ocean ridges.

作者信息

Qiuming Cheng

机构信息

Earth and Space Science and Engineering, York University, Toronto, M3J1P3, Canada.

State Key Lab of Geological Processes and Mineral Resources, China University of Geosciences, Beijing 100083, Wuhan 430074, China.

出版信息

Sci Rep. 2016 Jan 13;6:19167. doi: 10.1038/srep19167.

Abstract

Peak heat flow occurs at mid-ocean ridges and decreases with the age of the oceanic lithosphere. Several plate models, including the Parsons and Sclater (PSM) model, Global Depth and Heat (GDH1) model and Constant Heat flow Applied on the Bottom Lithospheric Isotherm (CHABLIS) model, have been used to predict heat flow in the ocean lithosphere. The discrepancy between the predicted and measured heat flow in the younger lithosphere (i.e. younger than 55 Myr) influenced by local hydrothermal circulation has been used to estimate hydrothermal heat flux and investigate hydrothermal processes. We can modify the cooling models by substituting the ordinary mass density of lithosphere by fractal density with singularity. This new model provides a modified solution to fit the observed heat flow data used in other models in the literature throughout the age range. This model significantly improves the results for prediction of heat flow that were obtained using the PSM, GDH1 and CHABLIS models. Furthermore, the heat flow model does not exhibit special characteristics around any particular age of lithosphere. This raises a fundamental question about the existence of a "sealing" age and accordingly the hydrothermal flux estimation based on the cooling models.

摘要

峰值热流出现在大洋中脊,并随着大洋岩石圈的年龄增长而降低。包括帕森斯和斯克莱特(PSM)模型、全球深度与热(GDH1)模型以及应用于底部岩石圈等温线的恒定热流(CHABLIS)模型在内的几种板块模型,已被用于预测大洋岩石圈中的热流。受局部热液循环影响的较年轻岩石圈(即年龄小于5500万年)中预测热流与实测热流之间的差异,已被用于估算热液热通量并研究热液过程。我们可以通过用具有奇异性的分形密度替代岩石圈的普通质量密度来修改冷却模型。这个新模型提供了一个修正解,以拟合文献中其他模型在整个年龄范围内所使用的观测热流数据。该模型显著改善了使用PSM、GDH1和CHABLIS模型获得的热流预测结果。此外,热流模型在岩石圈的任何特定年龄附近都没有表现出特殊特征。这就引发了一个关于“封闭”年龄的存在以及相应地基于冷却模型的热液通量估算的基本问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f035/4725826/94f207df5bc1/srep19167-f1.jpg

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