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Solutions of ocean tide loading displacement, self-attraction and loading and ocean tides for an advanced 3D anelastic solid Earth model

Description: As a supplement to Huang et al. (2022) “The influence of sediments, lithosphere and upper mantle (anelastic) with lateral heterogeneity on ocean tide loading and ocean tide dynamics”, we provide for the advanced earth model LH-Lyon-3Dae [consisting of 3D elastic sediments, lithosphere and 3D anelastic upper mantle structures, see Huang et al.(2022) for details] the solutions of vertical ocean tide loading (OTL) displacement, self-attraction and loading (SAL) elevation, and ocean tides. Solutions for three tidal constituents, i.e., M2, K1 and Mf, are given. As a comparison, solutions based on the 1D elastic model PREM and the 1D anelastic LH-Lyon-1Dae are also presented. With these solutions, the primary results in Huang et al. (2022) such as the model amplitude differences, RMS differences and the predictions in GNSS stations can be reconstructed.

Global identifier:

Doi(
    "10.5880/GFZ.1.3.2022.004",
)

Types:

Origins: /Wissenschaft/GFZ Data Services

Tags: Meeresgewässer ? Sedimentdynamik ? Gezeiten ? Lithosphäre ? 3D modeling ? EARTH SCIENCE > OCEANS > TIDES > TIDAL HEIGHT ? EARTH SCIENCE > SOLID EARTH > ROCKS/MINERALS/CRYSTALS > SEDIMENTS ? anelsticity ? ocean tide dynamics ? ocean tide loading ? self-attraction and loading ?

License: cc-by/4.0

Language: Englisch/English

Organisations

Issued: 2022-01-01

Time ranges: 2022-01-01 - 2022-01-01

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