日本地球惑星科学連合2021年大会

講演情報

[J] ポスター発表

セッション記号 S (固体地球科学) » S-SS 地震学

[S-SS05] 地殻変動

2021年6月3日(木) 17:15 〜 18:30 Ch.10

コンビーナ:加納 将行(東北大学理学研究科)、落 唯史(国立研究開発法人産業技術総合研究所 地質調査総合センター 活断層・火山研究部門)、富田 史章(国立研究開発法人 海洋研究開発機構)

17:15 〜 18:30

[SSS05-P09] 海洋潮汐荷重効果計算プログラムGOTIC2の改良
ー海岸近くの孔内ひずみ理論値計算のためのグリーン関数の適用ー

上垣内 修1,2、*松本 則夫2、弘瀬 冬樹3 (1.一般財団法人 気象業務支援センター、2.産業技術総合研究所 地質調査総合センター、3.気象研究所 地震津波研究部)

キーワード:GOTIC2, 海洋潮汐荷重、グリーン関数、ひずみ、地下での観測

We modified computer software GOTIC2 (Matsumoto et al., 2001) for estimating the crustal deformation caused by ocean tidal loading to enable calculation of the loading effect not only at the surface but also in subsurface observations using the PREM Earth model. To modify the software, we (i) revised the eigenfunctions using the PREM Earth model and (ii) calculated Green’s functions of displacements and strains caused by a surface load in surface and subsurface observations by applying the eigenfunction. Green’s functions of displacements and strains at depth became different from those at the surface for a range of angular distance less than 0.01 – 0.1° . These Green’s functions closely agree with the corresponding Boussinesq approximations for tidal loading at angular distances of less than about 0.01 – 0.001° , which supports the adequacy of these Green’s functions. We examined the difference between the ocean tidal loading effect estimated by Green’s functions at the surface and the effect for subsurface observations based on very simple and realistic conditions, and found a non-negligible difference when the ratio of deployment depth to distance between the coast and observatory is larger than 0.05. We compared amplitudes and phase shifts of areal and shear strains in M2 and O1 tidal constituents observed by borehole strainmeters at 11 observatories with the theoretical strains using the Green’s functions at the deployment depth and those at the surface. The theoretical strains using Green’s function at the deployment depth are much closer to the observed strains than theoretical strains at the surface at four observatories where the ratios of deployment depth to distance from the coast to the observatories are large. These results suggest that Green’s functions at the deployment depth are needed to estimate theoretical strains precisely near the coast. The computer program modified GOTIC2 with the Green’s functions of gravity, displacement, tilt, and strain at depth was published in GSJ Open-File Report (https://www.gsj.jp/publications/pub/openfile/openfile0705.html).