Sea Surface Heights and Marine Gravity Determined from SARAL/AltiKa Ka-band Altimeter Over South China Sea

Author:

Zhu Chengcheng,Liu Xin,Guo Jinyun,Yu Shengwen,Niu Yupeng,Yuan Jiajia,Li Zhen,Gao Yonggang

Funder

National Natural Science Foundation of China

SDUST Research Fund

Fujian Natural Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics

Reference36 articles.

1. Andersen, O. B., Jain, M., & Knudsen, P. (2015). The impact of using Jason-1 and Cryosat-2 geodetic mission altimetry for gravity field modeling. In C. Rizos & P. Willis (Eds.), IAG 150 Years. (pp. 205–210). Springer. https://doi.org/10.1007/1345_2015_95.

2. Andersen, O. B., Knudsen, P., & Stenseng, L. (2015). The DTU13 MSS (mean sea surface) and MDT (mean dynamic topography) from 20 years of satellite altimetry. In S. Jin & R. Barzaghi (Eds.), IGFS 2014. (pp. 111–121). Springer. https://doi.org/10.1007/1345_2015_182.

3. Andersen, O. B., Knudsen, P., & Stenseng, L. (2018). A new DTU18 MSS mean sea surface—improvement from SAR altimetry. 25 Years of Progress in Radar Altimetry Symposium. Abstracts, 172.

4. Babu, K. N. (2014). Absolute calibration of SARAL-AltiKa in Kavaratti during its initial calibration validation phase. SARAL International Science and Applications Meeting. http://www.aviso.altimetry.fr/fileadmin/documents/ScienceTeams/Saral2014/22-04-2014/Session-3/KNBabuAltiKaApril2014.pdf

5. Brown, G. S. (1977). The average impulse response of a rough surface and its applications. IEEE Journal of Ocean Engineering, 2(1), 67–74.

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