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Computers & Geosciences, Volume 78
Volume 78, May 2015
- Huan Zhang, Xiaofan Li, Hanjie Song, Shaolin Liu:
An adaptive subspace trust-region method for frequency-domain seismic full waveform inversion. 1-14 - Junichi Takekawa, Hitoshi Mikada, Naoto Imamura:
A mesh-free method with arbitrary-order accuracy for acoustic wave propagation. 15-25 - Tomás Ferreirinha, Rúben Nunes, Leonardo Azevedo, Amílcar Soares, Frederico Pratas, Pedro Tomás, Nuno Roma:
Acceleration of stochastic seismic inversion in OpenCL-based heterogeneous platforms. 26-36 - Taghi Jokar Arsanjani, Reza Javidan, Mohamad Jafar Nazemosadat, Jamal Jokar Arsanjani, Eric Vaz:
Spatiotemporal monitoring of Bakhtegan Lake's areal fluctuations and an exploration of its future status by applying a cellular automata model. 37-43 - Hongda Hu, Hong Shu:
An improved coarse-grained parallel algorithm for computational acceleration of ordinary Kriging interpolation. 44-52 - Bruno Tourlière, Evren Pakyuz-Charrier, Daniel Cassard, Luc Barbanson, Charles Gumiaux:
Cell Based Associations: A procedure for considering scarce and mixed mineral occurrences in predictive mapping. 53-62 - Asier Lacasta, Carmelo Juez, Javier Murillo, Pilar García-Navarro:
An efficient solution for hazardous geophysical flows simulation using GPUs. 63-72
- Karel Jedlicka, Ján Sládek, Jakub Silhavý:
Semiautomatic construction of isobase surfaces: A case study from the central Western Carpathians. 73-80
- David Jones, Norm Jones, James Greer, Jim Nelson:
A cloud-based MODFLOW service for aquifer management decision support. 81-87 - Daniel C. Bowman, J. M. Lees:
Near real time weather and ocean model data access with rNOMADS. 88-95 - Sina Kashuk, Magued Iskander:
Reconstruction of three dimensional convex zones using images at model boundaries. 96-109 - Kai Liu, Guoan Tang, Ling Jiang, A-Xing Zhu, Jianyi Yang, Xiaodong Song:
Regional-scale calculation of the LS factor using parallel processing. 110-122 - Nilo C. Bobillo-Ares, Jesús Aller, Fernando Bastida, Omar Menéndez, Richard J. Lisle:
StrainModeler: A Mathematica™-based program for 3D analysis of finite and progressive strain. 123-132
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