Introduction of COMPES: Finding directions in energy and computational science
Keywords:
COMPES, New Journal, Energy Science, Computational ScienceAbstract
Energy is the material foundation on which we rely for survival and development, and the level of energy consumption and utilization is an important indicator of national economic development and people's living standards. The energy system is highly complex; it includes facilities, technology, and knowledge systems related to energy resource endowments, production, storage and transportation, consumption, as well as elements including government, energy enterprises, energy consumers, energy policies and regulations.
Cited as: Sun, S., Firoozabadi, A., Wheeler, M. Introduction of COMPES: Finding directions in energy and computational science. Computational Energy Science, 2024, 1(1): 1-2. https://doi.org/10.46690/compes.2024.01.01
References:
Afra, S., Alhosani, M., Firoozabadi, A. Improvement in CO2 geo-sequestration in saline aquifers by viscosification: from molecular scale to core scale. International Journal of Greenhouse Gas Control, 2023, 125: 103888.
Chen, Z. Reservoir simulation: mathematical techniques in oil recovery. United States of America, Society for Industrial and Applied Mathematics, 2007.
Cui, R., Hassanizadeh, S. M., Sun, S. Pore-network modeling of flow in shale nanopores: Network structure, flow principles, and computational algorithms. Earth-Science Reviews, 2022, 234: 104203.
Jin, Z., Firoozabadi, A. Flow of methane in shale nanopores at low and high pressure by molecular dynamics simulations. The Journal of Chemical Physics, 2015, 143(10).
Lu, X., Jordan, K. E., Wheeler, M. F., et al. Bayesian optimization for field-scale geological carbon storage. Engineering, 2022, 18: 96-104.
Myint, P. C., Firoozabadi, A. ”Thermodynamics of flat thin liquid films.” AIChE Journal, 2015, 61(9): 3104-3115.
Sun, S., Wheeler, M. F. Discontinuous galerkin methods for coupled flow and reactive transport problems. Applied Numerical Mathematics, 2005, 52(2-3): 273-298.
Sun, S., Zhang, T. Reservoir simulations: Machine learning and modeling. USA, Gulf Professional Publishing, 2020.
Wheeler, M. F., Wick, T., Lee, S. IPACS: Integrated Phase Field Advanced Crack Propagation Simulator. An adaptive, parallel, physics-based-discretization phase-field framework for fracture propagation in porous media. Computer Methods in Applied Mechanics and Engineering, 2020, 367: 113124.
Zhang, T., Zhang, Y., Katterbauer, K., et al. Hoteit, I. Phase equilibrium in the hydrogen energy chain. Fuel, 2022, 328: 125324.
Zhang, T., Liu, J., Sun, S. Technology transition from tranditional oil and gas reservoir simulation to the nextgeneration energy development. Advances in Geo-Energy Research, 2023, 7(1): 69–70.
Zhang, T., Zhang, Y., Katterbauer, K., et al. Deep learning–assisted phase equilibrium analysis for producing natural hydrogen. International Journal of Hydrogen Energy, 2024, 50: 473-486.