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Open Access research that is tackling the climate emergency...

Addressing the energy challenge confronting society is a strategic research theme for Strathclyde. Researchers from across the institution, spanning multiple disciplines, are therefore working together to understand ways of reducing the environmental impacts of energy use, improving energy efficiency, coping with declining fossil fuel supplies, managing an ageing energy infrastructure, and devising policy or economic levers to achieve higher penetration of renewable energy systems and technologies. Strathprints makes this scholarly research content available Open Access thereby ensuring results are available to everyone in order meet the global climate challenge.

Explore some of this Open Access research from the departments of Mechanical & Aerospace Engineering, Electronic & Electrical Engineering, Civil & Environmental Engineering, Naval Architecture, Ocean & Marine Engineering, Economics, Entrepreneurship and the School of Government & Public Policy.

Or explore all of Strathclyde's Open Access research...

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Group by: Publication Date | Item type | No Grouping
Jump to: 2015 | 2014 | 2013 | 2012 | 2011 | 2010
Number of items: 12.

2015

Meng, Jian-Ping and Zhang, Yonghao and Reese, Jason (2015) Numerical simulation of rarefied gas flows with specified heat flux boundary conditions. Communications in Computational Physics, 17 (5). pp. 1185-1200. ISSN 1815-2406

2014

Meng, Jian-Ping and Dongari, Nishanth and Reese, Jason and Zhang, Yonghao (2014) Breakdown parameter for kinetic modeling of multiscale gas flows. Physical Review E, 89 (6). 063305. ISSN 1539-3755

Meng, Jian-Ping and Zhang, Yonghao (2014) Diffuse reflection boundary condition for high-order lattice Boltzmann models with streaming-collision mechanism. Journal of Computational Physics, 258. pp. 601-612. ISSN 0021-9991

2013

Meng, Jian-Ping and Wu, Lei and Reese, Jason and Zhang, Yonghao (2013) Assessment of the ellipsoidal-statistical Bhatnagar-Gross-Krook model for force-driven Poiseuille flows. Journal of Computational Physics, 251. pp. 385-395. ISSN 0021-9991

Meng, Jian-Ping and Zhang, Yonghao and Hadjiconstantinou, Nicolas and Radtke, G.A. and Shan, Xiaowen (2013) Lattice ellipsoidal statistical BGK model for thermal non-equilibrium flows. Journal of Fluid Mechanics, 718. pp. 347-370. ISSN 0022-1120

2012

Wu, Lei and Meng, Jian-Ping and Zhang, Yonghao (2012) Kinetic modelling of the quantum gases in the normal phase. Proceedings of the Royal Society Part A - Mathematical, Physical and Engineering Sciences, 468 (2142). pp. 1799-1823. ISSN 1471-2962

Meng, Jian-Ping and Dongari, Nishanth and Reese, Jason and Zhang, Yonghao (2012) A kinetic switching criterion of hybrid modelling of multiscale gas flows. In: 1st European Conference on Gas Micro Flows, GAMEMS 2012, 2012-06-06 - 2012-06-08.

An, Hongyan and Zhang, Chuhua and Meng, Jian-Ping and Zhang, Yonghao (2012) Analytical solution of axi-symmetrical lattice Boltzmann model for cylindrical Couette flows. Physica A: Statistical Mechanics and its Applications, 391 (1-2). pp. 8-14. ISSN 0378-4371

2011

Meng, Jian-Ping and Zhang, Yonghao and Shan, Xiaowen (2011) Multiscale lattice Boltzmann approach to modeling gas flows. Physical Review E: Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics, 83 (4). 046701. ISSN 1063-651X

Meng, Jian-Ping and Zhang, Yonghao (2011) Gauss-Hermite quadratures and accuracy of lattice Boltzmann models for non-equilibrium gas flows. Physical Review E: Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics, 83 (3). Article 036704. ISSN 1063-651X

Meng, Jian-Ping and Zhang, Yonghao (2011) Accuracy analysis of high-order lattice Boltzmann models for rarefied gas flows. Journal of Computational Physics, 230 (3). pp. 835-849. ISSN 0021-9991

2010

Meng, Jian-Ping and Zhang, Yonghao (2010) Analytical solution for the lattice Boltzmann model beyond Naviers-Stokes. Advances in Applied Mathematics and Mechanics, 2 (5). pp. 670-676. ISSN 2070-0733

This list was generated on Tue May 26 02:24:00 2020 BST.