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melt‐quench method (2) 2
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anisotropic entropy (1) 1
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Fuel (Guildford), ISSN 0016-2361, 2014, Volume 124, pp. 232 - 240
...% to the total gas production. The shale gas reservoirs are rich in nano-micro scale pores. The flow regime and gas flow state are not clearly understood and applied to the hydraulic fractured wells, which is crucial for economic production of shale gas... 
Nano/macro scale | Fractured well | Productivity analysis | Multi-scale flow model | Shale gas reservoirs | ENGINEERING, CHEMICAL | ENERGY & FUELS | FLOW | Shale oils | Analysis | Productivity | Fracture mechanics | Mathematical analysis | Reservoirs | Mathematical models | Desorption | Diffusion | Shale gas
Journal Article
粘土科学, ISSN 0470-6455, 2008, Volume 47, Issue 4, pp. 234 - 239
Journal Article
Liquid Crystals: A Festschrift in honour of Professor John William Goodby FRS; Guest Editor: Stephen Cowling, ISSN 0267-8292, 10/2017, Volume 44, Issue 12-13, pp. 1755 - 1763
.... As a consequence of this macro-scale material, engineering by shape alone becomes a possibility, potentially more phases may be realised, and entropy is anisotropic. 
molecular grains | Anisotropic entropy | dense packing | nano/macro crossover | SMECTIC-C PHASE | POLYMERS | TRIMERS | BIMESOGENS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CRYSTALLOGRAPHY | CHEMISTRY, MULTIDISCIPLINARY | OLIGOMERS | TRANSITION | BEND NEMATIC PHASE | LIQUID-CRYSTAL DIMERS | NEMATOGENS | PROGRESSION | Entropy | Dimers | Mesophase | Topology | Polymers | Machining
Journal Article
12/2009, ISBN 9780470408407, 14
This chapter describes the usefulness of the 24.5CaO ‐ (27.5‐x)Na 2 O ‐ 6P 2 O 5 ‐ (42 + x)SiO 2 (wt%) (with x = 0‐10) bioactive glass series by introducing... 
phosphosilicate bioactive glass | microstructure | leaching process | nano‐macro porous soda‐lime | crystallization | melt‐quench method
Book Chapter
10/2007, ISBN 0470196408, 13
This chapter contains sections titled: Introduction Experimental Procedure Results and Discussion Conclusion Acknowledgement 
bioactive glass | calcium silicate | fabrication | nano‐.macro porous soda‐lime phosphosilicate | melt‐quench method
Book Chapter
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