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  2. Institute of Theoretical Geophysics

    www.itg.cam.ac.uk/research.html
    26 Feb 2021: Vulcanology. Computational geophysics. Geomorphology. and we are keen to enter new areas of Earth and Planetary Sciences that will benefit from quantitative analysis.
  3. Institute of Theoretical Geophysics

    www.itg.cam.ac.uk/people.html
    3 Mar 2021: Mina Sierou. Torquil Smith. University of California, Berkeley. Brian Spencer. State University of New York, Buffalo.
  4. J. Fluid Mech. (2017), vol. 821, pp. 330–342. c© ...

    www.itg.cam.ac.uk/people/heh/Paper259.pdf
    23 Dec 2021: 5School of Mathematics and Statistics, University of New South Wales, Sydney NSW 2052, Australia. ... Expressed in the new variables, equations (2.10)–(2.12)become. Hsη. 2Hη=. 1η. η. (
  5. J. Fluid Mech. (2019), vol. 874, pp. 285–298. c© ...

    www.itg.cam.ac.uk/people/heh/Paper268.pdf
    23 Dec 2021: If we now introduce new dimensionless variables via. x=x0X, h=h0H and t =T/(βA1/2), (A 8ac).
  6. OP-QJMA190019

    www.itg.cam.ac.uk/people/heh/Paper269.pdf
    23 Dec 2021: Investigating this further by introducing a new geometry, a ‘boxcar’ shape—as defined in Table 1—it can be seen that convergence is also slower in this case, and it becomes ... A0(g′V)1/3 t2/30 = x0; (4.3). so we take t0 = x3/20 /(. A30g′V)1/2
  7. 23 Dec 2021: 3Department of Earth Sciences, University of Geneva, Geneva, 1205, Switzerland4School of Mathematics and Statistics, University of New South Wales, Kensington,. ... This study has provided new empirical results for the timescale of sinking and a regime
  8. 23 Dec 2021: The new variables are related to the old ones via. Hi/H̃i = β1/3, Pi/P̃i = β1/3 and T/T̃ = β, (3.3a–c)where, as in Ramon et al.
  9. J. Fluid Mech. (2018), vol. 836, pp. 828–849. c© ...

    www.itg.cam.ac.uk/people/heh/Paper262.pdf
    23 Dec 2021: Cambridge CB3 0WA, UK3Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544, USA4School of Mathematics and Statistics, University of New South Wales, Kensington NSW 2052, Australia.
  10. J. Fluid Mech. (2018), vol. 844, pp. 435–458. c© ...

    www.itg.cam.ac.uk/people/heh/Paper263.pdf
    23 Dec 2021: These velocity measurements may provide new insights into the transportof proppants within fractures.
  11. J. Fluid Mech. (2018), vol. 848, pp. 312–339. c© ...

    www.itg.cam.ac.uk/people/heh/Paper264.pdf
    23 Dec 2021: J. Fluid Mech. (2018), vol. 848, pp. 312–339. c Cambridge University Press 2018doi:10.1017/jfm.2018.315. 312. Flow of buoyant granular materials along afree surface. Zhong Zheng1,2,3,†, Herbert E. Huppert1, Nathalie M. Vriend1,Jerome A.

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