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Moving mesh methods in Fluidity and Firedrake

McManus, T.M.; Percival, J.R.; Yeager, B.A.; Barral, N.; Gorman, G.J.; Piggott, M. D.


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    <subfield code="a">This work was funded under the embedded CSE programme of the ARCHER UK National Supercom- puting Service (http://www.archer.ac.uk). The authors would also like to thank the complementary support provided by the EPSRC projects EP/L000407/1 and EP/M011054/1, and industrial research funding from the Weir Group.</subfield>
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    <subfield code="a">&lt;p&gt;This report summarises the work conducted under the eCSE (embedded Computational Science &amp;amp; Engineering) project &amp;lsquo;Integrating mesh movement (r-adaptive) technology within Fluidity and the PRAgMaTIc parallel anisotropic (h) adaptive mesh toolkit&amp;rsquo;. The overall objective was to integrate new mesh movement (or r-adaptive) methods within two existing PDE solver frameworks (Fluidity &amp;amp; Firedrake) which, to differing degrees, already possess h-adaptive capabilities.&amp;nbsp;&lt;/p&gt;</subfield>
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