The start-up flow of a Bingham plastic in a channel is considered and Safronchik's solution [1] for the initial evolution of the yield surface and the core velocity is revisited. Stricter time bounds for the validity of the above solution are derived and the solution is extended to include the velocity profile in the evolving yielded zone. Comparisons are made with another approximate solution derived under the assumption that the velocity in the yielded zone is parabolic adjusting with the evolving yield surface. This approximation performs well for small values of the yield stress, or, equivalently, for large values of the imposed pressure gradient.
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Univ Carlos III Madrid, Dept Ingn Term & Fluidos, Grp Mecan Fluidos, Av Univ 30, Leganes 28911, Madrid, SpainUniv Carlos III Madrid, Dept Ingn Term & Fluidos, Grp Mecan Fluidos, Av Univ 30, Leganes 28911, Madrid, Spain
Martinez-Calvo, Alejandro
Sevilla, Alejandro
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Univ Carlos III Madrid, Dept Ingn Term & Fluidos, Grp Mecan Fluidos, Av Univ 30, Leganes 28911, Madrid, SpainUniv Carlos III Madrid, Dept Ingn Term & Fluidos, Grp Mecan Fluidos, Av Univ 30, Leganes 28911, Madrid, Spain
Sevilla, Alejandro
Peng, Gunnar G.
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Univ Cambridge, Dept Appl Math & Theoret Phys, Wilberforce Rd, Cambridge CB3 0WA, EnglandUniv Carlos III Madrid, Dept Ingn Term & Fluidos, Grp Mecan Fluidos, Av Univ 30, Leganes 28911, Madrid, Spain
Peng, Gunnar G.
Stone, Howard A.
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Princeton Univ, Dept Mech & Aerosp Engn, Princeton, NJ 08544 USAUniv Carlos III Madrid, Dept Ingn Term & Fluidos, Grp Mecan Fluidos, Av Univ 30, Leganes 28911, Madrid, Spain