[PDF] Statique des fluides Exercice 1: Pression d’un pied, d’un



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Physics Laboratory Exercise: The Bernoulli Effect

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K141 HYAE 4 exercise 4 b) Considering losses As in a), Bernoulli equation and continuity equation will be used to solve the problem To calculate discharge, the most advantages procedure again is to write Bernoulli equation for profile of water level in reservoir (profile 0) and for outlet profile (profile 3)



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• It can also be derived by simplifying Newtons 2nd law of motion written for a fluid particle moving along a streamline in an inviscid fluid •Warning: BE is the most used and the most abused equation in fluid mechanics So be careful 5-2 Movie: Streamlines 5-3 • Consider a fluid particle moving along a streamline in a planar flow



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Fluid Mechanics 1 034013 Exercise Booklet

Fluid Mechanics is an important and fundamental branch of Physics Its governing equations and similar phenomena can be seen in various branches and disciplines of the Physical and Engineering world Understanding these interactions provide a more accurate and general description of Nature, amongst which



Statique des fluides Exercice 1: Pression d’un pied, d’un

6/16 Exercice 6:Relation de Bernoulli : De l’eau (supposé fluide parfait) s’écoule du point A au point B avec un débit-volume de 350 L/s La pression en A vaut 0,70 bar



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Exercise: Recall the orders of magnitude for the scales in a typical fluid Verify the continuum hypothesis Solution: We note L* the molecular size scale, characterized by the mean free path of molecules between collisions, d the scale of a fluid point (fluid particle) and L the scale of the fluid volume considered

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