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Titlebook: Simulation Based Engineering in Fluid Flow Design; J.S. Rao Book 2017 The Editor(s) (if applicable) and The Author(s), under exclusive lic

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,Pressure—Velocity Coupling in Steady Flows,ri tubes for measurement of velocity are given that use Bernoulli principles. For adiabatic flows stagnation conditions are derived. For isentropic flows, sonic and supersonic conditions are obtained. Supersonic flows with a normal shock in divergent portion of a nozzle are obtained by considering q
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,Pressure—Velocity Coupling in Steady Flows, various back pressures is explained for isentropic flow with a normal shock forming in the divergent portion. The flows through a diffuser are also presented. The modeling of converging-diverging nozzles using finite volume method by computational fluid dynamics is explained leading to SBES with HPC for designs.
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Fluid Statics,n phenomenon that depends on vapor pressure is next explained. Heat energy aspects, internal energy, enthalpy, specific heats, adiabatic process, reversible process, entropy, Isentropic process are explained while dealing with mechanical energy and heat energy and work done on gases.
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Book 2017with Pressure in fluids at rest, Buoyancy and Basics of Thermodynamics are next presented...The Finite Volume Method, the most convenient process for HPC, is explained in one-dimensional approach to diffusion with convection and pressure velocity coupling. Adiabatic, isentropic and supersonic flows
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