fluid mechanics hydraulics duet prof. dr. atıl bulu open channel flow web.itu.edu.tr dimensional analysis aec building information modeling stanford university bim glenn katz aec industry theory of elasticity and plasticity open channel hydraulics torricelli’s theorem the power of a stream of fluid pressure exerted on a plate by a free jet momentum correction factor mechanical energy of a flowing fluid application of the impulse-momentum equation venturimeter applications of bernoulli’s equation kinetic energy correction factor the work-energy equation impulse-momentum equation: conservation of momentu hydraulic jump in an open channel flow euler’s equation of motion free liquid jet stagnation tube sudden enlargement in a pipe system ground water flow stream function the flow net two-dimensional ideal flow continuity equation velocity potential functions euler’s equations theory of elasticity introduction to theory of elasticity and plasticit minimum covering bundled bar covering bnbc method for maintain covering asd slab bridge aashto gradually varied flow gradually-varied specific energy model theory local energy (head) losses local energy pipe flow fluid mechanic two-dimensional flow of the real fluids two dimensional two-dimensional flow hydroelectric power hydroelectric power plants fundamentals of fluid mechanics kinematics of fluids bernoulli’s equation stationary and moving vanes: the impulse turbine strain-displacement equations and membrane forces part 2 displacement differential equation problems on stiffness method for beams/frames joint displacements and forces approximate analysis of bridge portal and mill ben approximate lateral load analysis by portal method portal method flexibility method analysis of multi-storied structures by cantilever analysis of multi-storied structures by portal met virtual work space truss structural stability and determinacy seismic vibration and structural response wave force using morison’s equation maximum ‘support reaction’ due to wheel loads maximum ‘shear force’ due to wheel loads influence lines of plate girders and trusses müller-breslau’s principle calculation of wind load response spectrum analysis influence lines of beams base shear method equivalent force method bimtopia.com discoverability score bimtopia.com bnbc 2006 bnbc 1993 flow over a weir elasticity and plasticity elasticity problem formulation mathematical methods for solutions boundary conditions displacement formulation principle of superposition principle of minimum potential energy ritz method strain energy work and energy plane stress polynomial solution of 2-d problem plane strain airy stress function plane strain vs. plane stress principal directions strain tensor theory of stress saint-venant compatibility equations principal stresses hooke’s law strain-displacement equations biharmonic equation fem in plane elasticity- constant strain triangle stress bcs theory of elasticity and plasticity (equations she membrane theory of shells of revolution general membrane theory bnbc 2015
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