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- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/zz%3A_Back_Matter/10%3A_Index
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/01%3A_Lab_Manual/01.6%3A_Experiment_%236%3A_Orifice_and_Free_Jet_FlowThe actual outflow velocity calculated by Equation (2) is the velocity at the vena contracta, where the diameter of the jet is the least and the flow velocity is at its maximum (Figure 6.2). When the ...The actual outflow velocity calculated by Equation (2) is the velocity at the vena contracta, where the diameter of the jet is the least and the flow velocity is at its maximum (Figure 6.2). When the water level in the head tank reaches the top of the overflow tube, adjust the bench flow control valve to provide a water level of 2 to 3 mm above the overflow pipe level.
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/01%3A_Lab_Manual/01.3%3A_Experiment_%233%3A_Energy_Loss_in_Pipe_FittingsIf the diameter through the pipe fitting is kept constant, then . Therefore, if the change in elevation head is neglected, the manometric head difference is the static head difference that is equal to...If the diameter through the pipe fitting is kept constant, then . Therefore, if the change in elevation head is neglected, the manometric head difference is the static head difference that is equal to the minor loss through the fitting. To purge air from the pipe system and manometers, connect a bore tubing from the air valve to the volumetric tank, remove the cap from the air valve, and open the air-bleed screw to allow flow through the manometers.
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/00%3A_Front_Matter/01%3A_TitlePageBook: Applied Fluid Mechanics Lab Manual (Ahmari and Kabir)
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/01%3A_Lab_Manual
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/01%3A_Lab_Manual/01.7%3A_Experiment_%237%3A_Osborne_Reynolds'_DemonstrationAs an example, if forces acting on a ship need to be studied in the laboratory for design purposes, the Reynolds number of the flow acting on the model in the lab and on the prototype in the field sho...As an example, if forces acting on a ship need to be studied in the laboratory for design purposes, the Reynolds number of the flow acting on the model in the lab and on the prototype in the field should be the same. Close the dye control valve, then mount the dye injector on the head tank and lower the injector until the tip of the needle is slightly above the bellmouth and is centered on its axis.
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/00%3A_Front_Matter
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)This lab manual provides students with the theory, practical applications, objectives, and laboratory procedure of ten experiments. The manual also includes educational videos showing how student shou...This lab manual provides students with the theory, practical applications, objectives, and laboratory procedure of ten experiments. The manual also includes educational videos showing how student should run each experiment and a workbook for organizing data collected in the lab and preparing result tables and charts.
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/01%3A_Lab_Manual/01.1%3A_Experiment_%231%3A_Hydrostatic_PressureThe knife edges coincide with the center of the arc of the quadrant; therefore, the only hydrostatic force acting on the vertical surface of the quadrant creates moment about the pivot point.
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/01%3A_Lab_Manual/01.5%3A_Experiment_%235%3A_Impact_of_a_JetApplying the energy equation between the nozzle exit point and the surface of the deflector shows that the magnitude of the flow velocity does not change as the water flows around the deflector; only ...Applying the energy equation between the nozzle exit point and the surface of the deflector shows that the magnitude of the flow velocity does not change as the water flows around the deflector; only the direction of the flow changes.
- https://eng.libretexts.org/Bookshelves/Mechanical_Engineering/Applied_Fluid_Mechanics_Lab_Manual_(Ahmari_and_Kabir)/zz%3A_Back_Matter