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1. FIGURE Q1b show the laminar flow of an incompressible Newtonian liquid on vertical moving plane/s. The vertical plane is moving in a constant velocity,
1. FIGURE Q1b show the laminar flow of an incompressible Newtonian liquid on vertical moving plane/s. The vertical plane is moving in a constant velocity, Vp. Assume L is considerably larger than the thickness of the film, y and the pressure are constant in all directions. Using shell balance method, develop the velocity distribution profile for the liquid on the vertical moving plane based on the information provided in TABLE Q1. Estimate the velocity (m/s) at middle of the film (measured from the wall) if the temperature, pressure and velocity of the moving planels are T, P and Vp, respectively. Assume the liquid density and thickness of the film are p and y, respectively. You shall answer the above question based in TABLE Q1. TABLE Q1 Figure to be referred Student with matric ID ending with respective number (Last digit) 3,4,5 Properties of liquid & vertical plane Figure Q1b T = 220C P = 200 bar Pe=19.8 bar Tc = 330 K Me = 0.001 kg/(m.s) p = 1000 kg/m3 y = 1 mm Vp = 5 m/s = L Direction of Flow 7 Gravity FIGURE Q1b: Schematic diagram of an incompressible Newtonian liquid flowing in a moving vertical plane [50 Marks]
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