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A transmission case measures
If the transmission efficiency is
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- The power output of an adiabatic steam turbine is 4 MW, and the inlet and outlet conditions of the steam are given below. Perform the following calculations: a) Calculate Ah, Ake, Ape (in kJ/kg) and the mass flow rate of the steam in kg/s. Inlet parameters Outlet parameters P1 = 2 MPa P2 = 10 kPa T1 = 400 °C V1 = 52 m/s 21 = 8 m X2 = 80% V2 = 182 m/s 22 = 4 m g = 9.81 m/s2 P V Steam turbine Wout i lisarrow_forwardConsider a train consisting of an engine of mass 55 tonne pulling 10 trucks, each of mass 13 tonne, travelling up an incline of 1 in 100 (sine). The rolling resistance to motion is 40 N/tonne, and the train's speed is increased from 20 km/h to 37 km/h over a distance of 600 m. Calculate: the total mass of the train: kg. the change in height of the train: metres. the change in potential energy of the train: MJ. the starting velocity of the train: m/s. the final velocity of the train: m/s. the change in kinetic energy of the train: MJ. the work done against the rolling resistance: MJ. the total work done by the engine: MJ.arrow_forwardPlease help me with this fluid mechanics question! Thank you!! :) A 1967 Harley-Davidson Shovelhead motorcycle uses a ventruri-carburetor to mix air and fuel for combustion. The venturi reduces the pressure to draw fuel from a reservoir chamber and to mix with the airstream as shown in the figure. The energy loss of the metering line is given by hL= (K*V^2)/2where K = 6.0 and V is the fuel velocity in the metering line. Assume that the air is an ideal fluid (68°F). Calculate the mass flux of air and the mass flux of fuel. Hint: Assume the air intake velocity is negligible.arrow_forward
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- The mixing time tm in a stirred fermenter where we are growing a cell culture can be estimated using the following equation: 1/3 1/3 2/3 tm = 5.9 P Evaluate the mixing time in seconds for a vessel of diameter D7=2.3 m containing liquid volume V̟=10,000 liters stirred with an impeller of diameter D;=45 in. The liquid density p=65 lb/ft and the power dissipated by the impeller P=0.70 metric horsepower.arrow_forwardWater flows through pipe A whose diameter is 30 cm and into parallel pipes 1, 2 and 3 and out through Pipe B (diameter= 30 cm). The properties of the pipe are as follows: for pipe 1, L= 300 m, diameter = 10 cm f= 0.020; for pipe 2 L= 240 m diameter= 15 cm f= 0.018 and for pipe 3, L= 600 deiameter= 20 cm f= 0.017. The upstram junction has an Elev. 90 m with pressure of 205 kPa; the downstream junction is at Elev. 30 m. If the average velocity in pipe A is 3.0 m/s, find the flow rate in pipe 3. Provide FBD and choose the right answer below a.24.68 L/s b.212.0 L/s c.80.21 L/s d.107.11 L/s Clear my choicearrow_forwardWater flows through pipe A whose diameter is 30 cm and into parallel pipes 1, 2 and 3 and out through Pipe B (diameter= 30 cm). The properties of the pipe are as follows: for pipe 1, L= 300 m, diameter = 10 cm f= 0.020; for pipe 2 L= 240 m diameter= 15 cm f= 0.018 and for pipe 3, L= 600 deiameter= 20 cm f= 0.017. The upstram junction has an Elev. 90 m with pressure of 205 kPa; the downstream junction is at Elev. 30 m. If the average velocity in pipe A is 3.0 m/s, find the flow rate in pipe 3. include your free body diagram. a.24.68 L/s b.80.21 L/s c.107.11 L/s d.212.0 L/sarrow_forward
- Dresden, Germany has a population of 700,000 and a population density of2200 km-2 in the urban area. Assume that the electrical needs of Dresden are an average of1.0 kWe per capita and these are satisfied by a wind farm consisting of 100 m diameterthree-rotor wind turbines operating at optimal efficiency and with optimal spacing. If thewind velocity is constant at 7 m/s, what is the area of the wind farm? The optimal efficiency, η = 0.49 and The ideal spacing for a turbine is 300m by 1000 meters Sustainable energy, 2nd edition, Ch 10, Problem 17Parrow_forwardDresden, Germany has a population of 700,000 and a population density of2200 km-2 in the urban area. Assume that the electrical needs of Dresden are an average of1.0 kWe per capita and these are satisfied by a wind farm consisting of 100 m diameterthree-rotor wind turbines operating at optimal efficiency and with optimal spacing. If thewind velocity is constant at 7 m/s, what is the area of the wind farm? The optimal efficiency, η = 0.49 and The ideal spacing for a turbine is 300m by 1000 meters Answer in km2arrow_forward13 Pun & 2.5m Tank A E 6 m 13m V= 0.8 m/s Tank P : 1o kpa 1Scm Exercise#1 In the shown figure, it is a system which its energy is assumed to be conservative. Tank B is open to the air and the tank A is closed at point 1. If the control valve after the tank A is opened fully (100%) and you know that 0 60°, what will be the reading of the flow meter at point 2 ?(Note: y = 5.8 kN / m3)arrow_forward
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