INDUSTRIAL PLANT ENGINEERING Select a proper schedule of pipe for each of the following conditions: FOR SET B: Steam at at 900 psig and 900 °F, 10-in. diameter
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Q: uperheated steam at 652 psia and 608 F is enerated in an Oil-fired boiler at the rate f 100,000…
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Q: wo identical cylinders methods cant be used to measure The slot angle hand written plzz
A: Yes it's true.
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- Example: What is the pressure at the center of the pipe B?Select a proper schedule of pipe for each of the following conditions: FOR SET B: Steam at at 900 psig and 900 °F, 10-in. diameterProblem # 3: Friction losses and volumetric discharge through a water piping system The cold-water faucet in a house is fed from a main water line through the following simplified piping system: A. A 160 ft long ¾ in ID copper pipe leading from the main line to the faucet base B. Six 90° standard elbows C. One wide-open angle valve with no obstruction D. The faucet which is considered to be composed of twd parts: 1) a half-open globe valve and 2) a nozzle having a diameter of 0.10 in. The pressure in the main line is 60 psig (virtually independent of flow) and the velocity there is negligible. At the faucet, the pressure is atmospheric. Assume the density of water to be 62.4 lbm/ft and the kinematic viscosity of water is 1.22 ×10³ ft²/s. Find the maximum volumetric flow rate of discharge from the faucet. This is trial and error problem. For a first trial, assume the Fanning friction factor to be 0.007. Use 5×106 ft for copper roughness. Neglect changes in elevation throughout the…
- the tube length is 1m.pressure different is 2200 kN/m2 and pipe length is 98mProblem Statement Water at 60°F and one atmosphere is being transferred from tank 1 to tank 2 with a 2-hp pump that is 75% efficient, as shown in Figure 8-7. All the piping is 4-inch schedule 40 steel pipe except for the last section, which is 2-inch schedule 40 steel pipe. All elbows are 4-inch diameter, and a reducer is used to connect to the 2-inch pipe. The change in elevation between points 1 and 2 is z2 - z1 = 60 ft. Tank 1 6 ft 4-inch 15 ft 4-inch 300 ft 4-inch 150 ft 4-inch Pump Tank 2 = 90° Elbow = Reducer All piping is schedule 40 steel with diameters given. Figure 8-7 Pipe and Pump Network Calculate the expected flowrate in gal/min when all frictional losses are cor Repeat part (a) but only consider the frictional losses in the straight pipe a. Calculate the expected flow rate in gal/min when all frictional losses are considered. b. Repeat part (a) but only consider the frictional losses in the straight pipes. c. What is the % error in flow rate for part (b) relative to part…
- Calculate the pressure range for the given bubbler? A = 5 cm, B = Max Level = 1 m, S.G. = 1.4 Blank #1: Min = Blank #2: Max = cmWC cmWC400mm Kerosene, SG=0.82 Air, SG=0.0012 Benzene, SG= 0.88 100mm 200rim 150mm 90mm Water Hg What is the pressure difference between the pipes of air and benzene?Use SG of mercury as 13.6.1) With the below nozzle arrangement, what pressure is needed in the pipe in order to get a nozzle velocity of 40m/s. The fluid is water with a SG=1. 30mm diameter How 18mm.diameter
- Pure milk at 293 K has a density of 1030 kg / m3 and a viscosity of 2.12 cp flowing at a rate of 1,605 kg / s in a pipe having a diameter of 70 mm. a. Calculate the Reynolds number. = Answer. b. Is the flow turbulent No, yes.c. The required flow rate for the Reynold 2500 is = Answerm / s.Pure milk at 293 K has a density of 1030 kg / m3 and a viscosity of 2.12 cp flowing at a rate of 2,205 kg / s in a pipe having a diameter of 90 mm. a. Calculate the Reynolds number. = Answer. b. Is the flow turbulent No, yes.c. The flow rate required for Reynold's number 2100 is = Answerm / s.2. An oil has 0.62 inch steel tube, through which flows an oil. The properties of of oil are as follows; u = 0.034 %3D lbs lbs lbs ub = 0.044 Uw ft-sec' = 0.004 and specific gravity at 60 °F IS 0.899. The oil enters at a ft-sec' ft-sec temperature of t = 60°F and flows with an average velocity of 4 feet per seconr. The inside surface area is 0.1613 ft? per feet length, and the inside sectional area is 0.3019 in?. The length of one pass of the tube is 10 feet. Condensing steam at 215°F surround the tubes. Assume that the inside surfa ce temperature of the pipe is 210°F and a bulk temperature of 72°F. If the specific heat of oil is 0.5 btu i nd its conductivity k 0.08 lbs- F btu-ft what is the temperature at the end of 10 feet pass? hr-°F-ft2'