Draw Energy Grid Line EGL and Hydraulic Grade Line HGL. 100 m Reservoir 1 Water Pipe 1 Pipe 2 Pipe 3 60 m Reservoir 2
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- b) Table 2 shows the free delivery and shut off points of the individual data for pump A, B and C. Suggest the order of pump that needs to be shut off if all pumps are arranged in series. Table 2 Individual pump free delivery and shut off data. Free delivery (m³/s) Shut off (m) Pump A 20 4 Pump B 15 6. Pump C 35Gate 6- fit wide M 459 Water 4ft 2 1 ft S = 6 =6 اول صف9. Asingle column vertical manometer is connected to a pipe containing oil of specific gravity 0.9. The area of the reservoir is 80 times the area of the manometer tube. The reservoir contains mercury of specific gravity 13.6. The level of mercury in the reservoir is at a height of 300 mm below the centre of the pipe and difference of mercury levels in the reservoir and right limb is 500 mm. Find the pressure in the pipe. [Ans. 64.7 kN/m²]
- Maximizing the wind velocīty of 92 m/s and 25 units of wind turbine was installed at the seaside shore What is the total power if the area of turbine blade equal to 42 sq.m with air density of 1.2041 Kg/cu.m. 1.969 MW 1.968,998 Watts c) 4,923 watts 49.23 MWFind the cost of the pumping water: Cost= r*P. where r 0.3353 is the interest rate and Pis the absolute pressure )( kpa) in the pipe Water Air 60 cm 50'cm 40 cm 50 cm S-0.8 S-0.5 45 deg Select one a. 172.7898 b. 34.5580 c. 138.2319 d. 69.1159 e 103 6739A cylindrical swimming pool has a diameter of 34ft, the sides are 7ft high, and the depth of the water is 5ft. Note, water weighs 62.5lb/ft^3. (b) How much work is required to pump all of the water out of an outlet 5ft above the top?Work = ______ ft-lb
- THERMODYNAMICS UPVOTE WILL BE GIVEN. PLEASE WRITE THE COMPLETE SOLUTIONS/DIAGRAMS LEGIBLY. NO LONG EXPLANATION NEEDED. USE 3 DECIMAL PLACES. BOX THE FINAL ANSWER. A pump discharges into a semi spherical tank at the bottom and cylindrical on top with a radius of 2 meters, and a total tank height of 8 meters. The flow rate is 80 gallons per minute and fluid specific gravity= 1.1. Determine the following: D.) how many drums will be needed to transfer all of the tank contents (tank being full) to the drums?d) The pressure of water flowing through a pipe is measured by the arangement shown below. For the values given, calculate the pressure in the pipe. Po = 30 kPa Air Pipe Water 15°C Water ha- 50 cm 15°C h, -8 cm L= 6 cm Gage fluid SG - 24In the figure below, Given: P (gage) = 2 atm A = 20 m B = 5 m P (atm) = 101.325 kPa What is the maximum height (C) that water will reach? 45.7 m O 35.7 m 40.7 m
- Answer the attached problemLevel measurement in a sump tank is provided by a transducer scaled as 1.734 V/m. A pump is to be tumed on by application of 9 V when the sump level exceeds 19.5 m. The pump is to be turned back off when the sump level drops to 3.65 m. Find Vy and v Given R1/R2 = 1.5. a) VH= b) VL=THERMODYNAMICS UPVOTE WILL BE GIVEN. PLEASE WRITE THE COMPLETE SOLUTIONS/DIAGRAMS LEGIBLY. NO LONG EXPLANATION NEEDED. USE 3 DECIMAL PLACES. BOX THE FINAL ANSWER. A pump discharges into a semi spherical tank at the bottom and cylindrical on top with a radius of 2 meters, and a total tank height of 8 meters. The flow rate is 80 gallons per minute and fluid specific gravity= 1.1. Determine the following: A) flow rate in kg/sec and time it takes to fill the tank in hours. B) the weight in tons of the liquid if full tank local gravity is 32.1 ft/sec squared. C) volume of the tank in metric gallons. D.) how many drums will be needed to transfer all of the tank contents (tank being full) to the drums?