subject
Engineering, 07.11.2019 05:31 baue4431

Apumping system is to be designed to pump crude oil a distance of 1 mile in a 1 foot-diameter pipe at a rate of 3460 gpm. the pressures at the entrance and exit of the pipe are atmospheric, and the exit of the pipe is 270 feet higher than the entrance. the pressure loss in the system due pipe friction is 60 psi. the specific weight of the oil is 53 lbf). find the power in horsepower required for the pump. w = click here to access the appendices. the tolerance is +/-2% click if you would like to show work for this questioni qen she work problem 7.67 water is draining from tank a to tank 8. the elevation difference between the two tanks is 17 m. the pipe connecting the two tanks has a sudden expansion section as shown. the cross-sectional area of the pipe from a is 6 cm, and the area of the pipe into b is 25 cm. assume the head loss in the system consists only of that due to the sudden-expansion section and the loss due to flow into tank 8. find the discharge between the two tanks. 17m q- m /s click here to access the appendices. the tolerance is +/-2% click if you would like to show work for this questionopen show work

ansver
Answers: 3

Another question on Engineering

question
Engineering, 04.07.2019 18:10
What difference(s) did you notice using a pneumatic circuit over hydraulic circuit.explain why the pneumatic piston stumbles when it hits an obstacle.
Answers: 2
question
Engineering, 04.07.2019 18:10
Apump is used to circulate hot water in a home heating system. water enters the well-insulated pump operating at steady state at a rate of 0.42 gal/min. the inlet pressure and temperature are 14.7 lbf/in.2, and 180°f, respectively; at the exit the pressure is 60 lbf/in.2 the pump requires 1/15 hp of power input. water can be modeled as an incompressible substance with constant density of 60.58 lb/ft3 and constant specific heat of 1 btu/lb or. neglecting kinetic and potential energy effects, determine the temperature change, in °r, as the water flows through the pump.
Answers: 1
question
Engineering, 04.07.2019 18:10
For the closed feedwater heater below, feedwater enters state 3 at a pressure of 2000 psia and temperature of 420 °f at a rate of ix10 ibhr. the feedwat extracted steam enters state 1 at a pressure of 1000 psia and enthalpy of 1500 btu/lbm. the extracted er leaves at an enthalpy of 528.7 btu/lbm steam leaves as a saturated liquid. (16) a) determine the mass flow rate of the extraction steam used to heat the feedwater (10) b) determine the terminal temperature difference of the closed feedwater heater
Answers: 3
question
Engineering, 04.07.2019 18:10
The drive force for diffusion is 7 fick's first law can be used to solve the non-steady state diffusion. a)-true b)-false
Answers: 1
You know the right answer?
Apumping system is to be designed to pump crude oil a distance of 1 mile in a 1 foot-diameter pipe a...
Questions
question
History, 29.05.2020 02:02
Questions on the website: 13722360