A steady flow of 15 kgs of high-pressure liquid oil drives

Assignment Help Mechanical Engineering
Reference no: EM13627622

A steady flow of 15 kg/s of high-pressure liquid oil drives a hydraulic motor at the steady-state-steady-flow conditions shown below. Heat loss from the motor to the surroundings is 5 kW. This is not a quasi-equilibrium process. Use standard gravity, g = 9.81 m/s2.

Find the diameter of the exit pipe, D2 = ________ (m) and the power output, Wcv & out = _________ (kW).

LIQUID kPa oC m/s m

1 8000 40 25 20

2 500 42 25 15

Reference no: EM13627622

Questions Cloud

Air at 15 c ows over a at plate a heater strip 10 cm long : air at 15 ? c ?ows over a ?at plate. a heater strip 10 cm long is placed on the plate at a distance 15 cm from the
The average plate temperature of a at plate of length l : the average plate temperature of a ?at plate of length l with constant heat ?ux with air at 20? c ?owing over it at a
Report shows that 45 of all us households owned 2 cars in : report shows that 45 of all us households owned 2 cars in 2000. set up the null and alternative hypothesis for testing
The heat capacity of silver measured at a temperature of 4 : assume that at low temperatures only the lattice vibrations and the electrons treated as a fermi gas contribute to the
A steady flow of 15 kgs of high-pressure liquid oil drives : a steady flow of 15 kgs of high-pressure liquid oil drives a hydraulic motor at the steady-state-steady-flow conditions
Electronic devices use electrical energy even when they are : electronic devices use electrical energy even when they are on standby. calculate the percent of energy used per day
Assuming that the population proportion p is near 03 find : assuming that the population proportion p is near 0.3 find the sample size required to construct 90 confidence interval
At the same time measurements showed that the pipe : during drilling of a deep oil well the drill pipe got rigidly stuck. it was necessary to determine the depth at which
Exhaust gases enter the regenerator at a pressure of 140 : air enters a regenerator at a pressure of 1mpa temperature of 550 k and mass flow rate of 800 kkgmin. heat is

Reviews

Write a Review

Mechanical Engineering Questions & Answers

  Package design

Package Design Brief: Assume you are the packaging engineer for a large consumer products company. In this company, the Packaging Design Briefs are initiated by the marketing group and forwarded to the Package Engineering group.

  Mechanical engineering questions

Define dynamic viscosity, Determine the centroid, Pressure due to the height of liquid, Advantage of changing the liquid, Calculate the total moment about the hinge of the seal gate.

  Automatic control

DOF system and Find the differential equation describing the system

  Write a paper on boyle''s law

Write a paper on Boyle's law and describe Compression and Combustion stroke . Also explain Charles's law and illustrate SI engine and CI engine.

  Verify the law for parallelogram of forces

To Verify the law for parallelogram of forces, law for triangle of forces and law of polygon of forces. These laws are very useful to calculate unknown forces in very short time.

  Discharge pressure of the compressor

What is the discharge revised discharge pressure of the compressor.

  The Case for Global Accounting Standards

The role of IFRS in both developing and developed capital markets.

  Wind turbine

Wind turbines are becoming more and more common as a method of energy production, wind turbines by their very nature are dynamic and are subject to and create their own internal and external kinematics and kinetics.

  Advanced design methodologies

8 x product engineering and design review (week 2 – 12), ~3 pages per item which must contain a brief description of the product then delve into concepts such as materials selection, manufacturing methods, life cycle analysis, recyclability and overa..

  Design of absorption column and the cooler

Design of absorption column and the cooler. Process design of other units should be completed along with pipe sizes.

  Determine the maximum total bending moment

Determine maximum total bending moment (static plus dynamic) of the beam under steady-state conditions.

  Force of the water on the gate

Determine the magnitude of the horizontal and vertical components of the force of the water on the gate.

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd