Baseline validationdetermine the natural frequencies of the

Assignment Help Mechanical Engineering
Reference no: EM13370181

Baseline Validation

Determine the natural frequencies of the system-For the baseline system

110_Determine the natural frequencies of the system.png

Design Modification

Notice that the baseline design has a large amplitude response when the engine speed is around 435 or 2026 rpm. As these are very common operating speeds (idle and cruise), you would like to alter the baseline design to move these resonances as far away from their current values as possible. Due to other constraints in the system you are limited in the alterations you can make.

The modulus of the belt can be altered by as much as 10% higher and lower. Use MATLAB to plot the lowest two engine speeds that excite resonance as a function of belt modulus for the full range of modulus values. The tensioner spring constant can also be changed by as much as 10% higher and lower. Plot the lowest two engine speeds that excite resonance as a function of tensioner spring constant for the full range of values.

The geometry of the system can also be altered within some bounds. As illustrated in the figure, you can change the position and radius of each except the crankshaft pulley so that it fits in a square box centered at the original pulley position. The sides of the box are two centimeters larger than the pulley diameter. Thus, for example, the water pump pulley must fit in a box with center at (0, 167.5) mm and sides 155 mm. The radii of the pulleys cannot be reduced by more than 1 cm from the baseline design. As you change a pulley radius, you should consider changing the inertia of that pulley. However, all but the tensioner and idler pulleys are connected to devices with inertias much larger than the pulley. Thus, you should only alter the tensioner and idler inertias when you change their radii.

The possible design space is very large. To get a feel for how system changes alter the natural frequencies you can make plots as you change only a couple parameters at a time. Keeping the baseline pulley locations plot the engine speed of the lowest two resonances as a function of each pulley radius. Keeping the baseline radii, for all but the crankshaft pulley, plot the engine speed of the first two resonances as a function of x and y positions.

Include all plots in a report that includes physical arguments to explain all your results.

You should now have a good understanding of how changing individual system parameters alters the natural frequencies of the system. Try to find a design that changes the first two natural frequencies more than any of the previous slight modifications. You will need to construct some benchmarking (objective) function that measures the improvement.

Once you have chosen a final design, you should draw it to scale using whatever drawing program you like. Include this as well as all the specifications of your final design in your report.

Steady State Analysis

A more thorough analysis of your final design must be done. In this analysis, you add a tensioner damper in parallel with the tensioner spring to your model. What is the system damping matrix if the damper has constant 750 N-s/m? Remembering that the third engine harmonic is dominant, plot the steady state response amplitude of each pulley as a function of the engine speed for speeds ranging from 0 to 7000 rpm. How does the damping you added alter this plot? Scale your plots so that the resonance peaks do not mask the response at other frequencies.

Discussion

You have optimized your design only considering two factors (the first two natural frequencies). There are, however, many other factors that serpentine belt designers must consider. From the analysis of your final design, can you see any possible problems with it? Discuss some of the issues that may not make this the best design. Discuss also the benchmarking function you decided to use. Did you weight moving the first or second natural frequency more? Why? Discuss how your optimal design depends on the specific objective function you used.

Reference no: EM13370181

Questions Cloud

Question 1in working environment when an employee is in the : question 1in working environment when an employee is in the mid of making decision based on business ethics dilemma of
Attaached case looking for general case analysis with- : attaached case looking for general case analysis with- background information issues and problems ananlysis and
In their article lsquorelational contracting and : in their article lsquorelational contracting and teambuilding assessing potential contractual and non-contractual
Synthesis essayearly chordates and the transition to : synthesis essayearly chordates and the transition to landdescribe the earliest chordates from early tunicate relatives
Baseline validationdetermine the natural frequencies of the : baseline validationdetermine the natural frequencies of the system-for the baseline systemdesign modificationnotice
1 the contraption below has a face cam with an elliptic : 1. the contraption below has a face cam with an elliptic pro?le pushing a push rod against a spring. the face cam is
1 do you think that in most cases the trench warfare of the : 1. do you think that in most cases the trench warfare of the alpha company is more or less effective than the guerrilla
Present a research paper on the topic - reservoir : present a research paper on the topic - reservoir characterisationgive preferences that will provides students with a
Read the anglogold ashanti the dawning of a new age case : read the anglogold ashanti the dawning of a new age case study and answer the given questionsquestion 1tom peters

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