Operating principles of engines

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Operating principles of engines

There are two types of diesel engines, a four stroke cycle and a two stroke cycle.

Four stroke cycle diesel engine

In a four stroke cycle engine, four strokes of the piston are required to complete one cycle. The four strokes are induction, compression, power and exhaust.

The actual opening and closing of the inlet and exhaust valves and the period of injection of the fuel can be taken from the timing diagram. Timing diagrams will vary between engine models and manufacturers.

 

 

 

 

 

 

 


 

Four stroke timing diagram.


The above diagram is for a Caterpillar series 3600 turbo charged after cooled engine. As can be seen from the timing diagram, the induction stroke commences when the inlet valve opens 10° before TDC when air is drawn into the cylinder as the piston moves down. The inlet valve closes 1° before BDC.

The air is now trapped in the cylinder and as the piston rises on the compression stroke, the air is compressed. As the air is compressed, it rises in temperature. When the piston reaches 19° before TDC, the injection of fuel commences and continues until 73° after TDC.

The heat in the compressed air ignites the fuel and combustion takes place. The gases expand forcing the piston down on the power stroke.

The exhaust valves opens at 26° before BDC and the exhaust gases commence and are discharged as the piston rises on the exhaust stroke. Most of the exhaust gases have been discharged as the piston nears TDC. However, at 10° before TDC, the inlet valve opens and air enters the cylinder and helps discharge any remaining exhaust gases until the exhaust valve closes at 3° after TDC.

The whole cycle is then repeated.

Both the exhaust valve and inlet valve are open from 10° before TDC to 3° after TDC, an overlap of 13°. This is referred to as "valve overlap" and ensures that all the exhaust gases are discharged from the cylinder and the cylinder receives a fresh  charge of air to make it more efficient when combustion next takes place.

Therefore there is one power stroke for every cycle or two revolutions of the crankshaft.

Two stroke cycle diesel engine

 

In a two stroke cycle engine, two strokes of the piston are required to complete one cycle.

The two strokes are compression and power. The events of compression, injection of the fuel, combustion and expansion of the gases take place in the same order as the four stroke engine, but the exhaust of the burnt gases and the induction of air take place at the bottom of its stroke. This is the chief difference between the two stroke cycle and the four stroke cycle.

There are variations in two stroke cycle engines. The type described here is the most common to be found in marine engines. It has inlet ports and exhaust valves.


 

In this two stroke cycle engine, all the valves are exhaust. The inlet holes or ports are in the lower section of the cylinder liner wall.

The piston uncovers the inlet ports as it moves down the cylinder. The piston covers the inlet ports as it moves up the cylinder. This action has the same effect as a valve opening and closing.

An engine driven scavenge blower is fitted and the incoming air is blown into the cylinder through the inlet ports when they are uncovered by the piston.

Two stroke timing diagram.

The above timing diagram is for a Detroit Diesel model 16V-149 turbo charged inter cooled engine. As can be seen from the timing diagram above,  induction commences at 49° before BDC when the piston has uncovered the inlet ports. Air is forced into the cylinder by the scavenge blower as the piston moves down to BDC and back up again until it covers the inlet ports at 49° after BDC.

As the piston rises, the exhaust valve closes at 62° after BDC. The air is now trapped in the cylinder and the piston rises on the compression stroke. As the air is compressed, it rises in temperature.


Fuel is injected before TDC and continues after TDC. Detroit Diesel do not give the period of injection as this will vary depending upon the engine speed, the load and the size of the injectors. The camshaft contains the exhaust valve cams as well as the unit injector cams. Therefore, if the exhaust valve timing is correct, the unit injector timing will be correct providing the injector follower is adjusted to a definite height in relation to the unit injector. A special gauge is supplied to set this height.

The heat in the compressed air ignites the fuel and combustion takes place. The gases expand forcing the piston down on the power stroke.

The exhaust valve opens at 83° before BDC allowing the burned gases to escape into the exhaust manifold. However, at 49° before BDC, the inlet ports are uncovered by the piston and air enters the cylinder and helps discharge any remaining exhaust gases until the exhaust valve closes at 62° after BDC.

The whole cycle is then repeated.

There is one power stroke for every one revolution of the crankshaft.


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8:48 PM

Common Terminology of Engines.

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Force

It is the influence which tends to change the motion or direction of a body at rest or in motion. A simple explanation is pushing or pulling.

From the above, applying a force would either:

·      Start moving a body from rest or bring a moving body to rest.

·      Increase or decrease the speed of a moving body.

·      Change the direction of motion of a moving body.

Force is measured in newtons (N).

 

Work

is the use of energy to overcome resistance. The amount of work done is from moving an applied force through a distance. The unit of measurement of doing work is the joule.

The force is measured in newtons (N) and the distance is measured in metres (m). From the formula Work = Force x Distance, work would be in newton metres (Nm). To prevent confusion between 'work' and 'torque', the unit given to the formula for work is the joule (j).

One newton metre = one joule.

Torque

is when a force tends to cause a movement about a point. Torque is also called a turning or twisting effort. Torque = Force x Distance. Torque is the force exerted, but notmoved, over a distance.

Force is measured in newtons (N) and distance is measured in metres (m). Torque is therefore measured in newtonmetres (Nm).

As an example, the force on the piston of an engine exerts a turning moment on the crankshaft.

 

Power

is the amount of work done or energy expanded in a given time. Also expressed as the capacity to do work. Watt (W) is the unit measurement of power. A watt is the power used when energy is expended or work done at the rate of one joule per second.

Power = Force x Distance

              Time in seconds

As force is in newtons (N), distance in metres (m), and time in seconds (s), the answer will be in newton metres per second or joules per second. (1 newton metre = 1 joule). However, as one joule per second = one watt, the final answer will be in watts.

Power of an engine is measured in kilowatts (kW) rather than watts (W). 1000 W = 1 kW.

Thermal efficiency

Thermal efficiency is the ratio of work done at the flywheel to the amount of energy contained in the fuel. Thermal efficiency is expressed as a percentage.

Calorific value

Fuel contains a specific amount of heat energy or heat value which is released when the fuel is burnt. This is the calorific value of the fuel. It is measured in joules per kilogram of fuel.

Volumetric efficiency

is the ratio between the  swept volume of a cylinder and the actual volume of air drawn in during the induction stroke. The efficiency varies considerably, depending on the design and operating conditions but especially with engine speed. A turbo charged engine will have a higher volumetric efficiency (in excess of 100%) than that of a normally aspirated engine (less than 100%). Swept volume is the volume in the cylinder between TDC and BDC of the piston.

Turbulence

also called swirl, is the circular movement of the air as it enters the combustion chamber. The swirling motion or turbulence is encouraged by design considerations as it enhances flame propagation and is especially important at light engine loads. It is a desirable characteristic in the flow of air into the cylinder. In most engines, a rapidly swirling motion is deliberately induced and the violent movement helps ensure even mixing of the fuel and air. It also speeds up the combustion process once the fuel has ignited.

Scavenging

is the term used for eliminating the burned exhaust gases from a cylinder. The incoming air removes, or scavenges, as much of the burnt gases as possible. Valve overlap assists in the scavenging process.

Compression ratio

is the ratio between the volume of the air before and after it has been subject to compression. A compression ratio of 12:1 means that during the pistons travel from the lowest to the highest point in the cylinder, the air has been compressed to one-twelfth its original volume. A diesel engine needs a high compression ratio to get sufficient heat in the compressed air to ignite the fuel.

Compression

  ratio   = piston displacement + clearance volume

                           clearance volume

Valve overlap

is the period which both the inlet valve and exhaust valve are open at the same time. The inlet valve opens before top dead centre (TDC), say at 10° and the exhaust valve closes after TDC, say at 35°. The opening of the inlet valve overlaps the closing of the exhaust valve. The overlap in this case would be 35° .

The purpose of valve overlap is to ensure that are exhaust gases are discharged from the cylinder and the cylinder receives a fresh charge of air to make it more efficient when combustion next takes place. It also has a cooling effect.

Valve rotators

are devices which cause a valve to rotate each time it opens. It can be fitted to either end of the valve spring. Its purpose is to ensure even wear and prevent exhaust valves from burn out.

Dwell

is the angle that the valve remains in the fully open position. The profile of the lobe of the cam causes the valve to open until the lobe flattens out. The valve stays in this fully open position which is the angle of dwell until the other side of the lobe is reached when the valve starts to close.


 

Cam lift

is the distance from the peak of the lobe of a cam to its axis minus the distance from the back of the cam to its axis. Another description would be the distance the valve opens plus the valve lash or tappet clearance measurement.

 

Cam profile


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8:47 PM

Principal Piping Designer – Fluor - UK

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Job Title Principal Piping Designer – Fluor - UK Job Description Due to the award of a number of major, world-class projects, Fluor is now in an exciting period of significant growth, and as such we are now keen to speak with experienced professionals across all disciplines and departments to fill immediate staffing requirements based here in the UK headquarters in Farnborough. Piping

Trainee Piping Designer – Petrofac, UK-Aberdeen

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Trainee Piping Designer – Petrofac, UK-Aberdeen Closing Date31/03/2013LocationsUK - AberdeenFunctionDesignBase locationAberdeen Role Participate in the design, modification and construction of the piping project requirements for offshore oil & gas facilities: prepare finished drawings, diagrams and schedules from given information such as sketches, marked up prints etc

Refinery

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12:23 PM

Piping Designer position in Foster Wheeler Singapore

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Piping Designer position in Foster Wheeler Singapore Company Foster Wheeler Asia Pacific Education • Diploma in Mechanical Engineering with 4 to 7 years experience in Refinery / Petrochemical / Chemical / Power Plants. Experience • Through knowledge of Equipment layout Development, Piping layout design for all types of equipments such as Vessels, Exchangers, Tanks, Pumps,

ANNA UNIVERSITY RESULTS FOR M.E / M.Tech / M.Sc AND ALL PG

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ANNA UNIVERSITY HAS ANNOUNCED THE RESULTS FOR B.E /B.Tech ON march 6 and there is expectations for pg ,m.e m tech to check results come back soon here.
the tentative date for  PG result announcement is march 15.
2:30 AM

TNPSC 2013 COMBINED ENGINEERING EXAM ANSWER KEY

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 Sl.No.

Subject Name

 (Date of Examination:02.03.2013 FN  & AN)

 

COMBINED ENGINEERING SERVICES EXAMINATIONS

 

1

CIVIL ENGINEERING

2

MECHANICAL AND PRODUCTION ENGINEERING

3

ELECTRICAL AND INSTRUMENTATION ENGINEERING

4

TEXTILE ENGINEERING

5

ELECTRONICS AND COMMUNICATION ENGINEERING

6

CHEMICAL ENGINEERING

7

GENERAL KNOWLEDGE

Note: Right Answer has been tick marked in the respective choices for each question. Representations if any shall be sent so as to reach the Commission's Office within 7 days. Representations received after 12th March 2013 will receive no attention.



SOURCE : TNPSC- OFFICIAL WEBSITE

2:55 AM

SOCIAL NETWORKING PROJECT // FACEBOOK PROJECT // FACEBOOK SOURCE CODE

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Networking in the form of online social networks is second nature for college students and aspiring young professionals today. The main purpose of creating Social Networking Site for College Students is for meeting worldwide college students and sharing knowledge, education related information's, etc. It contains standard social network content, like profiles, pictures, email and groups, and video sharing, articles, etc. Student can create a profile, browse locations worldwide, share and collect knowledge, education related tutorials, etc.
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This project is developed using PHP and MySQL Server. 
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Functional decompositions:
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Type – Web Application
Front End – PHP
Back End – MySQL Server
TO GET THIS PROJECT SOURCE CODE CLICK HERE-CONTACT
2:21 AM

LAN chatting system - NETWORKING PROJECT

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This is LAN chatting system software, it's a networking project for college students.  Its a Server client software application developed in Visual Studio 2005 (vb.net). Here the user can chat with other user through LAN connection. Even they can transfer file through one pc to other. Admin can view chat history through Server. Here no need of internet connection. This software can be used in all office which is helpful in sending files and to communicate with office staff. This software is error free. Anyone can use this software . you can download this software by clicking on download below. So use this software and get more benefit from from this. If have any doubts then post your doubts below.



2:11 AM

ONLINE REQUIREMENT SITE USING ASP

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This is a Online Recruitment site , where people can seek for job by registering here. Even they can apply for the job through online using this site. People should just create a account by registering here, then they should upload their CV or resume . So that when their profile is matched for any job. Those people will get a mail to their account. Which will help the people to search job easily by not wasting their time. People may get a job in good companies if they use this software
TO GET THIS PROJECT  CONTACT US
2:06 AM

ONLINE EXAMINATION SYSEM

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This is Online Examination System software which is developed by ASP language. Using this Software any institution can conduct online examination for the students. Where students have to just register here and they will get a register number to their email id. While student is going to write the exam online, student have to write the register number which they got to their email id. In this way student can write the exam online. Even to complete this exam there is specific time.
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1:50 AM

DIFFERENT TYPES OF PROJECTS FOR ENGINEERING

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There are 3 types of projects that students can do during engineering.They are:-

1)Industrial projects
 Industrial projects are external projects which are done in industries,factories,companies etc.First choose an industry of your interest.Then send a mail to the HR department or call them.If you are lucky they might give a positive response. Then after getting a letter from your department you can visit that industry and choose a department where you wish to do your project.Select a genuine topic.The industry will provide a guide to help you.

2)Internal projects
 Internal projects are projects which are done in your college.You can use the college resources such as mechanical workshops,labs etc with permission.You can score more marks if u do an internal project because you do more work.Ofcourse your teachers will help you.

3)Model projects
 In this type of project you fabricate parts and you assemble it into final product.You can make a robot for example and can work it with the help of a software.People who are creative and have an idea about models can choose this project.

TNPSC- COMBINED ENGINEERING EXAM(2013) ANSWER KEYS

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The Tamil Nadu Public Service Commission (TNPSC) had conducted Combined Engineering Services Examination (CESE) 2013 on 2/03/2013 (Saturday). This exam  held in two steps. The first exam  held on 10.00 AM to 01.00 PM and the second exam  held on 02.30 PM to 04.30 PM.

Tamil Nadu Public Service Commission announced the Combined Engineering Services Examinations answer key for the written exam  of Assistant Civil and Electrical Engineers . TNPSC - Tamil Nadu invites online applications for various post of Assistant Civil and Electrical Engineers . Tamil Nadu Public Service Commission Combined Engineering Services Examination was held in march 2 2013.
Here we give the direct website link to the download answer key / question papers of Assistant Civil & Electrical Engineers Recruitment 2013. Also give the details about how to download Tamil Nadu Public Service Commission Combined Engineering Services Examinations answer.


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6:37 AM

VTEC

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Honda featuring of VTEC Variable Valve Timing and Lift Electronic Control.

 photo vtec_zps7f69b126.gif

As the engine turns, the camshafts turn in relation and they push the valves open for the cylinder.

VTEC is change both the duration and lift of the valves as engine speeds change by using different cam profiles.

During low-RPM operation, the valvetrain works normally; ie. the smaller profiles push the smaller rocker arms which then push open the valves. But when the engine enters its higher-RPM range, a hydraulic system pushes a pin that connects the VTEC rocker with the two rockers beside it.

When that happens, the larger VTEC cam profile pushes all three rockers even further due to the fact that the VTEC rocker arm is now connected to two non-VTEC rocker arms. When the larger cam profile isn’t needed anymore, the pin disengages and unconnects the three rocker arms, reverting back to the smaller cam profile.

It’s quite a simple mechanism actually, just a simple trigger (a certain RPM), a hydraulic system, and an extra set of cam profiles and rockers. The problem with VTEC is that it is an “on/off” switch, where the cam profiles are either small or large. The next step is to continuously modulate the cam profile for any and every driving condition. BMW introduced its “Valvetronic” system in 2001, which Toyota followed with its “Valvematic” system and Nissann with its VVEL (Variable Valve Event and Lift) system.

From http://takemebeyondthehorizon.wordpress.com/tag/variable-valve-timing/
5:31 AM