Performance Measures for I.C. Engines Development & Evaluation P M V Subbarao Professor Mechanical Engineering Department Define A Better Engine.…. Evaluate.

Slides:



Advertisements
Similar presentations
Engine Operation Chapter 3
Advertisements

Chapter 3 Engine Operation
Engine Geometry BC L TC l VC s a q B
STUDENT NAME: (1) Patel Vidhi A.
Effect of Piston Dwell on Engine Performance P M V Subbarao Professor Mechanical Engineering Department Sufficiency of time to Execute a Process…..
Engine friction and lubrication
Engine Systems and Components
Lab IV: Internal Combustion Engine 14:650:431:03 Max Tenorio.
Hydraulics.
Internal Combustion Engines. Engines External combustion engine Internal combustion engine Steam engine Gas turbine engine Steam engine Gas turbine engine.
© Goodheart-Willcox Co., Inc. Permission granted to reproduce for educational use only Publisher The Goodheart-Willcox Co., Inc. Tinley Park, Illinois.
Kinematic Analysis for A Conventional I.C. Engine P M V Subbarao Professor Mechanical Engineering Department Creation of Instantaneous Volume, Surface.
MAGSEAL 101. Rotary face seal that utilizes magnetic attraction force to positively mate the optically flat seal faces. Magnetic attraction force variation.
Internal Combustion Engines. Ideal Diesel Cycle Ideal Diesel Cycle.
Measuring Engine Performance ME 115 Laboratory Spring 2008.
Experiment #4 IC Engine.
Internal Combustion Engine Testing
I.C. ENGINES LECTURE NO: 13 (28 Apr 2014).
Internal Combustion Engine (ICE) Performance ME 252 Thermal Fluid Systems G. Kallio.
Thermodynamic Analysis of Internal Combustion Engines P M V SUBBARAO Professor Mechanical Engineering Department IIT Delhi Work on A Blue Print Before.
Diesel Engine Starting and Reversing
I.C. ENGINES Engine Testing Practical No: 3 (24 Mar, 2014)
AP Physics C Montwood High School R. Casao
Electrical Energy. Magnetism and Electricity Magnetism and electrical energy are very closely related: Electricity can create a magnetic field (electromagnets)
WELCOME \.
Engine Size and Measurements
Thermodynamic Cycles Air-standard analysis is a simplification of the real cycle that includes the following assumptions: 1) Working fluid consists of.
Mechanical Losses in An Engine P M V Subbarao Professor Mechanical Engineering Department Estimation of Curse….. One-Third of Car Fuel Consumption Is.
Reciprocating pump Pumps are used to increase the energy level of water by virtue of which it can be raised to a higher level. Reciprocating pumps are.
Work Distribution Analysis of I.C. Engine Cycles P M V Subbarao Professor Mechanical Engineering Department Find true Scope for Development….
Muhajir Ab. Rahim School of Mechatronic Engineering
Motor ELECTRICAL ENERGY Mechanical Energy.
Understanding Tractor Power and Efficiency. Objectives Define power (and associated terms) and describe the types of power produced by a tractor. Define.
Electromagnetic Induction
L 20 Thermodynamics [5] heat, work, and internal energy
Modelling and Control of Linear Combustion Engine (LCE) Pavel Němeček, Ondřej Vysoký, Michal Šindelka Czech Technical University in Prague Faculty of Electrical.
L 20 Thermodynamics [5] heat, work, and internal energy heat, work, and internal energy the 1 st law of thermodynamics the 1 st law of thermodynamics the.
Forging new generations of engineers. DC Motors and Generators Instruction Plan.
Department of Electrical and Computer Engineering EE20A - Electromechanical Energy Conversion DC Machine.
Day 3: Eddy Currents Back EMF in Motors Eddy Currents Nature of Eddy Currents.
Power and Power Measurement ENGR 10 – Intro to Engineering College of Engineering San Jose State University (Ping Hsu and Ken Youssefi) 1 Introduction.
7.3 ENERGY LOSSES AND ADDITIONS  Objective: to describe general types of devices and components of fluid flow systems.
Matching of Turbo-charger with I.C. Engine
Introduction to AC Motors ChE 462. AC Motors Synchronous motor – constant speed independent of load; compressors Induction motor is a common form of asynchronous.
SPLIT ENGINE.
Gas dynamics of Real Combustion in Turbo Combustor P M V Subbarao Professor Mechanical Engineering Department Make Sure that design is Acceptable to Gas.
HYDRAULIC MOTORS.
APPLIED THERMODYNAMIC INTERNAL COMBUSTION ENGINES
Design & Selection of Systems for Best Heat Release P M V Subbarao Professor Mechanical Engineering Department Supply of Sufficient Oxygen for Digestion.
NAZARIN B. NORDIN What you will learn: First law of thermodynamics Isothermal process, adiabatic process, combustion process for.
ABE 223: ABE Principles – Machine Systems ABE 223: ABE Principles – Machine Systems Power Measurement Tony Grift Dept. of Agricultural & Biological Engineering.
Performance Analysis for Selection of Operational Parameters I.C. Engines P M V Subbarao Professor Mechanical Engineering Department Actions Recommended.
L 20 Thermodynamics [5] heat, work, and internal energy heat, work, and internal energy the 1 st law of thermodynamics the 1 st law of thermodynamics the.
THERMAL ENGINEERING (ME 2301 ) M.R.SWAMINATHAN Assistant Professor Department of Mechanical Engineering Anna University Chennai Chennai-25.
Lesson 4.  Charge does not flow on its own. An electric charge has a certain amount of electrical potential energy because of the electric field set.
NAZARIN B. NORDIN GAS LAWS Ideal Gases Gases are fluids, differing from liquids in that while liquids are practically incompressible.
Closure Model for Cyclic Operation of I.C. Engines P M V Subbarao Professor Mechanical Engineering Department The Ultimate Goal of Modeling is …?????
Heat Engines A gasoline engine is a form of a heat engine, e.g. a 4-stroke engine INTAKE stroke: the piston descends from the top to the bottom of the.
DC Generators.
INDUSTRIAL HYDRAULICS
Analysis of Engine Performance
Strategies for Complete Expansion in I.C. Engine
Mechanical Losses in An Engine
Hybrid Electric Prime Movers
Hybrid Automotive Prime Movers
Measuring Engine Performance
L 20 Thermodynamics [5] heat, work, and internal energy
Thermodynamic Analysis of Internal Combustion Engines
System and Control Volume
BASIC MEASUREMENTS. Measurement of Speed The best method of measuring speed is to count the number of revolutions in a given time. This gives an accurate.
Presentation transcript:

Performance Measures for I.C. Engines Development & Evaluation P M V Subbarao Professor Mechanical Engineering Department Define A Better Engine.…. Evaluate Reaction to Optimize the Actions ….

Cycle Performance Parameters Net Work Transfer : This is net work done by working fluid on the piston, also called as Indicated Work. Power generated by gas on piston (Indicated Power

Indicated Thermodynamic Performance Indicative Performance:

James Watts Solution

Brake Power Vs Indicated Power Work delivered by the crankshaft is less than indicated work due to mechanical friction and parasitic loads of the engine. Parasitic loads include the oil pump, supercharger, air conditioner compressor, alternator, etc. Actual work available at the crankshaft is called brake work

I.C. Engine Test Rig Air Tank

DYNAMOMETERS Dynamometers are used to measure brake torque and power over the engine operating ranges of speed and load. They do this by using various methods to absorb the energy output of the engine, all of which eventually ends up as heat. Some dynamometers absorb energy in a mechanical friction brake (prony brake). These are the simplest dynamometers but are not as flexible and accurate as others at higher energy levels. Fluid or hydraulic dynamometers absorb engine energy in water or oil pumped through orifices or dissipated with viscous losses in a rotor-stator combination. Large amounts of energy can be absorbed in this manner, making this an attractive type of dynamometer for the largest of engines.

Prony Brake Dynamometer

Hydraulic Dynamometer

Eddy Current Dynamometers Eddy current dynamometers use a disk, driven by the engine being tested, rotating in a magnetic field of controlled strength. The rotating disk acts as an electrical conductor cutting the lines of magnetic flux and producing eddy currents in the disk. With no external circuit, the energy from the induced currents is absorbed in the disk.

Electric Dynamometer One of the best types of dynamometers is the electric dynamometer, which absorbs energy with electrical output from a connected generator. In addition to having an accurate way of measuring the energy absorbed, the load is easily varied by changing the amount of resistance in the circuit connected to the generator output. Many electric dynamometers can also be operated in reverse, with the generator used as a motor to drive (or motor) an unfired engine. This allows the engine to be tested for mechanical friction losses and air pumping losses, quantities that are hard to measure on a running fired engine.

Factory Testing of Vehicular Engines

Driving cycle A probable plot of vehicle speed right from the start of the engine through its journey over a prescribed time. Driving cycle development depends on the specific objective to be achieved It varies from city to city as well as for vehicle type Indian driving cycle which is criteria for emission testing of vehicle needs a thorough review

Industrial (Field) Measures for Performance  XSFC – specific fuel consumption (kg/kWh).  X must always be specified when reporting these values (i.e., I for indicated) Fuel consumption of an engine reported in L/h or kg/h because these values ignore engine load. A better measure of fuel consumption is,

Specific Fuel Consumption Variations ISFC – indicated specific fuel consumption BSFC - brake specific fuel consumption PSFC – PTO specific fuel consumption DSFC – drawbar specific fuel consumption

Indicative Mean Effective Pressure: Actual Fuel- Air Ratio : Stoichiometric Fuel- Air Ratio : Parameters for Performance Diagnosis

Fuel Air Equivalence Ratio:

Selection of Mixture Strength