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Rotor Engine- A Waste Energy Recovery Device from I. C. Engine Exhaust - Printable Version

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Rotor Engine- A Waste Energy Recovery Device from I. C. Engine Exhaust - rkrusty - 02-04-2014

CONTENTS
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CHAPTER NO. TITLE PAGE NO.
ABSTRACT
LIST OF TABLE
LIST OF FIGURES
LIST OF SYMBOLS, ABBREVIATIONS AND NOMENCLATURE
CHAPTER 1.0 INTRODUCTION

1.1 Introduction to Waste Energy Recovery Device System
1.1.1 Classification and Application
1.1.2 Benefits of Waste Heat Recovery
1.2 Development of a Waste Heat Recovery System
1.3 EGR Technology
CHAPTER 2.0 REVIEW OF LITERATURE
2.1 Various Energy Recovery Devices Used For I-C Engine Exhaust
2.1.1 Turbocharger
2.1.2 Superchargers
2.1.3 Heat Wheels
2.1.4 Heat Pipe
2.1.5 Regenerator
2.1.6 Recuperators
2.1.7 Radiation/Convective Hybrid Recuperator
2.1.8 Ceramic Recuperator
2.1.9 Economiser
2.1.10 Plate heat exchanger
2.2 Nozzle
CHAPTER 3.0 WORK DONE
3.1 Equation of the Nozzle
3.2 Mach Number
3.3 Back Pressure
CHAPTER 4.0 CALCULATIONS
4.1 Nozzle
4.2 Compressor
4.3 Problem Identification
4.4 Solution to the problem
CHAPTER 5.0 RESULTS AND DISCUSSIONS
CHAPTER 6.0 CONCLUSION
6.1 Scope Of Future Work
COST ESTIMATE
REFERENCES
RESUME
SETUP PICTURE
PROJECT TEAM MEMBERS INFORMATION

LIST OF TABLES
_____________________________________________________________________

TABLE NO. TABLE
PAGE NO.
Table 1.1 Waste Source And Quality
TABLE 1.2 Typical Waste Heat Temperature at High Temperature Range from Various Sources

TABLE 1.3 Typical Waste Heat Temperature At Medium Temperature Range From Various Source

TABLE 1.4 Typical Waste Heat Temperature At low Temperature Range From Various Sources

TABLE 1.5 Energy Recovery Devices
TABLE 1.6 Waste Source And Quality
TABLE 3.1 Gas Properties
TABLE 3.2 Observation Table
TABLE 4.1 Engine specifications
TABLE 4.2 Observation Table
TABLE 4.3 Observation Table



LIST OF THE FIGURES
_____________________________________________________________________
FIGURE NUMBER NAME OF THE FIGURE PAGE NUMBER
Fig 1.1 Exhaust Gas Recirculation (EGR) Process
Fig 2.1 Turbocharger is plumbed in a car
Fig 2.2 Centrifugal supercharger
Fig 2.3 Heat Wheels
Fig 2.4 Heat Pipe
Fig 2.5 Regenerator
Fig 2.6 Waste Heat Recovery using Recuperator
Fig 2.7 Metallic Radiation Recuperator
Fig 2.8 Convective Recuperator
Fig 2.9 Convective Radiative Recuperator
Fig 2.10 Economizer
Fig 2.11 Plate Heat Exchanger
Fig 2.12 Enthalpy and Entropy Relations for Nozzle Efficiency
Fig 2.13 Nozzle Schematic Layout
Fig 3.1 Nozzle Schematic Layout
Fig 3.2 Nozzle Temperature Vs Entropy Diagram
Fig 3.3 Nozzle Performance
Fig 4.1 The system designed by the team
Fig 4.2 Wire View of Rotor Engine