Engine testing: the design, building, modification and use of powertrain test facilities
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier Butterworth-Heinemann
2012
|
Ausgabe: | 4. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXVII, 571 S. Ill., graph. Darst. |
ISBN: | 9780080969497 |
Internformat
MARC
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020 | |a 9780080969497 |9 978-0-08-096949-7 | ||
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084 | |a VER 103f |2 stub | ||
100 | 1 | |a Martyr, Anthony |e Verfasser |4 aut | |
245 | 1 | 0 | |a Engine testing |b the design, building, modification and use of powertrain test facilities |c A. J. Martyr ; M. A. Plint |
250 | |a 4. ed. | ||
264 | 1 | |a Amsterdam [u.a.] |b Elsevier Butterworth-Heinemann |c 2012 | |
300 | |a XXVII, 571 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Internal combustion engines |x Testing | |
650 | 0 | 7 | |a Prüfstand |0 (DE-588)4209037-4 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Verbrennungsmotor |0 (DE-588)4062661-1 |2 gnd |9 rswk-swf |
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689 | 0 | 2 | |a Messtechnik |0 (DE-588)4114575-6 |D s |
689 | 0 | |5 DE-604 | |
700 | 1 | |a Plint, M. A. |e Verfasser |4 aut | |
856 | 4 | 2 | |m Digitalisierung UB Bayreuth |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024975894&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-024975894 |
Datensatz im Suchindex
_version_ | 1804149078786834432 |
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adam_text | Contents
Foreword to the Fourth Edition
xix
About the Authors
xxi
Introduction
xxiii
1.
Test Facility Specification, System Integration,
and Project Organization
Introduction: The Role of the Test Facility
1
Part
1.
The Specification of Test Powertrain Facilities
2
Levels of Test Facility Specification
3
Note Concerning Quality Management Certification
3
Creation of an Operational Specification
4
Feasibility Studies and Outline Planning Permission
6
Benchmarking
6
Regulations, Planning Permits, and Safety Discussions Covering
Test Cells
6
Specification of Control and Data Acquisition Systems
8
Use of Supplier s Specifications
9
Functional Specifications: Some Common Difficulties
9
Interpretation of Specifications by Third-Party Stakeholders
10
Part
2.
Multidisciplinary Project Organization and Roles
Ί
1
Project Roles and Management
12
Project Management Tools: Communications and Responsibility
Matrix
14
Web-Based Control and Communications
14
Use of Master Drawing in Project Control
14
Project Timing Chart
15
A Note on Documentation
16
Summary
16
References
16
2.
Quality and H&S Legislation and Management, Type
Approval, Test Correlation, and Reporting of Results
Test Facility Efficiency and Quality Certification
18
Management Roles
19
Work Scheduling
19
Health
&
Safety (H&S) Legislation, Management,
and Risk Assessment
21
vi
) Contents
Common Hazards in All Powertrain Facilities
22
Risk Analysis
23
Management and Supervision of University Test Facilities
25
Use and Maintenance of Test Cell Log Books
25
Test Execution, Analysis, and Reporting
26
Determination of Cause and Effect
27
Key Life Testing
28
Vehicle and Vehicle Systems Type Approval,
Homologation,
and Confirmation of Production
28
Cell-to-Cell Correlation
29
End-of-Life Vehicles
(EĽV)
Directive
32
Power Test Codes and Correction Factors
32
Rart
1.
Standard Reference Conditions, Declarations of Power,
Fuel and Lubricating Oil Consumptions, and Test Methods
33
Part
2.
Test Measurements
33
Part
3.
Speed Governing
34
Part
4.
Torsionai
Vibrations
34
Part
5.
Specification of Overspeed Protection
34
Part
6.
Codes for Engine Power
34
Statistical Design of Experiments
34
Reference Documents
39
Useful Websites and Regulations
39
Further Reading
39
3.
The Test Cell as a Thermodynamic System
Introduction
41
The Energy Balance of the Engine
42
Diversity Factor and the Final Specification of a Facility
Energy Balance
45
Common or Individual Services in Multi-Cell Laboratories?
49
Summary
49
Further Reading
50
4.
Powertrain Test Facility Design and Construction
Part
1.
Cell Types, Sizes, and Layout
52
Cell Sizing
52
A Note Concerning Lifting Beams in Test Cells
53
Frequency of Change of Unit Under Test and Handling
Systems
54
Seeing and Hearing the Unit Under Test
54
Conta
і
neri
zed Test
Ce
11 s
55
The Basic Minimum Engine Test Bed
57
Common Variations of Multi-Cell Layouts
59
Part
2.
Cell Contents and Fittings
62
Emergency Exits, Safety Signs, and Alarms
62
Contents
(vii
Transducer Boxes and Booms
62
Test Cell Flooring and Subfloor Construction
63
Facility and Cell Doors
64
Cell Windows
65
Cell Walls and Roof
66
Lighting
67
Cell Support Service Spaces
68
Control Room Design
69
In-Cell Control of the
UUT
72
Manual Control
73
Part
3.
Test Cell Roles and their Special Features
73
Hybrid and Electric Vehicle Powertrain Testing
73
Batteries and Battery Simulators
74
Gearbox and Transmission Test Rigs
75
Full Powertrain Test Rigs
76
Inclined Engine Test Beds
77
Automotive Engine Production Test Cells (Hot Test)
78
Automotive Engine Production Cold-Test Stations
79
End-of-Line (EOL) Test Station Facility Layout
79
Large and Medium-Speed Diesel Engine Test Areas
80
Part
4.
Fire Safety and Fire Suppression in Test Facilities:
European ATEX Codes Applied to Engine Test Cells
81
Fire Stopping of Cable Penetrations in Cell Structure
82
Fire and Gas Detection and Alarm Systems for Test Facilities
83
Fire Extinguishing Systems
84
Useful Websites
87
5.
Electrical Design Requirements of Test Facilities
Introduction
89
The Electrical Engineer s Design Role
90
General Characteristics of the Electrical Installation
91
Physical Environment
92
Electrical Signal and Measurement Interference
94
Earthing System Design
95
The Layout of Cabling
96
Integration of AC Dynamometer Systems
101
Supply Interconnection of Disturbing and Sensitive Devices
102
Power Cable Material and Bend Radii
102
Electrical Power Supply Specification
103
Electrical Cabinet Ventilation
103
European Safety Standards and
CE
Marking
104
Safety Interaction Matrix
108
Note on As Built Electrical Documentation (Drawing)
Standards
108
Useful Texts on EMC Suitable for Electrical Engineers
Involved with Test Facility Design
108
viii J
Contents
6. Ventilation and Air-Conditioning in Powertrain
Test
Facilities
Part 1. Test
Cell
Ventilation
Strategies
110
Purge Fans: Safety Requirements to Reduce Explosion Risk
111
Air Handling Units (AHUs)
112
The Heat Capacity of Cooling Air
112
Heat Transfer From the Engine
113
Heat Transfer From the Exhaust System
115
Heat Transfer From Walls
115
Sources of Heat in the Test Cell
116
Heat Losses From the Cell
117
Calculation of Ventilation Load
118
Part
2.
Design of Ventilation Ducts and Distribution Systems
119
Pressure Losses
119
Ducting and Fittings
120
Inlet and Outlet Ducting
121
The Use of Spot Fans for Supplementary Cooling
124
Air-Movers
124
Fire Dampers
125
External Ducting of Ventilation Systems
125
Ventilation Duct Silencers
126
Control of Ventilation Systems
126
Fans
127
Ventilation of the Control Room
133
Air-Conditioning
133
Fundamentals of
Psychrometry
134
Air-Conditioning Processes
136
Part
3.
Combustion Air (CA) Treatment and Climatic Cells
139
Centralized Combustion Air Supplies
139
Specification of Operational Envelope for Humidity
and Temperature Control
140
Dedicated Combustion Air Treatment Units
140
Climatic Testing of Engine and
Powertrains 145
Climatic Test Cells for Vehicles
145
Wind Tunnels
147
Summary
148
Notation
148
References
149
Further Reading
149
7.
Test Cell Cooling Water and Exhaust Gas Systems
Part
1.
Cooling Water Supply Systems
152
Water
152
Types of Test Cell Cooling Water Circuits
156
Drawing up the Energy Balance and Sizing the Water System
169
Part
2.
Exhaust Gas Systems
169
Individual Cell, Close Coupled Exhaust
171
Contents (
¡χ
Individual Cell, Scavenged Duct
172
Multiple Cells, Common Scavenged Duct
172
Cooling of Exhaust Gases
173
Estimation of Exhaust Gas Flows
173
Exhaust Noise
175
Tail Pipes
176
Exhaust Cowls on Buildings
177
Part
3.
Turbocharger Testing
178
Turbocharger Test Stands
179
Testing of Turbochargers Using an Engine
179
Turbine Speed and Blade Vibration Sensing
181
Special Applications
181
Health and Safety Implications of Turbocharger Testing
182
References
182
8.
Fuel and Oil Storage, Supply and Treatment
Introduction
183
Bulk Fuel Storage and Supply Systems
184
Decommissioning of Underground Fuel Tanks
187
Auditing of Fuel Use
188
Fuel Pipes
188
Underground Fuel Pipes
189
Storage and Treatment of Residual Fuels
189
Storage of Biofuels
190
Reference Fuel Drums
191
Natural Gas (NG), Liquefied Natural Gas (LNG), and
Compressed Natural Gas (CNG)
191
Liquefied Petroleum
Gas (LPG) 192
Fuel Supply to the Test Cell
192
In-Cell Fuel Systems
194
Engine Fuel Pressure Control
195
Engine Fuel Temperature Control
196
Engine Oil Cooling Systems
198
Properties of Gasoline and Shelf Life
198
Properties of Diesel Fuels
199
Fuel Dyes and Coloring
200
Safety Principles in Handling and Storing Volatile Fuels
201
References
201
Further Reading
201
9.
Vibration and Noise
Part
1:
Vibration and its Isolation
203
Vibration
203
Fundamentals: Sources of Vibration
204
Design of Engine Mountings and Test-Bed Foundations
207
Practical Considerations in the Design of Engine and Test-Bed
Mountings
211
Contents
Massive
Foundations and Air-Sprung Bedplates
213
Summary of Vibration Section
219
Vibration Notation
219
Part
2:
Noise and its Attenuation in Test Facilities
219
Sound Intensity
220
Noise Measurements
221
Permitted Levels of Noise in the Workplace
222
Noise External to Test Facility and Planning Regulations
223
Noise Reverberation in the Test Cell Environment
223
Noise Notation
224
References
224
Useful Texts
225
Further Reading
225
10.
Dynamometers: The Measurement of Torque,
Speed, and Power
Introduction
228
Trunnion-Mounted (Cradle) Dynamometers
230
Measurement of Torque Using In-Line Shafts or Torque Flanges
231
Calibration and the Assessment of Errors in Torque
Measurement
234
Torque Measurement Under Accelerating and Decelerating
Conditions
238
Measurement of Rotational Speed
239
One, Two, or Four Quadrant?
240
Dynamometer Torque/Speed and Power/Speed Characteristics
241
Pushing the Limits of Dynamometer Performance
244
Water Quantity Required to Absorb a Given Power in Water
Brakes
245
Engine Cranking and Starting
245
Choice of Dynamometer
246
Classification of Dynamometer Types and their Working
Principles
247
Hydrokinetic or Hydraulic Dynamometers (Water Brakes)
247
Constant-Fill Machines
250
Variable-Fill Machines
250
Bolt-On Variable-Fill Water Brakes
252
Disk Dynamometers
253
Hydrostatic Dynamometers
253
Electrical Motor-Based Dynamometers and Their Associated
Control
253
Direct Current (DC) Dynamometers
255
Eddy-Current Dynamometers
256
Powder Brake Dynamometers
256
Friction Dynamometers
257
Air Brake Dynamometers
257
Hybrid and Tandem Dynamometers
258
Contents
11.
Rigging the Engine and Shaft Selection
Part
1.
Rigging of Electrical and Fluid Services Plus Engine
Mountings
260
Supply of Electrical Services to Engine Systems
262
On-Board Diagnostic Systems (OBDs)
262
Rigging Engine Circuits and Auxiliaries
263
Engine Handling and Support Systems
264
Part
2.
Selection of a Suitable Dynamometer Connecting Shaft
268
The Nature of the Problem
269
Overhung Mass on Engine and Dynamometer Bearings
269
Background Reading
270
Torsionai
Oscillations and Critical Speeds
270
Design of Coupling Shafts
276
Stress Concentrations, Keyways, and Keyless Hub Connection
277
Shaft Whirl
278
Couplings
279
Damping: The Role of the Flexible Coupling
281
An Example of Drive Shaft Design
284
An Alternative Solution
287
Shock Loading of Couplings Due to Cranking, Irregular Running,
and Torque Reversal
287
Selection of Coupling Torque Capacity
289
The Role of the Engine Clutch
290
Balancing of Driveline Components
290
Alignment of Engine and Dynamometer
290
Guarding of Coupling Shafts
291
Engine-to-Dynamometer Coupling: Summary of Design
Procedure
292
Part
3.
Flywheels and Engine Starting Systems
292
Flywheel Safety Issues
293
Engine Cranking and Starting in a Test Cell
294
Engine Cranking: No Starter Motor
294
Engine-Mounted Starter Systems
295
Non-Electrical Starting Systems
296
Notation
296
References
297
Further Reading
297
12.
Test Cell Safety, Control, and Data Acquisition
Part
1.
Machinery and Control System Safety: Stopping,
Starting, and Control in the Test Cell
300
European Machinery Safety Regulations
301
US Machinery Safety Regulations
303
Emergency Stop Function
303
Hard-Wired Instrumentation in the Test Facility
305
Computerized Monitoring of Test Cell and
UUT
Alarm Signals
306
Security of Electrical Supply
306
xii
^)
Contents
Building Management Systems (BMS) and Services Status Displays
307
Test Cell Start-Up and Shutdown Procedures
308
Part
2.
Open- and Closed-Loop Control of Engine and
Dynamometer
309
Problems in Achieving Control
310
The Test Sequence: Modes of Prime-Mover/Dynamometer Control
311
Precautions in Modes of the Four-Quadrant Dynamometer
315
Throttle Actuation
315
Part
3.
Test Control Software, Choosing Supplier, and
Sequence Editing
316
Editing and Control of Complex Engine Test Sequences
317
Test Sequence Elements
318
Part
4.
Data Acquisition and the Transducer Chain
319
Data Channel Names
319
Calibration
319
Transducer Boxes and Distributed I/O
320
Choice of Instruments and Transducers
321
Measurement of Time Intervals and Speed
323
Force, Quasi-Static
323
Measurement of Cyclic Force
323
Measurement of Pressure
324
Displacement
326
Acceleration/Vibration
326
Temperature Measurement
327
Smart Instrumentation and Communication Links
329
Control for Endurance Testing and Unmanned Running
329
Control for Dynamic Engine Drive Cycles
330
Data Display
332
Reference
333
Further Reading
333
13.
Data Handling, the Use of Modeling, and
Post-Test Processing
Part
1.
Data Collection and Transmission
335
Traditional Paper-Based Test Data Collection
336
Chart Recorder Format of Data
338
Computerized Data Recording with Manual Control
338
Fully Computerized Test Cell Control and Data Handling Systems
339
Data Transfer Systems and Protocols
339
Powertrain Mapping and Calibration
341
Virtual Models in Powertrain Calibration and Hardware-in-Loop
Testing
342
Transmission Testing and a Role for HIL
345
Part
2.
Management of Data: Some General Principles
345
Post-Acquisition Data Processing, Statistics, and Data Mining
346
Data Analysis Tools for the Test Engineer
348
Physical Security of Data
349
Reference and Further Reading
350
Contents
ŕ
x¡¡
14.
Measurement of Fuel, Combustion Air,
and Oil Consumption
Introduction
352
Part
1.
Measurement Instruments for Liquid Fuel Consumption
352
Mass Flow or Consumption Rate Meters
355
Spillback
357
Fuel Consumption Measurements: Gaseous Fuels
358
Effect of Fuel Condition on Engine Performance
359
Measurement of Lubricating Oil Consumption
359
Measurement of Crankcase Blow-By
361
Part
2.
Measurement of Air Consumption and Gas Flows
362
Properties of Air
362
Air Consumption, Condition, and Engine Performance
363
Notation Used in Air Consumption Calculations
373
References
374
Further Reading
374
15.
The Combustion Process and Combustion Analysis
Introduction
376
Single-Cylinder Research and Optical Engines
376
Fundamental Influences on Combustion
377
Combustion in the Conventional Gasoline Engine
378
Combustion in the Conventional Diesel Engine
378
Effects on Combustion Process of Air/Fuel Ratio
379
Engine Indicating (El) Measurements
382
Total and Instantaneous Energy Release
387
Cyclic Energy Release
—
Mean Effective Pressure (Indicated,
Cross, and Pumping)
389
Instantaneous Energy Release
389
Computerized Engine Indicating Technology and Methodology
390
Basic Circuit and Operation of Pressure Measurement Chain
391
Ground Loops in Indication Equipment
394
Exact Determination of True Top Dead Center Position
394
Combustion Analysis Roles in
1С
Engines for Hybrid
Vehicles
395
Knock Sensing
396
Low-Speed Pre-lgnition (LSPI) or Super-Knock
397
Integration of Combustion Analysis Equipment within
the Test Cell
397
High-End Engine Calibration Cells
398
Occasional use of Combustion Analysis in Test Cells
399
Engine Indicating Pressure Transducers (EIPTs)
400
Cylinder Pressure Transducers
400
Mounting of the Cylinder Pressure Transducer
402
Fuel Rail Pressure and Shot Volume Measurement
403
Speed/Crank Angle Sensors
403
Calculation for Combustion Analysis Test Results
404
xiv
~)
Contents
Notation
406
References
406
Further Reading
406
16.
Engine Exhaust Emissions
Emission Legislation, Certification, and Test Processes
410
Auxiliary Engine-Driven Units, Fitted or Omitted for the
Emissions Test
412
Legislation Classifications
413
After-Market Emission Legislation
415
Fuel Standards
415
Basic Chemistry of Internal Combustion Engine Emissions
415
Emissions from Spark-Ignition Engines
417
Emissions from Diesel Engines
418
Diesel
Articúlate
Emissions
419
Principles of Particulate Emissions Measurement
420
Legislative Limits and Measurement of Particulate Mass (PM)
and Number (PN)
420
Principles of Measurement and Analysis of Gaseous Emissions
422
Nondispersive
Infrared Analyzer (NDIR)
422
Fourier Transform Infrared Analyzer (FTIR)
422
Chemiluminescence Detector (CLD)
423
Flame lonization Detector (FID)
423
Fast FID, Cutter FID, and GC-FID
423
Paramagnetic Detection (PMD) Analyzer
423
Mass Spectrometer
424
Response Times
424
Exhaust After-Treatment Catalysts and Filters, Operation
and Testing
425
Three-Way Catalytic Converters
425
Diesel Oxidizing Catalysts (DOCs)
427
Diesel Particulate Filter (DPF)
428
Selective Catalytic Reduction (SCR)
429
Ammonia Slip Catalyst (ASC)
430
Testing of Post-Combustion Exhaust Systems and Devices
430
Integration and Management of Exhaust Emission
Instrumentation
431
Calibration, Span Gases, Storing Gas Distribution System
431
Gas Analyzers and Emission Benches
434
Constant-Volume Sampling (CVS) Systems
434
Health and Safety Implications and Interlocks for CVS Systems
438
Temperature Soak Areas for Legislative Testing
439
The European Exhaust Emissions Test Procedure
(Passenger Cars)
439
The US Federal Light-Duty Exhaust Emission Test
Procedure (FTP-75)
440
Heavy-Duty Test Procedures
442
Contents
Exhaust Emissions of Marine Propulsion Diesel Engines
443
ISO
8178
and Testing Emissions of Non-Road Vehicle Engines
443
Vehicle Evaporative Emissions
444
Implications of Choice of Site on Low-Level
Emissions Testing
447
Abbreviations
449
References
449
Further Reading
450
Useful Addresses
450
17.
Chassis or Rolling-Road Dynamometers
Introduction
452
Genesis of the Rolling-Road Dynamometer
452
The Road Load Equation
453
Calibration, Coast-Down, and Inertia Simulation
455
Brake System Testers
457
Tire-Testing Dynamometers
457
Rolling Roads for In-Service Tuning and Assessment
458
Rolling Roads for End-of-Line (EOL) Production Testing
458
Chassis Dynamometers for Emissions Testing
459
The Emission Dynamometer Cell and Environs
461
Mileage Accumulation Facilities
462
NVH and EMC Chassis Dynamometers
463
Special Features of Chassis Dynamometers in Climatic Cells
465
Flat-Track Chassis Dynamometers
466
Independent Wheel Dynamometers
466
Articulated Chassis Dynamometers
467
Robot Drivers or Shifters
467
The Installation of Chassis Dynamometers
469
Chassis Dynamometer Cellar or Pit Design and
Construction Details
469
Pit Flooding
470
Pit Depth
470
Dynamometer Flooring
472
Design and Installation of Variable-Geometry
(4
χ
4)
Dynamometers
473
Drive Cabinet Housing
474
Offloading and Positioning Chassis Dynamometer Units
474
Tire Burst Detectors
474
Loading and Emergency Brakes
474
Vehicle Restraints
475
Guarding and Safety
476
Roll Surface Treatment
476
Road Shells and Bump Strips
477
Driver s Aids
477
Fire Suppression
478
The Effect of Roll Diameter on Tire Contact Conditions
478
xvi
J
Contents
Limitations
of the Chassis Dynamometer
480
Solar Heat Load Testing in Chassis Dynamometer
Environmental Cells
481
18.
Anechoic Test Cells: NVH and EMC Testing
Introduction
483
Part
1.
NVH Testing and Acoustic Test Facilities
484
The Anechoic Cell Structure
485
Treatment and Location of Services for Anechoic Cells
486
Vehicle Noise: Measurement Practice
490
Fire Detection and Suppression in Anechoic Cells
491
Part
2.
Electromagnetic Compatibility (EMC) Test Facilities
491
The Task
491
Coupling Mechanisms Between EMI Source and Victim
492
Pulse Interference or Electrostatic Discharge
(ESD)
493
Legislation
494
Type Approval E and e Marking
496
EMC Test Facilities
497
Health and Safety in RF Cells
499
Further Reading
500
19.
The Pursuit and Definition of Accuracy
Introduction and Terms
501
Analog Versus Digital
503
Example: Measurement of Exhaust Temperature of a
Diesel Engine
504
Some General Principles
507
Definition of Terms Relating to Accuracy
507
Statements Regarding Accuracy: A Critical Examination
508
Sensing Errors
509
Systematic Instrument Errors
509
Random Instrument Errors
511
Instrument Drift
511
Instrumental Accuracy: Manufacturers Claims
511
Uncertainty
512
Traceability
514
Combination of Errors
514
The Number of Significant Figures to be Quoted
515
Absolute and Relative Accuracy
515
The Cost of Accuracy: A Final Consideration
515
References
516
Further Reading
516
20.
Tribology, Fuel, and Lubrication Testing
Introduction
517
Calorific Value of Fuels
518
Contents
Gaseous Fuels
518
Liquefied Petroleum
Gas (LPG
or
LP Gas) 519
Lubricant Classification and Certification
520
Tribology
521
Bench Tests
522
Oil Characteristics
523
Fuel Contamination of Lubrication Oil
523
Reference Fuels and Lubricants
524
Designated Engines and Test Regimes in Fuel and Lube Testing
524
RNT (Radionuclide Technique) Wear Tests
526
Example of (Non-RNT) Engine Tests Involving Tribology:
Measurement of Compression Ring Oil Film Thickness
526
Biofuels
527
References
528
Further Reading
529
21.
Thermal Efficiency, Measurement of Heat,
and Mechanical Losses
Introduction
531
Ideal Standard Cycles: Effect of Compression Ratio
532
The Energy Balance of an Internal Combustion Engine
534
Measurement of Heat Losses: Heat to Exhaust
536
Sample Calculation: Analysis of an Engine Test
536
Sample Calculation: Exhaust Calorimeter
537
Energy Balances: Typical Values
538
The Role of Indicated Power in the Energy Balance
539
Prediction of Energy Balance
539
Energy Balance for Turbocharger
541
Summary of Stages in Calculation of Energy Balance From
an Engine Test
541
Prediction of Energy Balance for a Given Engine
541
Measurement of Mechanical Losses in Engines
542
Motoring Tests
543
The Morse Test
544
The Willan Line Method
544
Summary
544
Notation
545
References and Further Reading
546
Appendix
1 :
Martyr s Laws of Engineering Project Management
547
Index
551
|
any_adam_object | 1 |
author | Martyr, Anthony Plint, M. A. |
author_facet | Martyr, Anthony Plint, M. A. |
author_role | aut aut |
author_sort | Martyr, Anthony |
author_variant | a m am m a p ma map |
building | Verbundindex |
bvnumber | BV040119765 |
callnumber-first | T - Technology |
callnumber-label | TJ759 |
callnumber-raw | TJ759 |
callnumber-search | TJ759 |
callnumber-sort | TJ 3759 |
callnumber-subject | TJ - Mechanical Engineering and Machinery |
classification_rvk | ZL 5500 |
classification_tum | MSR 980f VER 103f |
ctrlnum | (OCoLC)794590483 (DE-599)BVBBV040119765 |
dewey-full | 621.430287 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.430287 |
dewey-search | 621.430287 |
dewey-sort | 3621.430287 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Maschinenbau / Maschinenwesen Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik Verkehrstechnik |
edition | 4. ed. |
format | Book |
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id | DE-604.BV040119765 |
illustrated | Illustrated |
indexdate | 2024-07-10T00:17:19Z |
institution | BVB |
isbn | 9780080969497 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024975894 |
oclc_num | 794590483 |
open_access_boolean | |
owner | DE-1050 DE-573 DE-1043 DE-703 DE-Aug4 DE-859 |
owner_facet | DE-1050 DE-573 DE-1043 DE-703 DE-Aug4 DE-859 |
physical | XXVII, 571 S. Ill., graph. Darst. |
publishDate | 2012 |
publishDateSearch | 2012 |
publishDateSort | 2012 |
publisher | Elsevier Butterworth-Heinemann |
record_format | marc |
spelling | Martyr, Anthony Verfasser aut Engine testing the design, building, modification and use of powertrain test facilities A. J. Martyr ; M. A. Plint 4. ed. Amsterdam [u.a.] Elsevier Butterworth-Heinemann 2012 XXVII, 571 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Internal combustion engines Testing Prüfstand (DE-588)4209037-4 gnd rswk-swf Verbrennungsmotor (DE-588)4062661-1 gnd rswk-swf Messtechnik (DE-588)4114575-6 gnd rswk-swf Verbrennungsmotor (DE-588)4062661-1 s Prüfstand (DE-588)4209037-4 s Messtechnik (DE-588)4114575-6 s DE-604 Plint, M. A. Verfasser aut Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024975894&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Martyr, Anthony Plint, M. A. Engine testing the design, building, modification and use of powertrain test facilities Internal combustion engines Testing Prüfstand (DE-588)4209037-4 gnd Verbrennungsmotor (DE-588)4062661-1 gnd Messtechnik (DE-588)4114575-6 gnd |
subject_GND | (DE-588)4209037-4 (DE-588)4062661-1 (DE-588)4114575-6 |
title | Engine testing the design, building, modification and use of powertrain test facilities |
title_auth | Engine testing the design, building, modification and use of powertrain test facilities |
title_exact_search | Engine testing the design, building, modification and use of powertrain test facilities |
title_full | Engine testing the design, building, modification and use of powertrain test facilities A. J. Martyr ; M. A. Plint |
title_fullStr | Engine testing the design, building, modification and use of powertrain test facilities A. J. Martyr ; M. A. Plint |
title_full_unstemmed | Engine testing the design, building, modification and use of powertrain test facilities A. J. Martyr ; M. A. Plint |
title_short | Engine testing |
title_sort | engine testing the design building modification and use of powertrain test facilities |
title_sub | the design, building, modification and use of powertrain test facilities |
topic | Internal combustion engines Testing Prüfstand (DE-588)4209037-4 gnd Verbrennungsmotor (DE-588)4062661-1 gnd Messtechnik (DE-588)4114575-6 gnd |
topic_facet | Internal combustion engines Testing Prüfstand Verbrennungsmotor Messtechnik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024975894&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT martyranthony enginetestingthedesignbuildingmodificationanduseofpowertraintestfacilities AT plintma enginetestingthedesignbuildingmodificationanduseofpowertraintestfacilities |