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6 1/8 X 9 1/5 in PART ONE PRINCIPLES 1
INTRODUCTION
2
CONTROL SURFACE TYPES
2.1
Control surfaces and applica tions 2.2
Rudder types 2.3
Other control s urfaces
3
PHYSICS OF CONTROL SURFACE OP ERATION 3.1 Background 3.2 Basic flow patter ns and terminology 3.3 Properties of lifting foils 3.4 Induced drag 3.5 Rudder-propeller interaction3.6 Propeller induced velocity upstream of rudder 3.7 Influence of hull on rudder-propeller performance
4 CONTROL SURFACE REQUIREMENTS 4.1
Rudder requirements 4.2
Rudder design within the ship design pro cess 4.3
Requirements of other control surfaces 4.4
Rudder and control surface design strategy
PART TWO DESIGN DATA SOURCES
5 EXPERI MENTAL DATA 5.1
Review of available experimental data and performance prediction 5.2
Presentation of experimental
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6 1/8 X 9 1/5 in PART ONE PRINCIPLES 1
INTRODUCTION
2
CONTROL SURFACE TYPES
2.1
Control surfaces and applica tions 2.2
Rudder types 2.3
Other control s urfaces
3
PHYSICS OF CONTROL SURFACE OP ERATION 3.1 Background 3.2 Basic flow patter ns and terminology 3.3 Properties of lifting foils 3.4 Induced drag 3.5 Rudder-propeller interaction3.6 Propeller induced velocity upstream of rudder 3.7 Influence of hull on rudder-propeller performance
4 CONTROL SURFACE REQUIREMENTS 4.1
Rudder requirements 4.2
Rudder design within the ship design pro cess 4.3
Requirements of other control surfaces 4.4
Rudder and control surface design strategy
PART TWO DESIGN DATA SOURCES
5 EXPERI MENTAL DATA 5.1
Review of available experimental data and performance prediction 5.2
Presentation of experimental