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از ساعت 7 صبح تا 10 شب
ویرایش:
نویسندگان: Min Zhao
سری:
ISBN (شابک) : 9789813365254, 9787118117394
ناشر:
سال نشر: 2021
تعداد صفحات: 257
زبان: English
فرمت فایل : PDF (درصورت درخواست کاربر به PDF، EPUB یا AZW3 تبدیل می شود)
حجم فایل: 10 مگابایت
در صورت تبدیل فایل کتاب Prediction and Validation Technologies of Aerodynamic Force and Heat for Hypersonic Vehicle Design به فرمت های PDF، EPUB، AZW3، MOBI و یا DJVU می توانید به پشتیبان اطلاع دهید تا فایل مورد نظر را تبدیل نمایند.
توجه داشته باشید کتاب فناوری های پیش بینی و اعتبارسنجی نیروی آیرودینامیکی و گرما برای طراحی خودروهای مافوق صوت نسخه زبان اصلی می باشد و کتاب ترجمه شده به فارسی نمی باشد. وبسایت اینترنشنال لایبرری ارائه دهنده کتاب های زبان اصلی می باشد و هیچ گونه کتاب ترجمه شده یا نوشته شده به فارسی را ارائه نمی دهد.
Foreword Preface Informative Abstract Contents 1 Development of Hypersonic Aerothermodynamic Technologies 1.1 Prediction of Aerodynamic Force for Hypersonic Flow 1.1.1 Theoretical Engineering Calculation Hypersonic Aerodynamic Force 1.1.2 Numerical Simulation of Hypersonic Aerodynamic Force 1.1.3 Experimental Study on Hypersonic Aerodynamic Force 1.2 Research Trends of Hypersonic Aerodynamics Force and Outlook 1.3 Prediction of Aerodynamic Heat for Hypersonic Flow 1.3.1 Engineering Calculation of Hypersonic Aerodynamic Heat 1.3.2 Numerical Simulation of Hypersonic Aerodynamic Heat 1.3.3 Experimental Study on Hypersonic Aerodynamic Heat 1.4 Research Trends of Hypersonic Aerodynamics Heat and Outlook 1.5 Summary and Outlook References 2 An Overview of Ground-Flying Calibration Technologies for Hypersonic Vehicle 2.1 Aerothermodynamics Environment of Hypersonic Vehicle 2.2 A Review: Ground-Flying Consistency Research of Hypersonic Vehicle 2.3 Development of Method for Conversion of Aerodynamic Heat on Ground-Flying 2.3.1 The Aerodynamic Heat Difference Between Ground and Flying 2.3.2 Data Correlation of Aerodynamic Heat Tests 2.3.3 Method of Aerodynamic Heat Conversion of Environment in Large Area 2.3.4 Conversion Method of Local Aerodynamic Heat Environment 2.4 Development of Flying Test 2.4.1 Background of Flight Tests Development 2.4.2 Implementation Cases on Flight Test 2.4.3 Direction of Flight Tests Development 2.5 Summary and Outlook References 3 Bluff Body Overflow and Drag Reduction Control 3.1 Flow Over Blunt Body 3.1.1 Separation of Boundary Layer 3.1.2 Flow Resistance Around Bluff Body 3.2 Drag Reduction for Blunt Body 3.2.1 Methods for Boundary Layer Control and Wake Flow Control 3.2.2 Active Closed-Loop Control 3.3 Optimal Control and Suboptimal Control 3.4 Summary and Outlook References 4 A Functional Based Prediction Method for Hypersonic Aerodynamic Force and Heat 4.1 Introduction 4.2 Overview of Prediction Method 4.3 An Intelligent Data Correlation Method Based on Functional Optimization 4.3.1 Historical Inspiration 4.3.2 Basic Idea 4.3.3 Functional Prediction Method for Analyzing Change Laws 4.3.4 The Method for Functional Prediction of Invariant Laws 4.4 Implementation of the Prediction Method 4.5 Preliminary Application of the Prediction Method 4.5.1 Accuracy Assessment 4.5.2 Examples of Detection of Aerodynamic Law 4.5.3 Examples of Detection of Pneumatic Heat Law 4.6 Summary and Outlook References 5 Numerical Method for Flow Transition Prediction 5.1 Introduction 5.2 e-N Method Based on Stability Theory 5.3 High-Fidelity LES or DNS Simulation Method 5.4 Turbulence and Transition Model 5.5 Engineering Prediction Method Based on Transition Criteria References 6 Embedded Aerosphere Sensing System 6.1 An Overview 6.1.1 Traditional Atmospheric Data System 6.1.2 Development Trend of Embedded Atmospheric Data Sensing System 6.1.3 Analysis on Advantages and Disadvantages of Two Atmospheric Data Sensing Systems 6.2 Survey of the Critical Technologies 6.2.1 Overall Design 6.2.2 Algorithm Design 6.2.3 Pressure Measurement Module Design 6.2.4 Solving Module Design 6.2.5 Wind Tunnel Test Research 6.2.6 Test and Research of Ground Environment 6.2.7 Flight Test Research 6.2.8 Research on FADS and INS/GPS Data Fusion 6.3 Summary References 7 Advanced Wind Tunnel Measurement Technology 7.1 Introduction 7.2 Phosphor Thermography 7.2.1 Development and Research Status of Phosphor Thermography Technology from Home and Abroad 7.2.2 Measuring Principle of Phosphor Thermography Technology 7.2.3 Measurement Methods and Key Technologies of Phosphor Thermography Technology 7.2.4 Analysis on Typical Wind Tunnel Test Cases of Phosphor Thermography Technology 7.2.5 Summary and Prospect of Phosphor Thermography Technology 7.3 Particle Image Velocimetry 7.3.1 Principle and Method of Particle Image Velocimetry 7.3.2 Particle Image Velocimetry System 7.3.3 Engineering Application Examples of Particle Image Velocimetry Technology 7.3.4 Summary and Prospect of Particle Image Velocimetry Technology References