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Dynamics of Wheel-Soil Systems A Soil Stress and Deformation-Based Approach




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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 09/2012
Edizione: 1° edizione





Note Editore

Why is knowledge of soil stress and deformation state important for off-road locomotion? How do you measure soil stress and deformation under wheel loads? What are the actual values of stresses and deformation in soil or snow under a passing wheel? Providing answers to these questions and more, Dynamics of Wheel–Soil Systems: A Soil Stress and Deformation-Based Approach is a practical reference for anyone who works with experiment design and data analysis of soil stress and deformation measurements under vehicle load. Based on the author’s 15 years of experience in field experimentation on wheel–soil dynamics, the book describes methods and devices for soil stress and deformation measurements and presents numerical data from full-scale field experiments. These methods offer practical solutions to methodological problems that may arise during the design and preparation of field experiments. Provides technical information on measuring, modeling, and optimizing off-road vehicle traction—including a novel method for describing off-road traction Provides rare experimental data on soil stress and deformation under a variety of wheeled and tracked vehicles Supplies solutions for designing, building, and using soil or snow pressure transducers and sensors Compiles original experimental data on soil degradation due to agricultural machinery traffic and soil compaction Explains how to create dynamic models of wheel–soil systems based on experimental data A valuable reference on an important area of terramechanics, this book shows how to analyze and model wheel–soil interactions to create more effective designs for a range of vehicle types.




Sommario

Introduction to Wheel–Soil SystemsGround Vehicles and Their Running GearsMajor Research ProblemsReferencesMeasurement of Soil Stress and DeformationSoil Stress Measurements: IntroductionCharacterisation of Soil Stress TransducersStrain Gage Pressure Transducers for SoilsStress State Transducer (SST)Soil Deformation DeterminationConclusionsReferencesSoil Stress and Deformation State: Investigations in Monolith Soil SamplesIntroductionEffect of Static Load and Soil Stress and Deformation in Loamy LuvisolEffects Deformation Rate on Soil Stress and Deformation State in LoessReferencesStress State under Wheeled Vehicle LoadsIntroductionField Experiment PreparationAnalysis of Principal StressesEffect of Vehicle Loading and Reduced Inflation PressureEffects of Repeated RollingAnalysis of Octahedral StressesRelationships of Soil Stress and Drawbar PullFinal Discussion and Concluding RemarksReferencesStress State under Tracked Vehicle LoadsIntroductionExperimental MethodsAnalysis of Soil Stress State under Loading by Tracked VehiclesDetermination of Soil Stress–Strain RelationshipsEffects of Rubber Pads on Soil Stress and Tracked Vehicle TractionFinal ConclusionsReferencesWheel–Soil Dynamics for Aircraft Tyres on Unsurfaced AirfieldsIntroductionSoil Stress State under Loading of Landing AircraftRolling Resistance Coefficients for Aircraft Tyres on Unsurfaced AirfieldsEffect of Grassy Surface on Take-Off DistanceProposed Method for Airfield Surface Evaluation and ClassificationSummaryReferencesSnow Stress State under Ground Vehicle LoadsIntroductionSnow Stress Measurement MethodsDetermining Snow Stress under Loading of Grooming MachineDetermination of Winter Traction and Snow Stresses under Military Truck LoadingEffects of Snow Skis on Snow Stresses and Aircraft Ground PerformanceSummaryReferencesModelling of Wheel–Soil System Based on Soil Stress and Deformation State AnalysisIntroductionModelling Off-Road TractionModelling Soil Stress State by System Identification (SI)Modelling Dynamic Effects of Wheel–Soil SystemSummaryReferencesSummary Index




Autore

Jaroslaw Alexander Pytka is a research engineer and instructor of undergraduate and graduate students of automotive technology at the Lublin University of Technology, Poland. Dr. Pytka earned an MS in automotive technology from the Lublin University of Technology in 1992, and a Ph.D. in soil physics from the Institute of Agrophysics in Lublin. His major research interest is wheel–soil interaction analysis with a focus on experimental studies. Dr. Pytka has authored or coauthored more than 50 papers and is a reviewer for the Journal of Terramechanics.










Altre Informazioni

ISBN:

9781466515277

Condizione: Nuovo
Dimensioni: 9 x 6 in Ø 1.35 lb
Formato: Copertina rigida
Illustration Notes:174 b/w images, 38 tables and Approx. 122 equations
Pagine Arabe: 331


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