Multiphysics of Wind Turbines in Extreme Loading Conditions
Arash Soleiman Fallah, Hassan Abbas Khawaja, Mojtaba Moatamedi
Summary
Multiphysics of Wind Turbines in Extreme Loading Conditions addresses the extreme transient loading of wind turbines through a multiphysics modeling approach, notably by considering the dynamic effects and the nonlinearities of the physics involved in such situations. This book provides a comprehensive understanding of multiphysics numerical simulations on both onshore and offshore wind turbines under extreme loading conditions, including ship collisions, blast loading, and ice accretion. Each chapter explains the multiphysics approaches, converting algorithms into numerical codes to depict realistic dynamic responses. It explores the complexity of potential problems arising from extreme dynamic loads, discussing their effects on the structure and distinct types of dynamic responses. It offers valuable information for development in wind turbine technologies, making it beneficial for practicing engineers, designers, undergraduate and graduate students, as well as researchers in the field.
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Key Features
Defines best practice for unique scenarios that are not readily available in the wider literature
Includes multiphysics methods and specific applications within the demands of extreme loading conditions
Offers various multiphysics-based numerical simulations of onshore and offshore wind turbines in one place
Readership
Engineers, graduate students, and researchers involved with design and development of wind turbines.
Table of Contents
Multiphysics modeling of wind turbines
Key components of the horizontal axis wind turbine
Multiphysics of wind turbines in extreme loading conditions
Simulation of the dynamic response in a storm scenario
Impact analysis of wind turbines subjected to ship collision and blast loading
Ice shedding from wind turbines
On the investigation of the effect of tower and hub exclusion on the numerical results of a horizontal axis wind turbines
Numerical study of the sound pressure of a vertical-axis wind turbine using the boundary integral equation method
Multiphase modeling of atmospheric ice accretion on wind turbines