Ice Crushing Pressure on Non-planar Surface

Ice Crushing Pressure on Non-planar Surface PDF Author: Hyunwook Kim
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
The objective of this study is to investigate ice-structure interaction and develop a numerical model to predict the changes of ice loads and pressure during ice-structure interaction on non-planar surfaces. It is important to understand the sequential ice pressure and load development during ice-structure interaction. This is particularly true for non-planar surfaces as most ships and many offshore structures are composed of near-flat panels that may be dented as part of in-service loading leading to panels that are concave. An important question is whether these concave surfaces act as load-increasers for subsequent ice interaction. Most laboratory and field trial tests have been performed based on the assumption that the structural shape is flat. Therefore, little information is available for cases where the structure is concave due to plastic deformation, or specific areas with intentional structural concave shapes. In support of this objective, a series of laboratory-scale ice crushing tests were performed. Force, time and displacement data were measured. It was observed that ice crushing on concave shape indenters induced higher ice loads and pressure magnitudes compared to flat indenters. As part of the experimental program, techniques to use pressure measurement film were adopted to obtain ice-structure contact location, actual contact area, and changes of magnitude of pressure within the contact region. Following the experimental program a numerical model of ice crushing for concave surfaces was developed. In order to achieve valid numerical simulation results, a crushable foam model was modified by adding failure criteria. This followed the effect of indenter shape, level of confinement, test speed and cone angle to be evaluated in the numerical model and compared with the experimental results. The numerical model is shown to be valid for the flat indenter cases and the wedge and conical-shaped indenter cases. The findings from this study show that the shape of the indenting surfaces does influence ice forces and pressure and that generally, concave indentation surfaces lead to increases in pressure and force arising from ice crushing. These effects can be qualified globally and locally using the pressure measurement film, and the effects can be modeled numerically. This work demonstrates that the assumption of ice loads associated with flat or convex shapes may lead to under design for concave shapes or may lead to structural overload in cases where structures previously that have been indented.

Ice Crushing Pressure on Non-planar Surface

Ice Crushing Pressure on Non-planar Surface PDF Author: Hyunwook Kim
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description
The objective of this study is to investigate ice-structure interaction and develop a numerical model to predict the changes of ice loads and pressure during ice-structure interaction on non-planar surfaces. It is important to understand the sequential ice pressure and load development during ice-structure interaction. This is particularly true for non-planar surfaces as most ships and many offshore structures are composed of near-flat panels that may be dented as part of in-service loading leading to panels that are concave. An important question is whether these concave surfaces act as load-increasers for subsequent ice interaction. Most laboratory and field trial tests have been performed based on the assumption that the structural shape is flat. Therefore, little information is available for cases where the structure is concave due to plastic deformation, or specific areas with intentional structural concave shapes. In support of this objective, a series of laboratory-scale ice crushing tests were performed. Force, time and displacement data were measured. It was observed that ice crushing on concave shape indenters induced higher ice loads and pressure magnitudes compared to flat indenters. As part of the experimental program, techniques to use pressure measurement film were adopted to obtain ice-structure contact location, actual contact area, and changes of magnitude of pressure within the contact region. Following the experimental program a numerical model of ice crushing for concave surfaces was developed. In order to achieve valid numerical simulation results, a crushable foam model was modified by adding failure criteria. This followed the effect of indenter shape, level of confinement, test speed and cone angle to be evaluated in the numerical model and compared with the experimental results. The numerical model is shown to be valid for the flat indenter cases and the wedge and conical-shaped indenter cases. The findings from this study show that the shape of the indenting surfaces does influence ice forces and pressure and that generally, concave indentation surfaces lead to increases in pressure and force arising from ice crushing. These effects can be qualified globally and locally using the pressure measurement film, and the effects can be modeled numerically. This work demonstrates that the assumption of ice loads associated with flat or convex shapes may lead to under design for concave shapes or may lead to structural overload in cases where structures previously that have been indented.

IUTAM Symposium on Physics and Mechanics of Sea Ice

IUTAM Symposium on Physics and Mechanics of Sea Ice PDF Author: Jukka Tuhkuri
Publisher: Springer Nature
ISBN: 3030804399
Category : Technology & Engineering
Languages : en
Pages : 333

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Book Description
This book presents the results of the IUTAM Symposium on Physics and Mechanics of Sea Ice which brought together researchers who have made significant contributions in the study of sea ice. The topics include: Fracture of ice, Thermodynamics of sea ice ridges, Global and local ice loads on ships and marine structures, Computational ice engineering and ice mechanics; and Physical and engineering problems related to ice and waves.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 558

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The American Journal of Science

The American Journal of Science PDF Author:
Publisher:
ISBN:
Category : Earth sciences
Languages : en
Pages : 726

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"Engineers"

Author:
Publisher:
ISBN:
Category : Engineering
Languages : en
Pages : 1474

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Hydraulics in Civil and Environmental Engineering, Fifth Edition

Hydraulics in Civil and Environmental Engineering, Fifth Edition PDF Author: Andrew Chadwick
Publisher: CRC Press
ISBN: 1138000590
Category : Technology & Engineering
Languages : en
Pages : 356

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Book Description
Now in its fifth edition, Hydraulics in Civil and Environmental Engineering combines thorough coverage of the basic principles of civil engineering hydraulics with wide-ranging treatment of practical, real-world applications. This classic text is carefully structured into two parts to address principles before moving on to more advanced topics. The first part focuses on fundamentals, including hydrostatics, hydrodynamics, pipe and open channel flow, wave theory, physical modeling, hydrology, and sediment transport. The second part illustrates the engineering applications of these fundamental principles to pipeline system design; hydraulic structures; and river, canal, and coastal engineering—including up-to-date environmental implications. A chapter on computational hydraulics demonstrates the application of computational simulation techniques to modern design in a variety of contexts. What’s New in This Edition Substantive revisions of the chapters on hydraulic machines, flood hydrology, and computational modeling New material added to the chapters on hydrostatics, principles of fluid flow, behavior of real fluids, open channel flow, pressure surge in pipelines, wave theory, sediment transport, river engineering, and coastal engineering The latest recommendations on climate change predictions, impacts, and adaptation measures Updated references Hydraulics in Civil and Environmental Engineering, Fifth Edition is an essential resource for students and practitioners of civil, environmental, and public health engineering and associated disciplines. It is comprehensive, fully illustrated, and contains many worked examples. Spreadsheets and useful links to other web pages are available on an accompanying website, and a solutions manual is available to lecturers.

Ice-Structure Interaction

Ice-Structure Interaction PDF Author: Stephen J. Jones
Publisher: Springer Science & Business Media
ISBN: 3642841007
Category : Technology & Engineering
Languages : en
Pages : 724

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Book Description
IUTAM-IAHR Symposium on Ice-Structure Interaction Professor Bez Tabarrok, Chairman of the Canadian National Committee (CNC) of the International Union of Theoretical and Applied Mechanics (IUTAM) invited Professor Derek Muggeridge to organize a symposium on ice structure interaction. Dr. Muggeridge readily agreed and prepared a proposal that was endorsed by the CNC and presented to the General Assembly Meeting of IUTAM for their consideration. This Assembly gave its approval and provided the local organizing committee with the names of individuals who were willing to serve on the Scientific Committee. Dr. Muggeridge became chairman of this committee and Dr. Ian Jordaan became co-chairman of this committee as well as chairman of the local organizing committee. The symposium followed the very successful previous meeting, chaired by Professor P. Tryde in Copenhagen, by ten years. Both symposia uti lized Springer-Verlag to publish their proceedings. The Faculty of En gineering and Applied Science at Memorial University of Newfoundland were particul{lXly pleased to host this prestigious symposium as it marked the twentieth anniversary of its Ocean Engineering Research Centre.

Geology: Chemical, Physical, and Stratigraphical

Geology: Chemical, Physical, and Stratigraphical PDF Author: Joseph Prestwich
Publisher:
ISBN:
Category : Geology
Languages : en
Pages : 522

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Geology

Geology PDF Author: Joseph Prestwich
Publisher:
ISBN:
Category :
Languages : en
Pages : 524

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Scientific American

Scientific American PDF Author:
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 430

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