By Ernest Hinton BSc, MSc, PhD, SDc, CEng, MIStructE, MBCS, Johann Sienz BEng, DipI-Ing (FH), MSc, PhD, Dr-Phil (GB), CEng, MIMechE, Cmath, MIMA, Mustafa Özakça BSc, MSc, PhD (auth.)
Shell-type constructions are available virtually far and wide. they seem in common kinds but in addition as man-made, load-bearing parts in assorted engineering platforms. Mankind has struggled to copy nature’s optimization of such buildings yet utilizing smooth computational instruments it truly is now attainable to examine, layout and optimise them systematically. research and Optimization of Prismatic and Axisymmetric Shell constructions positive aspects: entire insurance of the history thought of shell constructions; improvement and implementation of trustworthy, inventive and effective computational instruments for static and free-vibration research and structural optimization of variable-thickness shells and folded-plate buildings; built-in computer-aided curve and floor modelling instruments and automated mesh new release, structural research sensitivity research and mathematical programming equipment; well-documented, downloadable Fortran software program for those strategies utilizing finite point and finite strip simulations which are without problems tailored by way of the reader for the answer of functional difficulties or to be used inside a educating or learn atmosphere. Written by way of best specialists in finite aspect and finite strip tools, research and Optimization of Prismatic and Axisymmetric Shell buildings might be of significant curiosity to researchers in structural mechanics and in car, aerospace and civil engineering in addition to to designers from all fields utilizing shell buildings for his or her strength-per-unit-mass advantages.
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Extra resources for Analysis and Optimization of Prismatic and Axisymmetric Shell Structures: Theory, Practice and Software
Folded plates (prismatic) can be divided into "right" structures and "curved plan form" structures. 2(b). 3 Summary of Structures Considered The above classification covers most types of shell and folded plate occurring in practice. However, in this book, owing to certain restrictions in the formulations presented for SORs and prismatic shells, only certain specific classes of structures are considered . For SORs, consideration is restricted to structures that have supports, material disposition and loadings which are continuous and symmetric about the axis of revolution .
However, t his is not recomm ended for CAGD for a variety of reasons, such as non-uniqueness of f (x , y) for constant values of x or y. Expressing t he function in te rms of a parameter h can circumvent problems such as t his. The order of the spline is dependent on t he order of t he para metric function. Piecewise function: t he curve can be expressed using a piecewise functi on in t he parametric domain 0 :S h :S 1. One of t he most fundamental piecewise splines is t he paramet ric cub ic spline, which has only two data points at its ext remities.
2. In this classification the stressed skin surfaces are divided into shells and folded plates as before. 2(a)). SORs include domes and water tanks; prismatic shells include cylindrical shells, and free-form shells include all types of shell and incorporate those covered under the categories of SORs, prismatic shells and planar shells. Folded plates (prismatic) can be divided into "right" structures and "curved plan form" structures. 2(b). 3 Summary of Structures Considered The above classification covers most types of shell and folded plate occurring in practice.
Analysis and Optimization of Prismatic and Axisymmetric Shell Structures: Theory, Practice and Software by Ernest Hinton BSc, MSc, PhD, SDc, CEng, MIStructE, MBCS, Johann Sienz BEng, DipI-Ing (FH), MSc, PhD, Dr-Phil (GB), CEng, MIMechE, Cmath, MIMA, Mustafa Özakça BSc, MSc, PhD (auth.)