Content deleted Content added
Citation bot (talk | contribs) m Alter: url. Removed parameters. You can use this bot yourself. Report bugs here. | User-activated. |
DividedFrame (talk | contribs) m →top: Style |
||
(30 intermediate revisions by 19 users not shown) | |||
Line 1:
'''Design optimization''' is an engineering design
<ref name=" <ref name="pyp2017">{{Cite book|url=http://principlesofoptimaldesign.org/|title=Principles of Optimal Design: Modeling and Computation|last1=Papalambros|first1=Panos Y.|last2=Wilde|first2=Douglass J.|date=2017-01-31|publisher=Cambridge University Press|isbn=9781316867457|language=en}}</ref>
# [[Variable (mathematics)|Variables]]: Describe the design alternatives
Line 8 ⟶ 10:
== Design optimization problem ==
{{Main|Optimization problem}}
The formal mathematical ([[Canonical form|standard form]]) statement of the design optimization problem is <ref>{{Cite book|url=https://web.stanford.edu/~boyd/cvxbook/bv_cvxbook.pdf|title=Convex Optimization|
<math>\begin{align}
Line 65 ⟶ 67:
A detailed and rigorous description of the stages and practical applications with examples can be found in the book [http://www.cambridge.org/gh/academic/subjects/engineering/control-systems-and-optimization/principles-optimal-design-modeling-and-computation-3rd-edition?format=HB&isbn=9781107132672#C3r6r6aLRe2bUoef.97 Principles of Optimal Design].
Practical design optimization problems are typically solved numerically and many [[:Category:Mathematical optimization software|optimization software]] exist in academic and commercial forms.<ref>{{Cite book|url=https://books.google.com/books?id=wy5hBwAAQBAJ&
One modern application of design optimization is structural design optimization (SDO) is in building and construction sector. SDO emphasizes automating and optimizing structural designs and dimensions to satisfy a variety of performance objectives. These advancements aim to optimize the configuration and dimensions of structures to optimize augmenting strength, minimize material usage, reduce costs, enhance energy efficiency, improve sustainability, and optimize several other performance criteria. Concurrently, structural design automation endeavors to streamline the design process, mitigate human errors, and enhance productivity through computer-based tools and optimization algorithms. Prominent practices and technologies in this ___domain include the parametric design, generative design, building information modelling (BIM) technology, machine learning (ML), and artificial intelligence (AI), as well as integrating finite element analysis (FEA) with simulation tools.<ref>Towards BIM-Based Sustainable Structural Design Optimization: A Systematic Review and Industry Perspective. Sustainability 2023, 15, 15117. https://doi.org/10.3390/su152015117</ref>
== Journals ==
Line 72 ⟶ 76:
* [http://mechanicaldesign.asmedigitalcollection.asme.org/journal.aspx Journal of Mechanical Design]
* [http://mechanicaldesign.asmedigitalcollection.asme.org/issue.aspx?journalid=126&issueid=28068 Journal of Mechanisms, Transmissions, and Automation in Design]
* [https://www.cambridge.org/core/journals/design-science Design Science]
* [https://www.tandfonline.com/toc/geno20/current Engineering Optimization]
Line 105 ⟶ 108:
* ''Foundations of structural optimization : a unified approach''. Morris, A. J. Chichester [West Sussex]: Wiley. 1982. {{ISBN|0471102008}}. [[OCLC]] 8031383.
* N., Siddall, James (1982). ''Optimal engineering design : principles and applications''. New York: M. Dekker. {{ISBN|0824716337}}. [[OCLC]] 8389250.
* 1944-, Ravindran, A., (2006). ''Engineering optimization : methods and applications''. Reklaitis, G. V., 1942-, Ragsdell, K. M. (2nd
* N.,, Vanderplaats, Garret (1984). ''Numerical optimization techniques for engineering design : with applications''. New York: McGraw-Hill. {{ISBN|0070669643}}. [[OCLC]] 9785595.
* T., Haftka, Raphael (1990). ''Elements of Structural Optimization''. Gürdal, Zafer., Kamat, Manohar P. (Second rev. edition ed.). Dordrecht: Springer Netherlands. {{ISBN|9789401578622}}. [[OCLC]] 851381183.
* S., Arora, Jasbir (2011). ''Introduction to optimum design'' (3rd
* S.,, Janna, William. ''Design of fluid thermal systems'' (SI edition ; fourth edition ed.). Stamford, Connecticut. {{ISBN|9781285859651}}. [[OCLC]] 881509017.
* ''Structural optimization : status and promise''. Kamat, Manohar P. Washington, DC: American Institute of Aeronautics and Astronautics. 1993. {{ISBN|156347056X}}. [[OCLC]] 27918651.
* ''Mathematical programming for industrial engineers''. Avriel, M., Golany, B. New York: Marcel Dekker. 1996. {{ISBN|0824796209}}. [[OCLC]] 34474279.
* Hans., Eschenauer, (1997). ''Applied structural mechanics : fundamentals of elasticity, load-bearing structures, structural optimization : including exercises''. Olhoff, Niels., Schnell, W. Berlin: Springer. {{ISBN|3540612327}}. [[OCLC]] 35184040.
* 1956-, Belegundu, Ashok D., (2011). ''Optimization concepts and applications in engineering''. Chandrupatla, Tirupathi R., 1944- (2nd
* Okechi., Onwubiko, Chinyere (2000). ''Introduction to engineering design optimization''. Upper Saddle River, NJ: Prentice-Hall. {{ISBN|0201476738}}. [[OCLC]] 41368373.
* ''Optimization in action : proceedings of the Conference on Optimization in Action held at the University of Bristol in January 1975''. Dixon, L. C. W. (Laurence Charles Ward), 1935-, Institute of Mathematics and Its Applications. London: Academic Press. 1976. {{ISBN|0122185501}}. [[OCLC]] 2715969.
* P., Williams, H. (2013). ''Model building in mathematical programming'' (5th
* ''Integrated design of multiscale, multifunctional materials and products''. McDowell, David L., 1956-. Oxford: Butterworth-Heinemann. 2010. {{ISBN|9781856176620}}. [[OCLC]] 610001448.
* M.,, Dede, Ercan. ''Multiphysics simulation : electromechanical system applications and optimization''. Lee, Jaewook,, Nomura, Tsuyoshi,. London. {{ISBN|9781447156406}}. [[OCLC]] 881071474.
Line 122 ⟶ 125:
=== Structural Topology Optimization ===
{{refbegin}}
*{{cite
*{{cite
*{{cite
*{{cite book |last1=Bendsøe |first1=Martin P. |last2=Sigmund |first2=O. |title=Topology optimization : theory, methods, and applications |publisher=Springer |edition=2nd |date=2013 |isbn=9783662050866 |oclc=50448149 |url=https://books.google.com/books?id=ZCjsCAAAQBAJ&pg=PR1}}
*{{cite book |editor-last=Rozvany |editor-first=G.I.N. |editor-last2=Lewiński |editor-first2=T. |title=Topology optimization in structural and continuum mechanics |publisher=Springer |date=2014 |isbn=9783709116432 |oclc=859524179 |url=https://books.google.com/books?id=B8HHBAAAQBAJ&pg=PP1}}
{{refend}}
{{Design}}
▲* "Generating optimal topologies in structural design using a homogenization method". ''Computer Methods in Applied Mechanics and Engineering''. '''71''' (2): 197–224. 1988-11-01. [[Digital object identifier|doi]]:10.1016/0045-7825(88)90086-2. [[International Standard Serial Number|ISSN]] 0045-7825.
▲* Bendsøe, Martin P (1995). ''Optimization of structural topology, shape, and material''. Berlin; New York: Springer. {{ISBN|3540590579}}.
▲* Behrooz., Hassani, (1999). ''Homogenization and Structural Topology Optimization : Theory, Practice and Software''. Hinton, E. (Ernest). London: Springer London. {{ISBN|9781447108917}}. [[OCLC]] 853262659.
[[Category:Design]]
|