Practical metamodel‑assisted multi‑objective design optimization for improved sustainability and buildability of wind turbine foundations
Artikel i vetenskaplig tidskrift, 2022

In this work, we study the potential of using kriging metamodelling to perform multi-objective structural design optimization using finite element analysis software and design standards while keeping the computational efforts low. A method is proposed, which includes sustainability and buildability objectives, and it is applied to a case study of reinforced concrete foundations for wind turbines based on data from a large Swedish wind farm project. Sensitivity analyses are conducted to investigate the influence of the penalty factor applied to unfeasible solutions and the size of the initial sample generated by Latin hypercube sampling. A multi-objective optimization is then performed to obtain the optimum designs for different weight combinations for the four objectives considered. Results show that the kriging-obtained designs from samples of 20 designs outperform the best designs in the samples of 1000 designs. The optimum designs obtained by the proposed method have a sustainability impact 8–15% lower than the designs developed by traditional methods.

Reinforced concrete structures

Multi-criteria decision making

Parametric design

Multidisciplinary design optimization

Kriging surrogate model

Structural design

Författare

Alexandre Mathern

NCC AB

Chalmers, Arkitektur och samhällsbyggnadsteknik, Konstruktionsteknik

Vicent Penadés‑Plà

Universitat Politecnica de Valencia (UPV)

Jesús Armesto Barros

NCC AB

Víctor Yepes

Universitat Politecnica de Valencia (UPV)

Structural and Multidisciplinary Optimization

1615-147X (ISSN) 1615-1488 (eISSN)

Vol. 65 2 46

Hållbarhetsstyrd byggprojektering

Trafikverket, 2017-11-01 -- 2020-05-29.

VINNOVA (2017-03312), 2017-11-01 -- 2020-02-29.

NCC AB, 2017-11-01 -- 2020-05-29.

Metoder och material för hållbara och kostnadseffektiva torn och fundament till vindkraftverk

Svensk Vindkraftstekniskt Centrum (SWPTC), 2019-09-01 -- 2022-12-31.

Projekteringsprocess för ökad hänsyn till produktions­metoder, klimat och miljöpåverkan i byggprocessen

Trafikverket (2018/68419), 2018-07-01 -- 2020-06-30.

Drivkrafter

Hållbar utveckling

Ämneskategorier

Teknisk mekanik

Samhällsbyggnadsteknik

Beräkningsmatematik

Byggproduktion

Infrastrukturteknik

Miljöanalys och bygginformationsteknik

Datavetenskap (datalogi)

Styrkeområden

Produktion

Energi

Infrastruktur

C3SE (Chalmers Centre for Computational Science and Engineering)

DOI

10.1007/s00158-021-03154-0

Mer information

Senast uppdaterat

2022-02-02