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Başlık: Performance evaluation of multiple adaptive regression splines, teaching–learning based optimization and conventional regression techniques in predicting mechanical properties of impregnated wood
Yazarlar: Tiryaki, Sebahattin
Tan, Hüseyin
Bardak, Selahattin
Nacar, Sinan
Peker, Hüseyin
Uludağ Üniversitesi/Mühendislik Fakültesi/İnşaat Mühendisliği Bölümü.
0000-0003-0897-4742
Kankal, Murat
AAZ-6851-2020
24471611900
Anahtar kelimeler: Artificial neural-network
Boric-acid
Modulus
Boron
Elasticity
Rupture
Design
Parameters
Strength
Models
Algorithms
Forecasts
Impregnated wood
Mechanical properties
Methods
Pressure
Regression analysis
Forecasting
Mechanical properties
Regression analysis
Wood
Conventional regression analysis
Mechanical behavior
Mechanical behaviour
Model results
Prediction of mechanical properties
Regression function
Regression splines
Regression techniques
Splines
Forestry
Materials science
Yayın Tarihi: Tem-2019
Yayıncı: Springer
Atıf: Tiryaki, S. vd. (2019). "Performance evaluation of multiple adaptive regression splines, teaching–learning based optimization and conventional regression techniques in predicting mechanical properties of impregnated wood". 77(4), 645-659.
Özet: Understanding the mechanical behaviour of impregnated wood is crucial in making a preliminary decision on the usability of such woods for structural purposes. In this paper, by considering concentration (1, 3 and 5%), pressure (1, 1.5 and 2atm.), and time (30, 60, 90 and 120min), an experimental study was performed, and the mechanical behaviour of impregnated wood was determined as a result of the experimental process. Multiple adaptive regression splines (MARS), teaching-learning based optimization (TLBO) algorithms and conventional regression analysis (CRA) were applied to different regression functions by using experimentally obtained data. The functions were checked against each other to detect the best equation for each parameter and to assess performances of MARS, TLBO and CRA methods in the prediction of mechanical properties. The experimental results showed that higher values of mechanical properties were obtained when lower concentration, pressure and time were chosen. Overall, all the functions successfully predicted the mechanical properties. However, the MARS and TLBO provided better accuracy in predicting the mechanical properties. The modeling results indicated that the MARS and TLBO are promising new methods in predicting the mechanical properties of impregnated wood. With the use of these methods, the mechanical behavior of impregnated wood could be determined with high levels of accuracy. Thus, the proposed methods may facilitate a preliminary decision concerning the usability of such woods for areas where the mechanical properties are important. Finally, the employment of MARS and TLBO algorithms by practitioners in the wood industry is encouraged and recommended for future studies.
URI: https://doi.org/10.1007/s00107-019-01416-9
https://link.springer.com/article/10.1007/s00107-019-01416-9
http://hdl.handle.net/11452/34304
ISSN: 0018-3768
1436-736X
Koleksiyonlarda Görünür:Scopus
Web of Science

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