• English
    • Türkçe
  • Türkçe 
    • English
    • Türkçe
  • Giriş
Öğe Göster 
  •   E-arşiv Ana Sayfası
  • Akademik Arşiv / Institutional Repository
  • Mühendislik Fakültesi / Faculty of Engineering
  • Makine Mühendisliği Bölümü / Department of Mechanical Engineering
  • Öğe Göster
  •   E-arşiv Ana Sayfası
  • Akademik Arşiv / Institutional Repository
  • Mühendislik Fakültesi / Faculty of Engineering
  • Makine Mühendisliği Bölümü / Department of Mechanical Engineering
  • Öğe Göster
JavaScript is disabled for your browser. Some features of this site may not work without it.

A new guideway design for the HTS Maglev vehicles considering curve negotiation

Thumbnail
Göster/Aç
A new guideway design for the HTS Maglev vehicles considering curve negotiation.pdf (2.065Mb)
Tarih
2021
Yazar
Sivrioğlu, Selim
Yıldız, Ali Suat
Bedirbeyoğlu, Muhammet Islam
Üst veri
Tüm öğe kaydını göster
Özet
High-temperature superconducting (HTS) magnetic levitation (maglev) systems have been studied by various research groups regarding both experimental and modelling point of view. However, there exists a trade-off between levitation and guidance forces acting on the vehicle, especially in the case of high-speed curve negotiation. To overcome this trade-off, we proposed a multi-surface permanent magnet guideway (PMG) design, for the small-scale maglev vehicle, in which polarization of the permanent magnets (PM) changing with track segments. The HTS-PM interaction model was constructed by utilizing H-formulation implemented in COMSOL Multiphysics®. The hysteretic levitation and guiding force expressions used in the dynamic simulation have been obtained by a polynomial fit to force-displacement curves obtained by the finite element model built in COMSOL Multiphysics® environment. Also, the damping effect derived from free-fall dynamic tests is incorporated into the model to construct a more realistic simulation model. The effectiveness of the proposed track design has been validated through comparisons with Halbach-derived PMG. Finally, it can be thought that the proposed PMG design is a good candidate for the high-speed operation of a maglev system when the increased levitation and guiding stiffness values are considered.
Bağlantı
http://hdl.handle.net/20.500.12566/1184
Koleksiyonlar
  • Makine Mühendisliği Bölümü / Department of Mechanical Engineering

DSpace software copyright © 2002-2016  DuraSpace
İletişim | Geri Bildirim
Theme by 
Atmire NV
 

 




sherpa/romeo


Göz at

Tüm E-arşivBölümler & KoleksiyonlarTarihe GöreYazara GöreBaşlığa GöreKonuya GöreTüre GöreABU Yazarına GöreWOSScopusPubMedTRDizinErişimBu KoleksiyonTarihe GöreYazara GöreBaşlığa GöreKonuya GöreTüre GöreABU Yazarına GöreWOSScopusPubMedTRDizinErişim

Hesabım

GirişKayıt

DSpace software copyright © 2002-2016  DuraSpace
İletişim | Geri Bildirim
Theme by 
Atmire NV
 

 


|| Kütüphane || Antalya Bilim Üniversitesi || OAI-PMH ||

Antalya Bilim Üniversitesi Kütüphane ve Dokümantasyon Müdürlüğü, Antalya, Turkey
İçerikte herhangi bir hata görürseniz, lütfen bildiriniz: acikerisim@antalya.edu.tr

E-arşiv@AntalyaBilim:


DSpace 6.4-SNAPSHOT

Gemini Bilgi Teknolojileri A.Ş tarafından destek verilmektedir.