Geri Dön

Model tests of geosynthetic reinforced slopes in a geotechnical centrifuge

Başlık çevirisi mevcut değil.

  1. Tez No: 508201
  2. Yazar: PELİN AKLIK
  3. Danışmanlar: Prof. Dr. WEI WU
  4. Tez Türü: Doktora
  5. Konular: İnşaat Mühendisliği, Civil Engineering
  6. Anahtar Kelimeler: Belirtilmemiş.
  7. Yıl: 2012
  8. Dil: İngilizce
  9. Üniversite: Unıversıtat Fur Bodenkultur Wıen (unıversıty Of Natural Resources And Lıfe Scıences, Vıenna)
  10. Enstitü: Yurtdışı Enstitü
  11. Ana Bilim Dalı: Belirtilmemiş.
  12. Bilim Dalı: Belirtilmemiş.
  13. Sayfa Sayısı: Belirtilmemiş.

Özet

Özet yok.

Özet (Çeviri)

Geosynthetic-reinforced slopes and walls became very popular in recent years because of their financial, technical, and ecological advantages. Centrifuge modelling is a powerful tool for physical modelling of reinforced slopes and offers the advantage to observe the failure mechanisms of the slopes. In order to replicate the gravity induced stresses of a prototype structure in a geometrically 1/N reduced model, it is necessary to test the model in a gravitational field N times larger than that of the prototype structure. In this dissertation, geotextile-reinforced slope models were tested in a geotechnical centrifuge to identify the possible failure mechanisms. Slope models were tested by varying slope inclination, tensile strengths of the geotextiles, and overlapping lengths. Photographs of the geotextile reinforced slope models in flight were taken with a digital camera and the soil deformations of geotextile reinforced slopes were evaluated with Particle Image Velocimetry (PIV). The experimental results showed that failure of the centrifuge models initiated at midheight of the slope, and occurred due to geotextile breakage instead of pullout. The location of the shear surface is independent of the tensile strength of the geotextile; it is dependent on the shear strength of the soil. It is logical to see that the required acceleration of the centrifuge at slope failure was decreased with increasing slope inclination. An important contribution to the stability of the slope models was provided by the overlapping of the geotextile layers. It has a secondary reinforcement effect when it was prolonged and passed through the shear surface. Moreover, the location of the shear surface observed with PIV analysis exactly matches the tears of the retrieved geotextiles measured carefully after the centrifuge testing. It is concluded that PIV is an efficient tool to instrument the slope failures in a geotechnical centrifuge.

Benzer Tezler

  1. Mekanik olarak stabilize edilmiş zemin duvarlarının statik yükler altındaki davranışlarının incelenmesi

    Analysis of mechanically stabilized earth (MSE) walls under static loadings

    EZGİ ERGÜL

    Yüksek Lisans

    Türkçe

    Türkçe

    2012

    İnşaat Mühendisliğiİstanbul Teknik Üniversitesi

    İnşaat Mühendisliği Ana Bilim Dalı

    YRD. DOÇ. DR. BERRAK TEYMÜR

  2. Polimerle ile stabilize edilmiş kumların kayma mukavemetinin laboratuvar deneyleri iel belirlenmesi

    Determination of shear strength of polymer reinforced sand by laboratory tests

    NEVAL UYSAL

    Yüksek Lisans

    Türkçe

    Türkçe

    2014

    İnşaat Mühendisliğiİstanbul Teknik Üniversitesi

    İnşaat Mühendisliği Ana Bilim Dalı

    DOÇ. DR. AYKUT ŞENOL

  3. Geogrid-donatılı kum zemine oturan temellerin taşıma kapasitesi

    Bearing copacity of footings on geogrid-reinforced sand

    TEMEL YETİMOĞLU

    Doktora

    Türkçe

    Türkçe

    1994

    İnşaat Mühendisliğiİstanbul Teknik Üniversitesi

    PROF.DR. AHMET SAĞLAMER

  4. Katı atık depolama tesisleri ve uygulamadan bir örnek

    Başlık çevirisi yok

    AREL KAN

    Yüksek Lisans

    Türkçe

    Türkçe

    1996

    İnşaat Mühendisliğiİstanbul Teknik Üniversitesi

    PROF.DR. AHMET SAĞLAMER

  5. Earthquake behavior of geosynthetic-reinforced retaining structures

    Geosentetik donatılı istinat duvarlarının deprem yükleri altındaki davranışı

    ÖZNUR SELEK

    Doktora

    İngilizce

    İngilizce

    2011

    İnşaat MühendisliğiBoğaziçi Üniversitesi

    İnşaat Mühendisliği Ana Bilim Dalı

    PROF. DR. EROL GÜLER