Analysis of flow field in open channels with a backward facing step
Bu tez size mi ait?
Bu kayıt toplu arşivden geldi. Sizinse profilinize bağlayın.
Özet (EN)
Computational examinations were performed on flow field in an open channel having a single backward facing step with a constant water depth of 1.5 m. The effects of the expansion ratio and the flow velocity on the reattachment length are investigated by employing two different expansion ratios of 1.5 and 2, and eight diverse flow velocities of 0.5, 1, 2, 3, 4, 5, 7.5 and 10 ms-1 in the computational fluid dynamic (CFD) simulations. Analyses were performed by using two equation turbulence closure models, namely, standard k-ε, RNG k-ε, realizable k-ε, Wilcox's k-ω and SST k-ω. Commercially available CFD software, ANSYS FLUENT, was used for simulations. The analyses have revealed that the reattachment length increases with increase in the expansion ratio, the flow velocity and the Reynolds number. The results acquired for both expansion rates and eight unlike flow velocities have shown insignificant differences from one turbulence closure model to the other. Keywords: Backward facing step, Reattachment length, expansion ratio, k-ε model, k- ω model, FLUENT.
Yazar
Bala Kawa M. Saleem
Bu Yayına Nasıl Atıf Yapılır
Bala Kawa M. Saleem (Master Thesis). Analysis of flow field in open channels with a backward facing step, 2014, Gaziantep University.
Anahtar Kelimeler
Lisans
Tüm Hakları Saklıdır
Bu eser belirtilen lisans koşulları altında paylaşılmaktadır.
Gaziantep University tezlerinden daha fazlası
- Conceptual design methodology for foldable shelters(2019)
- Pilton (pastinaca armena) katkılı beyaz peynirin duyusal ve kimyasal özelliklerinin incelenmesi(2019)
- Constructions of popular culture within viral advertising: Reception analysis of Eti Benim'O virals(2021)
- Optimum usage of mixed damping systems (rubber concerete or x diagonal dampers) on multystory building(2021)
- Transcription and evaluation of Idrak newspaper(2021)
- Identification of allergenic proteins from Tilia cordata(2021)