Physics of Gas-Liquid Flows /

Presenting tools for understanding the behaviour of gas-liquid flows based on the ways large scale behaviour relates to small scale interactions, this text is ideal for engineers seeking to enhance the safety and efficiency of natural gas pipelines, water-cooled nuclear reactors, absorbers, distilla...

Full description

Bibliographic Details
Main Author: Hanratty, Thomas J., (Author)
Format: eBook
Language:English
Published: Cambridge : Cambridge University Press, 2013.
Subjects:
Online Access:View fulltext via EzAccess
Description
Summary:Presenting tools for understanding the behaviour of gas-liquid flows based on the ways large scale behaviour relates to small scale interactions, this text is ideal for engineers seeking to enhance the safety and efficiency of natural gas pipelines, water-cooled nuclear reactors, absorbers, distillation columns and gas lift pumps. The review of advanced concepts in fluid mechanics enables both graduate students and practising engineers to tackle the scientific literature and engage in advanced research. It focuses on gas-liquid flow in pipes as a simple system with meaningful experimental data. This unified theory develops design equations for predicting drop size, frictional pressure losses and slug frequency, which can be used to determine flow regimes, the effects of pipe diameter, liquid viscosity and gas density. It describes the effect of wavy boundaries and temporal oscillations on turbulent flows, and explains transition between phases, which is key to understanding the behaviour of gas-liquid flows.
Item Description:Title from publisher's bibliographic system (viewed on 13 Apr 2016).
Physical Description:1 online resource (354 pages) : digital, PDF file(s).
ISBN:9781139649421 (ebook)