Heat Transfer and Solidification of Molten Iron in a Pipe
Miguel A. Barron, Cesar Lopez, Dulce Y. Medina
Advances in Research · pp. 987–1002 · Published 16 Aug 2014
10.9734/AIR/2014/11625Abstract
The effect of the pipe wall temperature on the heat transfer and the internal solidification phenomena during the pouring of pure molten iron in a pipe is studied in this work. A mathematical model consisting in the motion, mass balance and heat equations is proposed. The Reynolds Stress Model is employed to simulate turbulence. The mathematical model considering transient three-dimensional simulations is numerically solved using the Computational Fluid Dynamics technique. To simplify the mushy zone problem, pure iron considered. Numerical simulations show that a pipe wall temperature of 300 K promotes early solidification and blockage, and yields strong internal gradients of velocity and temperature. Besides, a pipe wall temperature of 1000 K prevents solidification and promotes a more homogeneous flow and temperatures contours of molten iron in the pipe.
Cited by 2
Shawn Somers-Neal, Alex Pegarkov, Edgar Matida · Journal of Nuclear Engineering and Radiation Science · 2021
Shawn Somers-Neal, Vien Nguyen, Edgar Matida · Journal of Nuclear Engineering and Radiation Science · 2019
Related research
- Material Selection and Fluid Flow Analysis of Parallel Flow Heat Exchanger — shares topic coverage
- Application of Double-Duct Idea to Replace Conventional Bell-mouth Intakes — shares topic coverage
- Hemodynamic Simulations to Identify Irregularities in Coronary Artery Models — shares topic coverage
- Computational Fluid Dynamics (CFD) Modelling of Mixture Formation in Gasoline Direct Injection (GDI) Engine — shares topic coverage
- Numerical Study of Heat Transfer from Elliptic Tube in a Fluidized Bed — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
2
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.