Understanding the complex phenomena in the BF hearth is essential to increasing furnace productivity and to extending furnace campaign. Numerical modeling provides a cost-effective tool to obtain such knowledge. We have developed several continuum-based mathematical/numerical models to simulate the flow, heat transfer and mass transfer in the lower part of BF and in the hearth. These models have generated an improved insight into the mechanisms for liquid drainage efficiency, lining erosion and wall protection in BF hearth under operational conditions. The current paper provides an overview of these studies, as well as dealing with three specific aspects: (a) Gas flow and pressure on the liquid surface, and its effect on the drainage charac...
The aim of the present thesis was to study the heat flows in the blast furnace hearth lining by expe...
The wear of a blast furnace hearth and the hearth inner profile are highly dependent on the liquid i...
In the process of making iron, the liquid level at the blast furnace hearth is one important effect ...
The erosion of hearth refractories is the main limitation for a long campaign blast furnace life. An...
The campaign life of a blast furnace is limited by the erosion of hearth refractories. Flow and temp...
The erosion of hearth refractories typically governs the asset life of a blast furnace. Since operat...
Distributions of liquid iron flow and refractory temperatures have significant influences on the bla...
Iron and slag are the products from blast furnace and normally drained out as a mixture via taphole....
The aim of this research is to numerically simulate iron flow and heat transfer in the hearth of a b...
This study has focused on determining the heat flows in a production blast furnace hearth. This part...
It is well understood that the erosion of the hearth refractories is by part a major limitation of t...
In this work, large-scale simulations of the blast furnace hearth are presented, conducted using a m...
The campaign life of a blast furnace is largely limited by the erosion state of its hearth section. ...
The wear of a blast furnace hearth and the hearth inner profile are highly dependent on the liquid i...
Among many ironmaking devices, the blast furnace still dominates over the past centuries. In this re...
The aim of the present thesis was to study the heat flows in the blast furnace hearth lining by expe...
The wear of a blast furnace hearth and the hearth inner profile are highly dependent on the liquid i...
In the process of making iron, the liquid level at the blast furnace hearth is one important effect ...
The erosion of hearth refractories is the main limitation for a long campaign blast furnace life. An...
The campaign life of a blast furnace is limited by the erosion of hearth refractories. Flow and temp...
The erosion of hearth refractories typically governs the asset life of a blast furnace. Since operat...
Distributions of liquid iron flow and refractory temperatures have significant influences on the bla...
Iron and slag are the products from blast furnace and normally drained out as a mixture via taphole....
The aim of this research is to numerically simulate iron flow and heat transfer in the hearth of a b...
This study has focused on determining the heat flows in a production blast furnace hearth. This part...
It is well understood that the erosion of the hearth refractories is by part a major limitation of t...
In this work, large-scale simulations of the blast furnace hearth are presented, conducted using a m...
The campaign life of a blast furnace is largely limited by the erosion state of its hearth section. ...
The wear of a blast furnace hearth and the hearth inner profile are highly dependent on the liquid i...
Among many ironmaking devices, the blast furnace still dominates over the past centuries. In this re...
The aim of the present thesis was to study the heat flows in the blast furnace hearth lining by expe...
The wear of a blast furnace hearth and the hearth inner profile are highly dependent on the liquid i...
In the process of making iron, the liquid level at the blast furnace hearth is one important effect ...