This paper discusses the design and development of the Moderate and Intense Low oxygen Dilution (MILD) combustion burner using Computational Fluid Dynamics (CFD) simulations. The CFD commercial package was used to simulate preliminary designs for the burner before the final design was sent to the workshop for fabrication. The burner is required to be a non-premixed and open burner. To capture and use the exhaust gas, the burner was enclosed within a large circular shaped wall with an opening at the top. An external EGR pipe was used to transport the exhaust gas which was mixed with the fresh oxidant. To control the EGR and exhaust flow, butterfly valves were installed at the top opening as a damper to close the exhaust gas flow at a cer...
In this paper, a new strategy for scaling burners based on "mild combustion" is evolved and adopted...
Combustion is still the most important process to generate energy. The improvement of combustion eff...
MILD combustion is a regime in which oxidation reactions occur without a deflagrative flame front. C...
This paper discusses the design and development of the Moderate and Intense Low oxygen Dilution (MIL...
This paper discusses the development of the combustion furnace for the Moderate and Intense Low oxyg...
This paper discusses the design and development of moderate and intense low oxygen dilution (MILD) c...
This paper discusses the design and development of a burner for MILD/Flameless Combustion processes....
This paper discusses the design and development of moderate and intense low oxygen dilution (MILD) c...
This paper discusses the development of the combustion furnace for the Moderate and Intense Low oxyg...
Climate change and greenhouse gases (GHG) have become one of the priorities for today’s intergover...
An industrial burner operating in the MILD combustion regime through internal recirculation of exhau...
Pollution regulation and demand for efficient energy have driven the combustion community to work on...
In a world increasingly concerned with fuel prices, sustainability and the environment, energy effic...
Pollution regulation and demand for efficient energy have driven the combustion community to work on...
This paper presents computational and experimental results on a new burner configuration with a mild...
In this paper, a new strategy for scaling burners based on "mild combustion" is evolved and adopted...
Combustion is still the most important process to generate energy. The improvement of combustion eff...
MILD combustion is a regime in which oxidation reactions occur without a deflagrative flame front. C...
This paper discusses the design and development of the Moderate and Intense Low oxygen Dilution (MIL...
This paper discusses the development of the combustion furnace for the Moderate and Intense Low oxyg...
This paper discusses the design and development of moderate and intense low oxygen dilution (MILD) c...
This paper discusses the design and development of a burner for MILD/Flameless Combustion processes....
This paper discusses the design and development of moderate and intense low oxygen dilution (MILD) c...
This paper discusses the development of the combustion furnace for the Moderate and Intense Low oxyg...
Climate change and greenhouse gases (GHG) have become one of the priorities for today’s intergover...
An industrial burner operating in the MILD combustion regime through internal recirculation of exhau...
Pollution regulation and demand for efficient energy have driven the combustion community to work on...
In a world increasingly concerned with fuel prices, sustainability and the environment, energy effic...
Pollution regulation and demand for efficient energy have driven the combustion community to work on...
This paper presents computational and experimental results on a new burner configuration with a mild...
In this paper, a new strategy for scaling burners based on "mild combustion" is evolved and adopted...
Combustion is still the most important process to generate energy. The improvement of combustion eff...
MILD combustion is a regime in which oxidation reactions occur without a deflagrative flame front. C...