Javascript must be enabled to continue!
Radiation Model of Horizontal Jet Flame Governed by Buoyancy and Momentum
View through CrossRef
AbstractBuoyancy causes a horizontal jet flame to bend upward when it loses sufficient initial momentum. Therefore, the variation in flame trajectory must be considered to accurately predict the thermal radiant flux of a horizontal jet flame governed by buoyancy and momentum. We introduce the flame trajectory equation into the linear source equation of radiation to establish a new model. The flame length ratio is calculated by flame trajectory length, horizontal projected flame length, and vertical projected flame height in the new model. This paper also presents a formula for flame lift-off distance and flame radiant fraction. We further list the geometric parameters of the horizontal-kite shape, tile-kite shape, and flame trajectory models. Comparing the experimental data and model predictions shows that the flame trajectory model is more accurate than the horizontal-kite and tile-kite models, especially when the Froude number is low. We also study the effects of flame lift-off distance and flame length ratio on predictive accuracy. The flame trajectory model computes quickly, and a normal laptop computer needs only 1.08 s to get a picture with 24,000 data points.
ASME International
Title: Radiation Model of Horizontal Jet Flame Governed by Buoyancy and Momentum
Description:
AbstractBuoyancy causes a horizontal jet flame to bend upward when it loses sufficient initial momentum.
Therefore, the variation in flame trajectory must be considered to accurately predict the thermal radiant flux of a horizontal jet flame governed by buoyancy and momentum.
We introduce the flame trajectory equation into the linear source equation of radiation to establish a new model.
The flame length ratio is calculated by flame trajectory length, horizontal projected flame length, and vertical projected flame height in the new model.
This paper also presents a formula for flame lift-off distance and flame radiant fraction.
We further list the geometric parameters of the horizontal-kite shape, tile-kite shape, and flame trajectory models.
Comparing the experimental data and model predictions shows that the flame trajectory model is more accurate than the horizontal-kite and tile-kite models, especially when the Froude number is low.
We also study the effects of flame lift-off distance and flame length ratio on predictive accuracy.
The flame trajectory model computes quickly, and a normal laptop computer needs only 1.
08 s to get a picture with 24,000 data points.
Related Results
Study on the image recognition of ammonia ignition process induced by methanol micro-jet
Study on the image recognition of ammonia ignition process induced by methanol micro-jet
<div class="section abstract"><div class="htmlview paragraph">Ammonia is regarded as a possible carbon-free energy source for engines, drawing more and more attention. ...
Cavitation in Submerged Water Jet at High Jet Pressure
Cavitation in Submerged Water Jet at High Jet Pressure
Recent industrial applications have unfolded a promising prospect for submerged water jet. Apart from widely acknowledged water jet properties, submerged water jet is characterized...
Numerical Study on Flow Characteristics of Liquid Jet in Airflows
Numerical Study on Flow Characteristics of Liquid Jet in Airflows
Abstract
The interaction between the fuel jet, the oil jet and the airflow is involved in the afterburner (or ramjet combustion chamber) and the lubricating oil syst...
Fully Synthetic Videos and the Random-Background-Pasting Method for Flame Segmentation
Fully Synthetic Videos and the Random-Background-Pasting Method for Flame Segmentation
Video-based flame detection (VFD) aims to recognize fire events by using image features. Flame segmentation is an essential task in VFD, providing suspected regions for feature ana...
Characteristics on drag reduction of bionic jet surface based on earthworm's back orifice jet
Characteristics on drag reduction of bionic jet surface based on earthworm's back orifice jet
In order to reduce the drag reduction of the fluid on the solid wall, based on the biology characteristics of earthworm, the earthworm's back orifice jet characteristic is analyzed...
Effect of Cross-Shaped Circular Jet Array on Impingement Heat Transfer
Effect of Cross-Shaped Circular Jet Array on Impingement Heat Transfer
The purpose of this study is to clarify heat transfer characteristics for the high cooling performance with multiple jet impingement. In the present study, the influence of the int...
A Flow Study of Pulsed Jet Cross-Flow Interaction by Micro Particle Image Velocimetry
A Flow Study of Pulsed Jet Cross-Flow Interaction by Micro Particle Image Velocimetry
Recent development of micro devices is remarkable as in the examples of Micro-TAS, Lab-on-a-chip or ultra micro gas turbine. In order to make the micro devices smaller and more eff...
Effects of Rotation on Jet Impingement Channel Heat Transfer
Effects of Rotation on Jet Impingement Channel Heat Transfer
The effects of the Coriolis force and centrifugal buoyancy is investigated in rotating internal serpentine coolant channels in turbine blades. For complex flow in rotating channels...


