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The turbulence integral length scale for cyclone wind is defined and validated with various measurements.
Moreover, the integral length scale was found to steadily grow with the downstream distance.
However, this fraction rapidly decreases when the integral length scale is used for the filter size.
The flame brush thickness was about 1/10th of the integral length scale.
The average size of flame bulges is found to increase with the turbulence integral length scale.
Each Gaussian filter has a different turbulent kinetic energy and integral length scale.
Using parameters such as the variance and integral length scale can easily mask major differences.
The impact of the periodic integral length scale (TLS) is, however, substantial.
Space time analysis was used to calculate integral length scale, coherence time and convection velocity.
The inflow turbulence intensity and integral length scales were systematically studied.
Experimental uncertainties associated with the determination of integral length scale are also presented.
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