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This study aims to provide a comprehensive investigation of LLJ characteristics based on two-year wind profiler observations in Hong Kong, in which a wide variety of LLJ characteristics, including jet speed maximum, jet height and distribution of jet direction, frequency of occurrence, statistics of wind shear coefficients associated with LLJs are explored and discussed in detail.
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Interestingly, the fill level did not influence the jet height.
erosion and dilation have been used to accurately determine the jet height and the fountain height.
The upward jet height and the temperature distribution were predicted from the experiment.
The effects of Reynolds number on the jet height were found to be marginal.
The Reynolds (Re) number based on the jet height is varied in the range 0⩽Re⩽2×104.
Some key jetting characteristics, including the jet height, the distributions of particle content, gas and solid velocities were presented.
Maximum vacuum created by the jet pump at an optimum condition, i.e., at maximum jet pump efficiency, with respect to time was determined.
The experiments showed that the jet height decreased with increase in downward flow due to the opposing momentum of downward flow against the upward jet.
There seems to be a maximum step height for impinging jets that is approximately twice the drop height; this maximum may explain the upper limit of the steepness factor found in high-gradient step-pool streams.
In New York, the maximum economic height for office buildings is probably in the 50-story range.
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