The Influence of the Interaction of Opposing Non-coaxial Round Jets on the Leakage Velocity Uniformity of the Resulting Air Flow
摘要
The manuscript delineates the outcomes of investigations concerning the uniformity of airflow velocity resulting from the interaction of opposing non-coaxial circular air jets. Within this study, the characteristics of air jets formed by the collision of opposing non-coaxial air streams are detailed. Notably, the manuscript delves into the determination of the coefficient of uniformity governing the exit velocity of the resultant air jet, alongside the derivation of empirical equations aimed at quantifying airflow velocity uniformity. The primary objective is to explore the uniformity of velocity within the resultant airflow, generated through the interaction of opposing non-coaxial circular air streams, and to construct a mathematical model elucidating the dynamics of round aerodynamic flows within a designated space. Graphical representations and empirical formulas, derived from experimental investigations, are presented within the manuscript. Velocity field analyses were conducted to assess the uniformity of airflow output resulting from the interaction of non-coaxial opposing circular air jets. The utilization of the effect stemming from the interaction of opposing non-coaxial circular air jets ensures a notable initial intensity of turbulence, a considerable attenuation of airflow velocity within the resultant flow, and a pronounced degree of uniformity in its exit velocity.