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Numerical Study of the Three-dimensional Flow Field in Compact Spinning with Inspiratory Groove

机译:吸气槽紧密纺三维流场的数值研究

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Abstract In compact spinning with inspiratory groove, the computational fluid dynamic model, computed with parallel technologies and Fluent 6.3, was developed to simulate the flow field in the compact zone with 3D computational fluid dynamic technology. Flowing state, distributions of static pressure and velocity in the compact zone were characterized and analyzed. The results showed that the compact principle of compact spinning with inspiratory groove consists of compact by airflow and compact by the shape of the inspiratory groove, and the static pressure in the condensing zone is negative, as well as the velocity of airflow in the compact zone is not zero. The fluctuation of the static pressure and velocity near the bottom of the inspiratory groove is relatively bigger and the number of the fluctuation is equal to the number of the round holes in the compact zone.
机译:摘要在具有吸气槽的紧密纺中,利用并行技术和Fluent 6.3计算流体动力学模型,以3D计算流体动力学技术模拟紧密区域的流场。对致密区的流动状态,静压和速度分布进行了表征和分析。结果表明,带有吸气槽的紧密纺的紧致原理由气流致密和吸气槽的形状致密组成,冷凝区的静压为负,致密区的气流速度为负。不为零。吸气槽底部附近的静压力和速度的波动相对较大,并且该波动的数量等于致密区域中的圆孔的数量。

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