首页> 外文会议>ASME Fluids Engineering Division summer meeting >NUMERICAL STUDY ON THE CHARACTERISTICS OF NATURAL SUPERCAVITATION BY PLANAR SYMMETRIC CAVITATORS WITH STREAMLINED HEADFORMS
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NUMERICAL STUDY ON THE CHARACTERISTICS OF NATURAL SUPERCAVITATION BY PLANAR SYMMETRIC CAVITATORS WITH STREAMLINED HEADFORMS

机译:具有流线型头的平面对称空化器自然超空运动特征的数值研究

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A novel supercavitation-based device named Rotational Supercavitating Evaporator (RSCE) was recently designed for desalination. In order to improve the blade shape of rotational cavitator in RSCE for performance optimization and then design three-dimensional blades, two-dimensional numerical simulations are conducted on the supercavitating flows (with cavitation number ranging from 0.055 to 0.315) around six planar symmetric cavitators with different streamlined headforms utilizing k - ε - v~('2) - f turbulence model and Schnerr-Sauer cavitation model. We obtain the characteristics of natural supercavitation for each cavitator, including the shape and resistance characteristics and the mass transfer rate from liquid phase to vapor phase. The effects of the shape of the headform on these characteristics are analyzed. The results show that the supercavity sizes for most cavitators with streamlined headforms are smaller than that for wedge-shaped cavitator, except for the one with the profile of the forebody concaving to the inside of the cavitator. Cavitation initially occurs on the surface of the forebody for the cavitators with small curvature of the front end. Even though the pressure drag of the cavitator with streamlined headform is dramatically reduced compared with that of wedge-shaped cavitator, the pressure drag still accounts for most of the total drag. Both the drag and the mass transfer rate from liquid phase to vapor phase are in positive correlation with the supercavity size, indicating that the cavitators with the elliptic and hyperbolic cosine-type forebodies could be utilized for the optimal design of three-dimensional blade shape of RSCE.
机译:最近设计了一种新型的基于超空化的设备,称为旋转超空化蒸发器(RSCE),用于脱盐。为了在RSCE中改进旋转空化器的叶片形状以优化性能,然后设计三维叶片,对围绕六个平面对称空化器的超空化流(空化数范围从0.055到0.315)进行了二维数值模拟。使用k-ε-v〜('2)-f湍流模型和Schnerr-Sauer空化模型的不同流线型头模。我们获得了每个空化器的自然超空化特性,包括形状和阻力特性以及从液相到气相的传质速率。分析了头模形状对这些特性的影响。结果表明,大多数具有流线型头型的空化器的超腔尺寸要比楔形空化器的超腔尺寸小,除了前腔的轮廓向空化器内部凹陷的超腔尺寸。空化最初发生在前腔的表面上,空化器的前端曲率较小。尽管与楔形空化器相比,具有流线型头模的空化器的压力阻力显着降低,但压力阻力仍占总阻力的大部分。阻力和从液相到气相的传质速率均与超腔尺寸成正相关,表明具有椭圆形和双曲余弦型前体的空化子可用于三维叶片形状的优化设计。 RSCE。

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