论文标题

八度空间中流体元素的扭矩和角动量

Torques and angular momenta of fluid elements in the octonion spaces

论文作者

Weng, Zi-Hua

论文摘要

该论文着重于应用八元,以探索外部扭矩对流体元件的角动量的影响,从而揭示了外部扭矩的互连和涡旋街道的涡流。 J. C. Maxwell是第一个引入四元组研究电磁场物理特性的人。当代学者利用四元和八元来研究电磁理论,引力理论,量子力学,特殊相对论,一般相对论和弯曲空间等。该论文采用了八元来描述电磁和引力理论,包括八元电场电位,场强,线性动量,角动量,扭矩和力等。如果八元力等于零,则能够推断出八个独立的方程,包括流体连续性方程,电流连续性方程和力平衡方程等。特别是,八个独立方程之一将发现流体元件的外部扭矩和角动量的相互关系。它的推论之一是,外部扭矩的方向,大小和频率必须影响流体元件的角动量的方向和卷曲,从而改变了流体中的Karman Vortex街道的频率。这意味着外部扭矩通过液体粘度与速度循环相互关联。外部扭矩能够对下洗流的方向产生影响,从而改善了流体产生的升力和阻力特性。

The paper focuses on applying the octonions to explore the influence of the external torque on the angular momentum of fluid elements, revealing the interconnection of the external torque and the vortices of vortex streets. J. C. Maxwell was the first to introduce the quaternions to study the physical properties of electromagnetic fields. The contemporary scholars utilize the quaternions and octonions to investigate the electromagnetic theory, gravitational theory, quantum mechanics, special relativity, general relativity and curved spaces and so forth. The paper adopts the octonions to describe the electromagnetic and gravitational theories, including the octonionic field potential, field strength, linear momentum, angular momentum, torque and force and so on. In case the octonion force is equal to zero, it is able to deduce eight independent equations, including the fluid continuity equation, current continuity equation, and force equilibrium equation and so forth. Especially, one of the eight independent equations will uncover the interrelation of the external torque and angular momentums of fluid elements. One of its inferences is that the direction, magnitude and frequency of the external torque must impact the direction and curl of the angular momentum of fluid elements, altering the frequencies of Karman vortex streets within the fluids. It means that the external torque is interrelated with the velocity circulation, by means of the liquid viscosity. The external torque is able to exert an influence on the direction of downwash flows, improving the lift and drag characteristics generated by the fluids.

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