Identifying the Spatial Structure of Black Hole and Tropical Cyclone Based on a Theoretical Analysis of Orthogonal Interaction

Weihong Qian
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引用次数: 4

Abstract

Black holes are recognized by Newton’s gravitational theory and Einstein’s general relativity, but there is still a lack of understanding the spatial structure of events, especially the nature of event horizon. In this paper, a theoretical analysis is used to compare the structures of tropical cyclone in the atmosphere and black hole in the astronomy so that five results are: 1) Both of them share the similar spatial structure, with tropical cyclone and black hole having the outflow cloud shield and the horizon sphere in the central part, respectively, while four spiral material bands exist in the rotating plane around them; 2) In theoretically, the energy density formed by the orthogonal interaction of the four spiral material bands is as times as the total kinetic energy of the head-on interaction; 3) This region of high energy density can lead to the conversion from mass to energy and the creation of new physical states of matter, which is a black hole event; 4) The outer horizon of a black hole is the outermost interface of events, or the orthogonal interaction interface of particles; 5) High-speed plasma jets extended at the poles of the black hole are directly associated with the shear stress of orthogonal interaction.
基于正交相互作用理论分析的黑洞与热带气旋空间结构识别
黑洞被牛顿的引力理论和爱因斯坦的广义相对论所承认,但对事件的空间结构,特别是事件视界的性质仍然缺乏认识。本文运用理论分析方法对大气中的热带气旋与天文学中的黑洞结构进行了比较,得出以下五点结论:1)热带气旋和黑洞具有相似的空间结构,热带气旋和黑洞的中心部分分别有流出云屏蔽层和地平线球,其周围的旋转平面存在四个螺旋状物质带;2)理论上,四个螺旋材料带正交相互作用形成的能量密度等于正面相互作用总动能的1倍;3)这个高能量密度的区域可以导致从质量到能量的转换,并产生新的物质物理状态,这是一个黑洞事件;4)黑洞的外视界是事件的最外层界面,即粒子的正交相互作用界面;5)高速等离子体喷流在黑洞两极扩展与正交相互作用的剪切应力直接相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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