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Dynamic Interactions in the Atmosphere

机译:大气中的动态相互作用

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Even today, with the great progress that has been made in the scientific, technological and computational fields, we are still stunned by the devastating effects brought about by atmospheric phenomena. This paper aims to propose new hypotheses in the field of dynamics to enhance our understanding of the behaviour of atmospheric disturbances caused by rotating winds. I believe that the criteria of classical dynamics that are applied to vortex systems in the atmosphere should be rigorously reviewed. I propose to establish new hypotheses in the field of dynamics, in order to better interpret rotation in nature. These hypotheses have been structured into a new theory that has been tested experimentally by both ourselves and third parties, with positive results. I propose to use the Theory of Dynamic Interactions (TDI) to interpret the behaviour of systems undergoing successive rotations around different axes—which we will refer to as non-coaxial rotations. I hold that this theory applies to air masses and groups of particles in suspension that are accelerated by rotations. Accordingly, it should be used to interpret the behaviour of tornadoes, cyclones and hurricanes. I believe that this proposal could enhance our understanding of these atmospheric phenomena and improve predictions about them.
机译:即使在今天,随着科学,技术和计算领域的巨大进步,我们仍然对大气现象带来的破坏性影响感到震惊。本文旨在提出动力学领域的新假设,以加深我们对旋转风引起的大气扰动行为的理解。我认为,应严格审查应用于大气涡旋系统的经典动力学标准。我建议在动力学领域建立新的假设,以便更好地解释自然界中的自转。这些假设被构造成一种新的理论,已经由我们自己和第三方进行了实验性检验,并取得了积极的结果。我建议使用动态相互作用理论(TDI)来解释系统围绕不同轴连续旋转的行为,我们将其称为非同轴旋转。我认为,该理论适用于空气质量和悬浮液中通过旋转加速的粒子组。因此,应将其用于解释龙卷风,旋风和飓风的行为。我认为,该提议可以增进我们对这些大气现象的理解并改善对它们的预测。

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