The Thermohydrogravidynamic Theory Concerning the First Forthcoming Subrange 2020 ÷ 2026 AD of the Increased Intensification of the Earth

S. Simonenko
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引用次数: 3

Abstract

The article presents the subsequent development of the established thermohydrogravidynamic theory (intended for deterministic prediction of the temporal intensifications of the global and regional seismotectonic, volcanic and climatic activity of the Earth) based on the author’s generalized differential formulation of the first law of thermodynamics extending the classical Gibbs’ formulation by taking into account (along with the classical infinitesimal change of heat Q and the classical infinitesimal change of the internal thermal energy dU) the established differential energy gravitational influence dG (due to the cosmic and terrestrial non-stationary gravitation) on the continuum region  along with the established differential increment dK of the macroscopic kinetic energy, the established differential increment d of the gravitational potential energy and the established generalized expression for the differential work Anp, done by the non-potential terrestrial stress forces (determined by the symmetric stress tensor T) acting on the boundary surface  of the individual finite continuum region  subjected to the non-stationary Newtonian gravitation. Taking into account the combined solar and planetary integral energy gravitational influence of the internal rigid core c,r of the Earth 3 during the considered range (2004 ÷ 2026) AD, the author presents (on May 30, 2018) the foundation (based on the established and confirmed global prediction thermohydrogravidynamic principles determining the strongest temporal intensifications of the global and regional seismotectonic, volcanic and climatic activity of the Earth) of the established first forthcoming subrange (2020 ÷ 2026) AD of the increased intensification of the global seismotectonic, volcanic, climatic and magnetic activity of the Earth related with the maximal (near t*(c,r, 2021)=2021.1 AD)) and the minimal (near t*(c,r, 2021)=2021.65 AD)) combined cosmic (planetary and solar) integral energy gravitational influences on the internal rigid core of the Earth.
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地球增强期2020 ~ 2026年第一个区间的热流体重力场理论
本文介绍了已建立的热流体重力理论(用于确定预测全球和区域地震构造的时间增强)的后续发展。基于作者的热力学第一定律的广义微分公式,扩展经典吉布斯公式,考虑(以及经典的热量的无限小变化Q和经典的内部热能的无限小变化dU)已建立的微分能量引力影响dG(由于宇宙和地球的非平稳引力)在连续体区域以及建立了宏观动能的微分增量dK,重力势能的微分增量d,以及在非稳态牛顿引力作用下作用于单个有限连续区域的边界面上的非势地应力(由对称应力张量T决定)所做的微分功Anp,的广义表达式。考虑到(2004年~ 2026年)AD内地球内部刚核c,r对太阳和行星积分能量引力的联合影响(3),作者(于2018年5月30日)提出了(基于已建立和确认的全球预测热流体重力原理,确定全球和区域地震构造最强时间强度的基础。地球的地震、构造、火山、气候和磁活动的增强与最大(t*附近(c,r, 2021)=2021.1 AD)和最小(t*附近(c,r, 2021)=2021.65 AD))结合宇宙(行星和太阳)积分能量引力对地球内部刚性核的影响有关。
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