Телефон: 522-81-45

Geoinformatika 2018; 3(67) : 49-61

УДК 553.98:550.812 (477.5)

ACTUALISM, METEORITE MODELS OF THE SOLAR SYSTEM PLANETS AND ESTIMATION OF HYDROCARBON RESOURCES FROM THE POSITION OF GRAVITOLOGY

A.V. Khtema, V.M. Khtema

Limited Liability Company “Prom-energy Product”, 5, Dilova Str., Kyiv, 03150, Ukraine, e-mail:anna.khtema@gmail.com

Purpose. Taking into account the fact that between any material objects the forces of gravitation, which appear in the reciprocal impact  of one object on another, come from the list of these interconnected forces, based on the understanding of power from the positions of I. Newton’s mechanics, we have created the models using gravitational forces. The effect of these forces on processes, both at the molecular and Universe levels, is described by the simplest mathematical models. The aim of the study was to present some of these models.
Design /methodology /approach. Completed studies allowed to create models of variability of densities and masses of the solar system planets in time, in particular the Earth, and on this basis, to revise the estimation of its hydrocarbon resources, taking into account the phenomenon of natural growth of mass and volume of minerals. The problem of actualization of the influence of gravity on geological processes is considered as a problem of quantitative determination of a gravitational variable –  a dimensionless value that allows to adjust the influence of gravity forces on the material object of a unit volume located on the surface of the planet, in accordance with the current-variable time coordinate. It is shown that the process of variability of planetary densities in time consists of two phases: the initial phase, for which the density is significant, and the final phase, the characteristic feature of which is the decrease of density.
Findings. Using the hypothesis that the current volume of Mercury, Mars, and Venus corresponds to the volume of the Earth in its past, the future of which corresponds to the current volume of Neptune, Uranus, Saturn, and Jupiter, the cosmostratigraphic ranking method along with the significance of modern planetary densities gives the trend of their distribution in the cosmogonic period of time, which is not available for astronomical observations, and which is described by a quadratic function. The models of volume and density variability of the Parent Body which existed in the Universe before the Big Bang, were reconstructed, as well as the model of pulsating evolution of density and volume of space objects, which visually looks like a fireworks cascade where scale and intensity are within the limits of a locally explosive universe growth in time. The peculiarity of this firework is the appearance of a set of non-synchronous “initial events”, which confirms the hypothesis of the Big Bang as one of the stages of an infinite cycle of metamorphosis in the time-space of mass, energy, and information.
Practical value /implications. Based on the analysis of the the probable causes of the cognitive crisis in geology, which are taken as possible accelerators of the crisis, it is proposed to create a new integrative discipline – gravitology.

Keywords: actualism, gravity, gravitology, density, mass, model, time.

 

The full text of papers

 

References

  1. Visotskyi V.Y., Dmytryevskyi A.N. Myrovie resursi nefty y haza y ykh osvoenye. URL: http://fhmas.chem.msu.ru/rus/ jvho/2008-6/18.pdf (Accessed 03 May 2018) [in Russian].
  2. Halchynskyi A. Informatsiina revoliutsiia i novyi vytok nooperetvoren. Dzerkalo tyzhnia. N 39 (335 p.). P. 6. (in Ukrainian).
  3. Davnia ukrainska literatura: Khrestomatiia; uporiad. M.M. Sulyma. Kyiv: Osvita, 1998. 656 p. (in Ukrainian).
  4. Kryzys (v nauke). URL: goo.gl/NUL4mb (Accessed 03 May 2018) [in Russian].
  5. Kurovets M., Hunka N. Osnovy heolohii. Lviv, 1997. 694 p. (in Ukrainian).
  6. Peresmotren hlavnyi metod datyrovky v heolohyy. URL: goo.gl/SrWSHX (Accessed 03 May 2018) (in Russian).
  7. Poverkhnostnaia hravytatsyia. URL: goo.gl/ZAbzjB (Accessed 03 May 2018) (in Russian).
  8. Skvoren Y.M., Naumko I.M. Nadra Zemli — pryrodnyi fizyko-khimichnyi reaktor. Dopovidi NAN Ukrainy. N 9. P. 138—143 (in Ukrainian).
  9. Spysok obiektiv Soniachnoi systemy za rozmirom. URL: goo.gl/Atx17b (Accessed 03 May 2018) (in Ukrainian).
  10. Strakhov V.N. O roly chelovecheskoho faktora v razvytyy nauky. Geofizicheskiy Zhurnal. N 4. P. 3—16 (in Russian).
  11. Uchenye: chelovechestvo dolzhno bit hotovo — 2018 hod pryneset ohromnoe kolychestvo mehazemletriasenyi. URL: goo. gl/c3ydN4 (Accessed 03 May 2018) (in Russian).
  12. Kharakterystyky meteorytov. URL: http://galspace.spb.ru/index391.html (Accessed 03 May 2018) (in Russian).
  13. Khtema A.V., Khtema V.M. Geological-demographic model of the Earth’s human population process. Part 2. Geoinfor- matika. N 1. P. 80—89 (in Ukrainian).
  14. Khtema A.V., Khtema V.M. Finding vertical filtration barriers by reproducing the latent structure of the energy state of a natural solution. 2010. N 4. P. 52—63 (in Ukrainian).
  15. Khtema A.V., Khtema V.M. Time parameters of water-gas-bearing sedimentary rocks due to the results of the creation and application of datum geochronograph. Article 1. Geoinformatika, N 2. P. 24—37 (in Ukrainian).
  16. Khtema A.V., Khtema V.M. Time parameters of water-gas-bearing sedimentary rocks due to the results of the creation and application of datum geochronograph. Article 2. 2016. N 3. P. 5—13 (in Ukrainian).
  17. Shubyn S.V. Skorost nakoplenyia osadochnikh otlozhenyi po dannim paleontolohyy. URL: creatio.orthodoxy.ru/ articles/shubin_paleontolog.html (Accessed 03 May 2018) (in Russian).