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Article
Affiliation(s)

Department of Physics, Jiangxi Normal University, Nanchang 330000, China

ABSTRACT

As El Niño phenomenon has caused severe disasters in many parts of the world, many people are straining their brains to find its causes and solutions. But due to their isolated and static perspective on observing the problem, their hypothesis about the causes of El Niño phenomenon is shallow, weak, and unbelievable. Therefore, the author of this article has found the true cause and governance method of El Niño phenomenon based on the galactic environment in which the Earth is located and the gravitational relationship between planets. Every time the southern hemisphere enters autumn, winter, or spring, as the Moon orbits around the Earth and approaches the South Pole cyclone, the Moon can tilt or rupture the cyclone, creating a huge cold current from south to north in the southern hemisphere. This cold current originates from the cold waters along the coast of Antarctica, moves northward along the west coast of South America, passes through the coasts of Chile, Peru, and Ecuador, and forms the Peruvian cold current. But if the southern hemisphere enters summer and encounters Jupiter’s opposition, due to Jupiter’s massive mass and proximity to Earth, it can attract and destroy Antarctic cyclones through strong gravity, thereby weakening the Antarctic cyclones that produce the Peruvian cold wave. In addition, Jupiter can also lift up many cloud layers covering the southern hemisphere through its strong gravity, causing stronger sunlight to shine on the equatorial sea surface, resulting in abnormal warming of the sea surface and the occurrence of El Niño phenomenon.

KEYWORDS

 Peruvian cold wave, El Niño, Earth, Moon, Jupiter’s opposition to the sun

Cite this paper

Cui-xiang Zhong.The True Causes of the El Niño Phenomenon and Countermeasures for Its Mitigation.Journal of Environmental Science and Engineering B 15 (2026) 139-143

References
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[2] Trenberth, K. E. 1997. “The definition of El Niño.” Bulletin of the American Meteorological Society 78 (12): 2771-7.
[3] Chavez, F. P., Strutton, P. G., Friederich, G. E., Feely, R., Feldman, G. C., Foley, D. G., and McPhaden, M. J. 1999. “Biological and Chemical Response of the Equatorial Pacific Ocean to the 1997-98 El Niño.” Science 286 (5447): 2126-31.
[4] Yang, S., Li, Z. N., Yu, J.-Y., Hu, X. M., Dong, W. J., and He, S. November 2018. “El Niño-Southern Oscillation and Its Impact in the Changing Climate.” National Science Review 5 (6): 840-57.
[5] Wei, L. 2005 “Analysis of Multi-factor Causes of El Niño Event.” Doctoral dissertation, Jilin University.

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