Testing the physical reality of tidal bulges in the world's oceans

Fuente: arXiv
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Main Authors: Yang, Yongfeng, Yuan, Jiajia, Fan, Mingyuan
Format: Preprint
Published: 2026
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author Yang, Yongfeng
Yuan, Jiajia
Fan, Mingyuan
author_facet Yang, Yongfeng
Yuan, Jiajia
Fan, Mingyuan
contents Persistent alternation of high and low water in coastal and oceanic regions has attracted human attention for millennia. This movement of water is generally explained through the double water bulge model. Although this model has been widely adopted in the scientific literature on tides since the 18th century, the physical existence of water bulges on the Earth's surface has yet to be verified. Herein, we establish a lunar angle phase-dependent statistical analysis of tide patterns at 362,370 oceanic locations spotted by Jason-3 satellite of AVISO in 2021 to address this issue. We show that during lunar angle phases of 0 degree-45 degree and 135 degree-180 degree, which spatially correspond to the water bulging regions expected in the double water bulge model, the number of low tides consistently exceeds that of high tides. Conversely, during lunar angle phase of 45 degree-135 degree, which spatially correspond to the water-depressing region expected in the model, high tides predominantly outnumber low tides. These findings evidently contradict the physical existence of two water bulges in the world's oceans, suggesting that the scientific community should pay additional attention to alternative explanations for tides, such as gravitational forcing mechanism and oceanic basin oscillation-generated driving mechanism.
format Preprint
id arxiv_https___arxiv_org_abs_2605_30721
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Testing the physical reality of tidal bulges in the world's oceans
Yang, Yongfeng
Yuan, Jiajia
Fan, Mingyuan
Atmospheric and Oceanic Physics
Geophysics
Persistent alternation of high and low water in coastal and oceanic regions has attracted human attention for millennia. This movement of water is generally explained through the double water bulge model. Although this model has been widely adopted in the scientific literature on tides since the 18th century, the physical existence of water bulges on the Earth's surface has yet to be verified. Herein, we establish a lunar angle phase-dependent statistical analysis of tide patterns at 362,370 oceanic locations spotted by Jason-3 satellite of AVISO in 2021 to address this issue. We show that during lunar angle phases of 0 degree-45 degree and 135 degree-180 degree, which spatially correspond to the water bulging regions expected in the double water bulge model, the number of low tides consistently exceeds that of high tides. Conversely, during lunar angle phase of 45 degree-135 degree, which spatially correspond to the water-depressing region expected in the model, high tides predominantly outnumber low tides. These findings evidently contradict the physical existence of two water bulges in the world's oceans, suggesting that the scientific community should pay additional attention to alternative explanations for tides, such as gravitational forcing mechanism and oceanic basin oscillation-generated driving mechanism.
title Testing the physical reality of tidal bulges in the world's oceans
topic Atmospheric and Oceanic Physics
Geophysics
url https://arxiv.org/abs/2605.30721