Chinese Quarterly Journal of Mathematics ›› 2026, Vol. 41 ›› Issue (3): 244-262.doi: 10.13371/j.cnki.chin.q.j.m.2026.03.002

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Dynamics of Two Competing Phytoplankton Species in a Nonlocal Reaction-Diffusion-Advection Mode

  

  1. School of Mathematics and Statistics, Donghua University, Shanghai 201620, China
  • Received:2025-12-17 Online:2026-09-30 Published:2026-09-18
  • About author:ZHENG Lu (2000-), female, native of Panzhihua, Sichuan, postgraduate student of Donghua University; PENG Ya-hong (1971-), female, native of Baoji, Shaanxi, professor of Donghua University, engages in theory and applications of partial differential equations.   
  • Supported by:
    Supported by Natural Science Foundation of Shanghai (Grant No.  23ZR1401700) and National Natural Science Foundation of China (Grant No. 12471157) .

Abstract:   In a vertical water column, the movements of obligately photosynthetic phytoplankton are not only affected by turbulence in the vertical direction, but also by light exposure. Considering the influence of light on phytoplankton growth, we propose a nonlocal reaction-diffusion-advection model for the competition between mixotrophic 
and obligately photosynthetic phytoplankton in this paper. We first prove the stability of semitrivial steady state of system by using eigenvalue theory. Then we prove the existence and boundedness of the solution of system and establish a priori estimates of the solution for the steady state system. Our research indicates successful invasion is determined by the interplay of physiological traits and movement strategies: species with extreme growth 
advantages can invade unconditionally, while those with intermediate competitiveness must adopt a vertical migration strategy that either contrasts with the dominant species or enables precise positioning at an optimal depth.

Key words:  Reaction-diffusion-advection system, Phytoplankton, Stability, Existence

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