The study is aimed at determining the cloud function at given coordinates, which is able to predict the degree of cloud cover with a sufficient degree of correlation. The definition of this parameter is necessary not only for meteorological, but also for energy purposes, increasing the efficiency of solar power plants. To obtain this function, a humidity function was derived at a given height, depending on the location in a spherical coordinate system. The energy function of solar intensity on the planet's surface and wind speed is also used. To solve the moisture function problem, the Laplace differential equation in a spherical coordinate system with specified boundary conditions is used.

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A Mathematical Model for Calculating Incoming Energy Based on Climate Change

  • Ibratjon Aliyev,
  • Sultonali Abdurakhmonov,
  • Nurmukhamad Juraev,
  • Odinakhon Rayimdjanova,
  • Usmonali Iskandarov

摘要

The study is aimed at determining the cloud function at given coordinates, which is able to predict the degree of cloud cover with a sufficient degree of correlation. The definition of this parameter is necessary not only for meteorological, but also for energy purposes, increasing the efficiency of solar power plants. To obtain this function, a humidity function was derived at a given height, depending on the location in a spherical coordinate system. The energy function of solar intensity on the planet's surface and wind speed is also used. To solve the moisture function problem, the Laplace differential equation in a spherical coordinate system with specified boundary conditions is used.