THE DEPENDENCE OF THE COEFFICIENT OF EFFICIENCY (CE) OF THE HEATING INSTALLATION “EFI” UPON THE INITIAL TEMPERATURE OF THE HEAT-CARRYING AGENT

  • Baatyr Akmatov Osh Technological University named after M.M. Adyshev
  • Nurzhamal Aldasheva Osh Technological University named after M.M. Adyshev
  • Baktybek Childebaev Osh Technological University named after M.M. Adyshev
  • Zhalil Kuluev Osh Technological University named after M.M. Adyshev
  • Malika Elchieva Osh Technological University named after M.M. Adyshev
Keywords: thermal energy, ionization, water heating, coefficient of efficiency

Abstract


The purpose of the study is to determine the increase in the efficiency of the electrophysical ionization device on a scientific basis, which produces thermal energy based on the regularity of the electrophysical ionization process. This research article discusses the dependence of the amount of thermal energy obtained in the device of electrophysical ionization on temperature. It is noted that if in the case of the traditional method of heating the substance used in the heating industry, the relative heat capacity of the substance is important, then when heated by an unconventional method, in other words, the temperature of the substance is important in the electrophysical ionization device. This indicator, determined on the basis of the experiment, emphasizes the need to apply depending on the correct choice of the physical parameters of the substance the electrophysical ionization method for the efficient production of thermal energy in the heating industry from the heat-carrying substance. Although the heating of water is mainly carried out using various well-known traditional and non-traditional methods, the natural law of heating water is unique. This law notes the dependence of the magnitude of changes in the internal energy of water in a certain volume of heated water and on the speed of movement of this mass. Considering from the point of view of the regularity of the above direction, it is noted that in order to compare the water heated by the traditional method, appropriate calculations have been made.

Published
2021/09/06
Section
Original Scientific Paper