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Discrete Model Of Heat Exchange Between The Tube And The Heat Carrier Passing Through It, Jurabek Saydullaevich Mamatov, Sardorbek Baxtiyor Ugli Dustnazarov
Discrete Model Of Heat Exchange Between The Tube And The Heat Carrier Passing Through It, Jurabek Saydullaevich Mamatov, Sardorbek Baxtiyor Ugli Dustnazarov
Bulletin of Gulistan State University
Convective heat transfer processes in heat exchangers, which are widely used in industry, are characterized by partial differential equations. Ensuring the adequacy of mathematical models leads to the complication of particular differential equations for products and boundary value problems for them. Acad. A. Azamov and candidate of mathematical sciences M.A. Bekimov proposed a perfect mathematical model of the heat transfer process in rotary regenerative air heaters (RRAH) at thermal power plants in the form of discrete dynamic systems, which made it possible to control the operation mode of RRAH, calculate smoke and air temperature. A mathematical model of the heat …
Discrete Model Of Heat Exchange Between The Tube And The Heat Carrier Passing Through It, Jurabek Saydullaevich Mamatov, Sardorbek Baxtiyor Ugli Dustnazarov
Discrete Model Of Heat Exchange Between The Tube And The Heat Carrier Passing Through It, Jurabek Saydullaevich Mamatov, Sardorbek Baxtiyor Ugli Dustnazarov
Bulletin of Gulistan State University
Convective heat transfer processes in heat exchangers, which are widely used in industry, are characterized by partial differential equations. Ensuring the adequacy of mathematical models leads to the complication of particular differential equations for products and boundary value problems for them. Acad. A. Azamov and candidate of mathematical sciences M.A. Bekimov proposed a perfect mathematical model of the heat transfer process in rotary regenerative air heaters (RRAH) at thermal power plants in the form of discrete dynamic systems, which made it possible to control the operation mode of RRAH, calculate smoke and air temperature. A mathematical model of the heat …