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- W2850871037 abstract "The analytical solutions to conjugated problems of convective heat transfer in plane and cylindrical channels that are widely used in cooling systems of various electrotechnical and electrical power equipment are presented. A fundamental difference in thermal calculations between the proposed and the classical approach, where the heat transfer coefficient is used, lies in the direct determination of maximum temperature. The problem was solved through the method of variable separation. One of the most important results is that the same integro-differential equation with different eigenvalues has been obtained for the temperature in thermally thin walls of both flat and cylindrical cooling channels. The equation was solved using small parameter method. The dependence of temperature of the cooling channel walls from thermophysical properties and geometrical parameters of the heat-producing walls has been shown. The presented examples of calculations allow making a very important conclusion: there is a defining dependence of maximum and average temperatures of the heat-producing walls of cooling channels from the thermal conductivity of a solid wall. Selecting one of the models of the flow in the channel can serve as a two-way assessment of temperature in engineering design." @default.
- W2850871037 created "2018-07-19" @default.
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- W2850871037 date "2018-01-01" @default.
- W2850871037 modified "2023-09-25" @default.
- W2850871037 title "Associated Graetz-Nusselt Problems with Thermal Sources in Thermally Thin Channel Wa" @default.
- W2850871037 doi "https://doi.org/10.17213/0136-3360-2018-2-19-29" @default.
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