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- W2183637963 abstract "In partea I a acestei lucrari am investigat cum energia apei calde poate sa fie folosita pentru a incalzi si umidifica in acelasi timp in sezonul rece. Am stabilit ca variabila pentru optimizare latimea umidificatorului/incalzitor care sa ofere transferul de masa si caldura intre apa si aer cu producerea de entropie minima. Modelul matematic stabilit in partea I a prezentei serii este acum folosit pentru exemplificarea proceselor prin soluţii numerice. Pentru valori date ale temperaturii si umiditaţii relative a aerului la intrarea in umidificator precum si pentru valori dorite ale aerului la iesirea din umidificator, determinam temperatura apei necesare pentru umidificare (la intrarea si iesirea din dispozitiv) precum si cantitatea consumata. In the part I of this paper we investigated how the energy carried by warm water can be best used for heating the outdoor cold air while increasing its humidity in cold seasons. We set to check the optimal width of a humidifier/heater that will offer the transfer of mass and energy between air and water with the minimum of entropy production. The mathematical model established in the part I of the present series is now used for introducing numerical examples. For given values of the air temperature and relative humidity at the humidifier inlet, as well as for the desired air temperature and relative humidity at the device outlet, we determine the temperatures (inlet/outlet) of the water for humidification and the quantity to be consumed." @default.
- W2183637963 created "2016-06-24" @default.
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- W2183637963 date "2011-01-01" @default.
- W2183637963 modified "2023-09-27" @default.
- W2183637963 title "OPTIMAL CONTROL CONFIGURATION OF HEATING AND HUMIDIFICATION PROCESSES PART II" @default.
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