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Coolant Temperature in a CFSTR

Profiles of heat of generation and heat removal versus Temperature in a CFSTR [Pg.516]

The residence time of the coolant in the jacket is tc = Vc/uc. Given the three simultaneous equations and with known parameters, it is now possible to solve for CA, T, and Tc, respectively. [Pg.517]

The CFSTR is readily adaptable to both heating and cooling because the fluid can be stirred to promote heat transfer, ensuring better heat management with minimum heat transfer area. A combination of both jacket and internal coil may be necessary to provide the required heat exchange area. Chapter 7 reviews the heat transfer coefficient and the [Pg.517]


Consider a jacketed CFSTR with an external jacket as shown in Figure 6-27 in which the coolant fluid temperature Tc is not maintained constant. This situation requires solving an energy balance equation on the coolant along with the mass and energy balance... [Pg.515]


See other pages where Coolant Temperature in a CFSTR is mentioned: [Pg.515]    [Pg.515]    [Pg.515]    [Pg.515]   


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CFSTR

Coolant temperature

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