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Feb 14, 2021 · The basis of the work of a heat exchanger is that the hot fluid enters the heat exchanger at temperature T 1 and its heat capacity is C hot. Also, the cold fluid with the heat capacity of C cold enters temperature t 1 ; in the meantime, the hot fluid loses its heat, and its temperature drops to T 2 .
Energy Saver Optimize Heat Exchangers Chemical ProcessingApr 14, 2011 · 4. Adding more heat exchanger surface. Installing more plates in plate-type heat exchangers and replacing an existing ordinary tube bundle with a high-flux one in shell-and-tube exchangers may help in some cases. (For more on shell-and-tube exchangers, see "Succeed with Condensate Control," and "Eliminate Exchanger Tubing Troubles"). 5.
Heat Exchangers IPIECAHeat Exchangers are available in many types of construction, each with its advantages and limitations. The main heat exchanger types are:Shell & Tube The most common heat exchanger design type consists of a parallel arrangement of tubes in a shell [Figure 1]. One fluid flows through the tubes and the other fluid flows through the shell over the tubes.
Heat Exchangerswith being the overall heat transfer coefficient, the heat transfer area, and is the log-mean temperature difference. Equation (13)(13) is used when simple counter or co-current flows exist. If the flow pattern is more complex (such as the case with most shell and tube heat exchangers), then a correction factor ( ) term is used and the
Section 5.4 Shell and Tube Heat Exchanger CorrectedExample 5.2 Miniature Shell-and-Tube Heat Exchanger A miniature shell-and-tube heat exchanger is designed to cool engine oil in an engine with the engine coolant (50% ethylene glycol). The engine oil at a flow rate of 0.23 kg/s enters the exchanger at 120°C and leaves at 115°C. The 50% ethylene glycol at a rate of 0.47 kg/s enters at 90°C.
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