Plate heat exchangers consist of pressed, corrugated metal plates fitted between a thick, carbon steel frame. Each plate flow channel is sealed with a gasket, a weld, or an alternating combination of the two. It is not uncommon for plate and frame heat exchangers to have overall heat transfer coefficient that are 3-4 times those found in shell and tube heat exchangers.
A process stream requires C276 material to guard against corrosion. The stream needs to be cooled with cooling water before being sent to storage. The metallurgy makes the process stream an immediate candidate for the tubeside of a shell and tube heat exchanger. The cooling water is available at 80 °F and must be returned at a temperature no higher than 115 °F. The process engineer realizes that with the water flow being placed on the shellside, larger flowrates will enhance the heat transfer coefficient. The basis for the heat exchanger quotation was specified as follows:
Tubeside | Shellside | |
Flow rate (GPM) | 500 | 1800 |
Temperature In (°F) | 280 | 80 |
Temperature Out (°F) | 150 | 92 |
Allowable Pressure Drop (psig) | 15 | 15 |
The theory that applied to the shell and tube heat exchanger (increasing water flow will minimize heat transfer area), works in exactly the opposite direction for compact technologies. The larger water flow actually drives the cost of the unit upward. Rather than supplying a rigid specification to all heat exchanger manufacturers, the engineer should have explained his goal in regards to the process stream. Then he could have stated the following:
- These charts are valid for single pass units with 0.50 mm thick plates. The accuracy of the charts will not be compromised for most materials of construction.
- Wetted material thermal conductivity is taken as 8.67 Btu/(h ft °F) (value for SS)
- Heat transfer correlations are valid for single phase, liquid-liquid designs
- The following physical properties were used for the basis:
Hydrocarbon-based fluids Water-based fluids Thermal Conductivity (Btu/h ft °F) 0.06 0.33 Density (lb/ft³) 55 62 Heat Capacity (Btu/lb 0F) 0.85 0.85 - Degree of accuracy should be within ± 15% of the service value for the overall heat transfer coefficient, assuming a nominal 10% excess heat transfer area.
- For fluids with viscosities between 100 and 500 cP, used the 100 cP line of the graphs. For fluids in excess of 500 cP, consult with manufacturers.
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Delta Cooling Towers is a manufacturer of High Density Polyethylene (HDPE) cooling towers, air strippers, and water storage tanks.
Delta Plate & Frame Heat Exchanger System - Pumping Skid including
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Delta Shell & Tube Heat Exchanger System - Pumping Skid including Pumps,
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piping complete on skid and other options appropriate for application.
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