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Heat exchangers can be used for a wide variety of uses. As the name implies, these can be used for heating as well as cooling. The two primary types of marine heat exchangers used aboard vessels in the maritime industry are plate, and shell and tube. Maintenance for heat exchangers prevents fouling and galvanic corrosion from dissimilar metals.
Copper alloys are extensively used as heat exchanger tubing in fossil and nuclear steam generating electric power plants, chemical and petrochemical plants, marine services, and desalination plants. The largest use of copper alloy heat exchanger tubing on a per unit basis is in utility power plants.
A heat exchanger is a system used to transfer heat between ... Fixed tube liquid-cooled heat exchangers especially suitable for marine and harsh applications can be ...
Cupronickel alloys are used for marine applications [3] due to their resistance to seawater corrosion, good fabricability, and their effectiveness in lowering macrofouling levels. Alloys ranging in composition from 90% Cu–10% Ni to 70% Cu–30% Ni are commonly specified in heat exchanger or condenser tubes in a wide variety of marine ...
Marine heat exchanger; Micro heat exchanger; Moving-bed heat exchanger; P. Pillow-plate heat exchanger; Pinch analysis; Plate-fin heat exchanger; Plate heat exchanger; R.
Fluid flow simulation for a shell-and-tube style exchanger; The shell inlet is at the top rear and outlet in the foreground at the bottom Shell and tube heat exchanger. A shell-and-tube heat exchanger is a class of heat exchanger designs. [1] [2] It is the most common type of heat exchanger in oil refineries and other large chemical processes ...
The study concluded that although microbial fouling was an issue for the warm surface water heat exchanger, the cold water heat exchanger suffered little or no biofouling and only minimal inorganic fouling. [46] Besides water temperature, microbial fouling also depends on nutrient levels, with growth occurring faster in nutrient rich water. [113]
The steam cools and condenses against the heat exchanger tubes, thereby heating the feed water as described earlier. [3] The total evaporation in all the stages is up to approximately 85% of the water flowing through the system, depending on the range of temperatures used.
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