Heat 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 Exchangers McMaster-CarrAlso known as shell and tube heat exchangers, these transfer heat using liquid or steam that flows through the shell to heat or cool liquid in the tubes. High-Efficiency Heat Exchangers Stacked, corrugated plates maximize contact with liquid or steam flowing through these brazed plate heat exchangers for faster heat transfer than shell and tube heat exchangers.
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High-Pressure Heat Exchangers With more than three times the pressure rating of standard heat exchangers, these are often used for high-pressure condensing, evaporating, heating, and cooling. They are also known as shell and tube heat exchangers. Sanitary High-Efficiency Heat Exchangers
Which Heat Exchanger Is Best? The Three Main Types The shell and tube heat exchanger in the photo above has about twelve times the efficiency than a hypothetical single-tube heat exchanger of the same size. However, there is a disadvantage to smaller tubes if the fluid in your application is very viscous or has particulates, it can foul up the tube and undermine the heat transfer process.
Shell and tube heat exchanger is also called tubular heat exchanger. Tubular condenser is a heat exchanger with relatively simple structure, easily maintain and high effectively heat exchange performance. You can consider it as high efficiency condenser. It can be made into single-loop feedback; double-loop and multi-loop feedback systems.Images
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High Efficiency Stainless Steel Shell And Tube Heat ExchangerHigh Efficiency Stainless Steel Shell And Tube Heat Exchanger Shell-and-tube heat exchangers are used widely in the chemical process industries, especially in refineries, because of the numerous advantages they offer over other types of heat exchangers.
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