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SHR Marine Heat Exchanger
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$5,699.00

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Wenzhou Aowei Machinery Co., Ltd
Shanghai, China
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Heat exchanger tube, commonly known as shell and tube heat exchanger.
We can manufacture tube heat exchanger and heat exchanger tube, and we specialize in tube heat exchanger and heat exchanger tube. Is closed in control in the shell as a heat transfer surface of the heat exchanger's wall partitions. This heat exchanger structure is generally simple and reliable in operation, and it can be made from a range of structural materials (mostly metallic components). It is the most commonly used kind in high temperature and high pressure applications. Shell, heat transfer tube, tube sheet, baffle (baffle), control box, and other components make up the structure. Internal cylindrical shell Control both ends of the fixed plate in the tube using control. 

There are two types of heat exchangers for hot and cold fluids: 
a flow in the tube known as the fluid tube and another flow in the tube known as the shell-side fluid. Outside the sub-factor of heat transfer fluid, commonly fitted in a number of baffle shells to improve control. The baffle can raise the speed of the shell-side fluid, forcing it through the tube numerous times by the horizontal distance to increase the level of fluid turbulence.
A plate heat exchanger can have an equilateral triangle or square array. Equilateral triangle with a more compact tube, strong fluid turbulence, and a large heat transfer coefficient; Square tube cleaning is convenient and acceptable. To facilitate fluid scaling. Each time as a control tube through the fluid; each time as a shell through the shell. The 1-1 type heat exchanger Browser icon represents the simplest single-shell-single-tube heat exchanger. All of the tubes are divided into numerous groups to improve the speed of the fluid control that may be set up at both ends of the pipe inside the partition. This section of the fluid only passed through the tube, so many times in the round-trip control, it said For multi-way. Similarly, to increase the flow, vertical baffles can be inserted in the shell to drive the fluid through the shell space on several occasions, referred to as multi-shell. It is possible to have a multi-way and multi-shell application procedure. The temperature of the fluid within and outside the tube varies as a result of the heat exchanger shell and tube temperature. If the temperature difference between two large heat exchangers is significant, it will result in tube bending, fracture, or from the control panel Latvia. As a result, when the temperature difference between the tube and the shell exceeds 50 degrees Celsius, compensation is required to take appropriate measures to minimize or reduce thermal stress. Shell has adopted compensatory measures. 
Shell heat exchangers are classified into the following primary types based on the compensatory methods used: 
Fixed-plate heat exchanger tube bundle at both ends of tube plate and shell into one, simple structure, but only in hot and cold fluid temperature difference is not, and shell does not work when heat exchanger. When the temperature is slightly higher and the pressure is not too high, the shell can be put on a flexible loop compensation to reduce thermal stress. One end has a floating head heat exchanger tube. The tube plate can be free-floating, removing all thermal stress; and the entire bundle can be detached from the shell, making cleaning and maintenance procedures easier. Floating Head Heat Exchanger has a broader applicability, but a more intricate structure and a higher cost. U-tube heat exchangers are bent U-shaped heat exchange tubes, with both ends fastened in the same two places under the control panel and control box via the import and export of the partition into two rooms.

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