Gold Member Since 2014
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Guangzhou Jiema Heat Exchange Equipment Co., Ltd.

Shell and Tube Heat Exchanger, Heat Exchanger as Evaporator, Evaporator manufacturer / supplier in China, offering Shell and Tube Heat Exchanger as Evaporator, Plate Heat Exchanger Unit (BM15-1.6-80-E), Air Tank and so on.

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Supplier Homepage Product Shell and Tube Heat Exchanger Shell and Tube Heat Exchanger as Evaporator

Shell and Tube Heat Exchanger as Evaporator

FOB Price: US $1,000-10,000 / Piece
Min. Order: 1 Piece
Min. Order FOB Price
1 Piece US $1,000-10,000/ Piece
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Port: Guangzhou, China
Production Capacity: 100 Sets/Per Month
Payment Terms: L/C, T/T, D/P, Western Union

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Basic Info
  • Model NO.: BEN325-1.0-20/200
  • Cooling Method: Screw
  • Selected Voltage: 380V/50HZ
  • Noise Level: Low
  • Application Machine: Grinder
  • Condition: New
  • Evaporator: Shell and Tube Heat Exchanger
  • Transport Package: Wooden Packaging
  • Origin: Guangzhou China
  • Type: Water-Cooled
  • Unit Structure: Integral
  • Compressor Number: 2
  • Application Fields: Pharmaceutical
  • Certification: ISO, CE
  • Size and Material: Can Be Worked as Per Client Requirement
  • Trademark: JIEMA
  • Specification: ISO9001: 2008
  • HS Code: 8419500090
Product Description
                                                              Shell and Tube Heat Exchanger for Evaporator

Descripition:

shell and tube heat exchanger is a class of heat exchanger designs. It is the most common type of heat exchanger in oil refineries and other large chemical processes, and is suited for higher-pressure applications. As its name implies, this type of heat exchanger consists of a shell (a large pressuere vessel) with a bundle of tubes inside it. One fluid runs through the tubes, and another fluid flows over the tubes (through the shell) to transfer heat between the two fluids. The set of tubes is called a tube bundle, and may be composed of several types of tubes: plain, longitudinally finned, etc.So,it is also called Tubular Heat Exchanger.

Shell and Tube Heat Exchanger as Evaporator

Theory :
Two fluids, of different starting temperatures, flow through the heat exchanger. One flows through the tubes (the tube side) and the other flows outside the tubes but inside the shell (the shell side). Heat is transferred from one fluid to the other through the tube walls, either from tube side to shell side or vice versa. The fluids can be either liquids or gases on either the shell or the tube side. In order to transfer heat efficiently, a large heat transfer area should be used, leading to the use of many tubes. In this way, waste heat can be put to use. This is an efficient way to conserve energy.

Shell and tube heat exchanger design:

Counter current heat exchangers are most efficient because they allow the highest log mean temperature difference between the hot and cold streams. Many companies however do not use single pass heat exchangers because they can break easily in addition to being more expensive to build. Often multiple heat exchangers can be used to simulate the counter current flow of a single large exchanger.


 
Applications and uses:
1.cooling of hydraulic fluid and oil in engines, transmissions and hydraulic power packs
2.heating other mediums,such as water,beverager,orange juice and other steam
3.they are extensively applied in chemical industrial,pertroleum and energy source and etc.

Features:
  1)Simple structure, easy manufacturing
  2)Large processing quantity (1-2,000m³/h)
  3 lStable and reliable operating state
     Strong adaptability (applicable to almost all industries)
  4)Adaptability to high temperature and pressure (≤800°C; ≤6.0Mpa)



Material :
     . Tube : carbon steel , stainless steel SS304 ,SS316 L  , copper ,
     . Shell : carbon steel , stainless steel SS304 ,SS316 L

 
Design selection need to provide the following parameters:
Description Hot side Cold  side 
working medium name   
flow rate   
inlet temperature   
outlet temperature   
Working pressure   


Model Specification Example :

The Heat Exchanger Tube Specifications Φ20
DNQuantity of tube passQuantity of heat exchanger tubeQuantity of center raw tube tube pass flow area(m²)Heat exchanger area(m²)
Tube length(mm)
15002000300045006000
15911550.0030 1.4 1.9 2.8   
21913370.0066 3.1 4.1 6.2   
27316590.0131 6.1 8.2 12.3 18.4 24.5 
25680.0056 5.3 7.0 10.6 15.8 21.1 
325199110.0199 9.3 12.4 18.7 28.0 37.3 
288100.0088 8.3 11.1 16.6 24.9 33.2 
468110.0034 6.4 8.5 12.8 19.2 25.6 
4001174140.0350 16.4 21.9 32.8 49.2 65.8 
2164150.0165 15.5 20.6 30.9 46.4 61.8 
4146140.0073 13.8 18.3 27.5 41.3 55.0 
4501237170.0477 22.3 29.8 44.7 67.0 89.3 
2220160.0221 20.7 27.8 41.5 62.2 82.9 
4200160.0101 18.8 25.1 37.7 56.5 75.4 
5001275190.0553  34.6 51.8 77.8 103.7 
2256180.0257  32.2 48.3 72.4 96.5 
4222180.0112  27.9 41.8 62.8 83.7 
The Heat Exchanger Tube Specifications Φ25
DNQuantity of tube passQuantity of heat exchanger tubeQuantity of center raw tube tube pass flow area(m²)Heat exchanger area(m²)
Tube length(mm)
15002000300045006000
15911130.0038 1.3 1.7 2.6   
21912550.0087 2.9 3.9 5.6   
27313860.0132 4.5 6.0 9.0 13.4 17.9 
23270.0055 3.8 5.0 7.5 11.3 15.1 
32515790.0197 6.7 9.0 13.4 20.1 26.9 
25690.0097 6.6 8.8 13.2 19.8 26.4 
44090.0035 4.7 6.3 9.4 14.1 18.8 
400198120.0339 11.5 15.4 23.1 34.6 46.2 
294110.0163 11.1 14.8 22.1 33.2 44.3 
476110.0066 9.0 11.9 17.9 26.9 35.8 
4501135130.0468 15.9 21.2 31.8 47.7 63.6 
2126120.0218 14.8 19.8 29.7 44.5 59.4 
4106130.0092 12.5 16.7 25.0 37.5 50.0 
5001174140.0603  27.3 41.0 61.5 82.0 
2164150.0284  25.8 38.6 58.0 77.3 
4144150.0125  22.6 33.9 50.9 67.9 


 
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