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Brazed plate heat exchanger
Brazed Plate Heat Exchanger
  • Brazed Plate Heat Exchanger

Brazed Plate Heat Exchanger

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  • Features
  • Technical Data
  • Application

Brazed Plate Heat Exchanger features

The stainless steel plates are brazed together, then no need for gasket and frames.the contact points to help hold the plates together,also can take high pressure.the brazing material function is sealing the stainless steel package.GHEí»s brazed heat exchangers are brazed at all contact points,to make sure best heat transfer efficiency and pressure resistance.the advance of brazed plate heat exchanger is compact size and light weight,also can take  high preesure up to 4.5Mpa.GHE offers a flexible customer-made design to meet customer-specific requirements then to ensure the most cost-efficient solution for customersí» heat transfer duties.


Brazed Plate Heat Exchanger Material

The BPHE(Brazed Plate Heat Exchanger) main components are stainless steel corrugated plates and copper sheet,the stainless steel plates are brazed together by brazing material (Copper or Nickel)in Vacuum Furnace.Copper brazed heat exchanger can be sued for numerous of applications.however ,for food or application involving aggressive fluids,Nickel brazed units are recommend .


Brazed plate heat exchanger Fluid Flow principle



The basic flow principle in GHE brazed heat exchanger is parallel(except dual system BPHE)and current flow,this design make easier for installation

1) Flow principle in brazed plate heat exchanger Evaporator

In brazed plate heat exchanger,two media flow always in opposite direction,it is called current flow.the two phase refrigerant (vapor+liquid)enters the bottom left of the heat exchanger with a vapor quality depending on the operating condition of the application.Evaporation of the liquid phase takes place inside the channels and some degrees of superheat are always requested.

2) Flow principle in brazed plate heat exchanger Condenser

Same components as for the evaporator.the hot refrigerant enters at the top left of the heat exchanger and starts to condense on the surface of the channel until fully condensed ,sub cooling also requested .

3) Multipass Design brazed plate heat exchanger

The heat exchanger can be designed as a multipass until according to customersí» need.different connections location and type &size.customer specific design are available request.

4) Dual system brazed heat exchanger design

What is dual system?the dual circuit means two refrigerant flows and one water flow.the design is diagonal flow design,that means the brazed plate heat exchanger can be connected with two independent refrigerant circuits.this design can make sure each refrigerant circuit is in contact with the entire water flow.the main advantage is that although when only compressor running still can maximize the water cooling performance .

Brazed Plate Heat Exchanger Specification


BHE DIMENSION.png

Model 

A

 (mm)

B

(mm)

C

(mm)

D

(mm)

thickness

(mm)

weight

(mm)

Stagnant fluid 

volume (L)

Design pressure

(Mpa)

Max fluid

(L)

GL014

78

42

172

206

9+2.3N

0.6+0.056N

0.010(N-2)

1/3/4.5

8m3/h

GL018

89

43

182

229

9+3.1N

1.1+0.056N

0.036(N-2)

1

8m3/h

GL020

78

42

282

318

9+2.3N

0.44+0.076N

0.040(N-2)

3/4.5

8m3/h

GL026

111

50

250

310

9+2.36N

1.2+0.12N

0.050(N-2)

3/4.5

18m3/h

GL030

124

70

250

304

13+2.4N

2.2+0.146N

0.032(N-2)

3/4.5

18m3/h

GL052

111

50

466

525

10+2.35N

1.9+0.213N

0.047(N-2)

3/4.5

18m3/h

GL062

119

63

470

526

10+2.35N

2.4+0.223N

0.051(N-2)

3/4.5

18m3/h

GL095A

191

92

519

616

11+2.76N

6+0.415N

0.125(N-2)

3/4.5

42m3/h

GL095B

191

92

519

616

11+2.76N

6+0.413N

0.125(N-2)

3/4.5

42m3/h

GL0120

246

174

456

528

13+2.36N

7+0.472N

0.98 (N-2)

3/4.5

42m3/h

GL0200A

321

188

603

738

9+1.58N

13+0.74N

0.22(N-2)

1.5/2.1/3

100m3/h

GL0200B

321

188

603

738

13+2.7N

13+0.73N

0.22(N-2)

1.5/2.1/3

100m3/h

Notes: 

N* is plate number 


High efficiency heat exchanger

Our GL020, GL062 series, GL0130, GL0250 are specifically developed for R410A refrigerant, which is ideal alternative of R22. R410A efficient heat exchanger is not only resistant to high pressure, but also with less refrigerant to achieve the same cooling effect. GL020 and GL062 are unilateral flow. GL0130 and GL0250 are diagonal flow. They can work from the power range of 1KW to 250KW


bhe2.png

Model

A

(mm)

B

(mm)

C

(mm)

D

(mm)

Thickness

(mm)

Weight

(mm)

Stagnant fluid

volume (L)

Design pressure

(Mpa)

Max fluid

(L)

GL020A

86

40

269

315

9+1.58N

1+0.084N

0.018(N-2)

3/4.5

8m3/h

GL062A

119

63

470

526

10+2.35N

2.4+0.225N

0.051(N-2)

3/4.5

18m3/h

 Dual System*

Model

A

(mm)

B

(mm)

C

(mm)

D

(mm)

E

(mm)

F

(mm)

Thickness

(mm)

Weight

(mm)

Stagnant fluid

 volume (L)

Design pressure

(Mpa)

Max fluid

(L)

GL0130

247

161

495

414

369

172

10+2.15N

4+0.424N

0.080(N-2)

3/4.5

42m3/h

GL0250

322

205.2

739

631.7

568

224.4

13+2.7N

16+0.711N

0.22(N-2)

3/4.5

100m3/h

Notes: 

N* is plate number 


 



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