Thermal Transfer Systems M6-MW User Manual
Page 10

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PPM00029EN 0302
Working principle
Channels are formed between the plates and the corner
ports are arranged so that the two media flow through alter-
nate channels. The heat is transferred through the plate
between the channels, and complete counter-current flow is
created for highest possible efficiency. The corrugation of the
plates provides the passage between the plates, supports
each plate against the adjacent one and enhances the turbu-
lence, resulting in efficient heat transfer.
STANDARD MATERIALS
Frame plate
Mild steel, Epoxy painted
Nozzles
Carbon steel
Metal lined: Stainless steel, Titanium
Plates
Stainless steel AISI 316 or Titanium
Gaskets
Field gaskets
Nitrile, EPDM
Ring gaskets
Chloroprene, EPDM
Connections
FG PED
Size 300/350 mm
DIN 2501 PN16
FG ASME
Size 12”/14”
ANSI 150
FD PED
Size 300/350 mm
DIN 2501 PN25
FD ASME
Size 12”/14”
ANSI 300
FS PED
Size 300/350 mm
DIN 2501 PN25/PN40
FS ASME
Size 12”/14"
ANSI 400
TECHNICAL DATA
Mechanical design pressure (g) / temperature
FG PED
1.6 MPa / 180 °C
FG ASME
150 psig / 350 °F
FD PED
2.5 MPa / 180 °C
FD ASME
300 psig / 350 °F
FS PED
3.0 MPa / 160 °C
FS ASME
400 psig / 320 °F
Maximum heat transfer surface
1131 m
2
(12.107 sq. ft)
Particulars required for quotation
– Flow rates or heat load
– Temperature program
– Physical properties of liquids in question (if not water)
– Desired working pressure
– Maximum permitted pressure drop
– Available steam pressure
Dimensions
Measurements (mm)
Type
H
W
h
MA30-WFG
2940
1170
521
MA30-WFD
2940
1170
521
MA30-WFS
2940
1170
521
Alfa Laval reserves the right to change specifications without prior notification.
561
W
1585-5820
1811
H
h
Flow principle of a plate heat exchanger
THERMAL TRANSFER SYSTEMS, INC.
[email protected]
PH: 800-527-0131 FAX: 972-242-7568