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0
20
40
60
80
100
120
40
50
60
70
80
90
100
Am bient tem perature in °F
C
o
o
lin
g
c
a
p
.
in
b
tu
/h
PKE
fitted
w ith
PTS
Limit for
PTG
and
PTV
0
20
40
60
80
100
120
40
50
60
70
80
90
100
110
120
Am bient tem perature in °F
C
o
o
lin
g
c
a
p
.
in
b
tu
/h
PKE
fitted
w ith
PTS
Limit
PTG
and
PTV
0
20
40
60
80
100
120
40
50
60
70
80
90
100
Am bient tem perature in °F
C
o
o
lin
g
c
a
p
.
in
b
tu
/h
PKE
fitted
w ith
2xMTS
Limit for
2xMTV
0
20
40
60
80
100
120
40
50
60
70
80
90
100
110
120
Am bient tem perature in °F
C
o
o
lin
g
c
a
p
.
in
b
tu
/h
PKE
fitted
w ith
2xMTS
Limit for
2xMTV
Limit for
2xMTG
Limit for
2xMTG
One heat exchanger
Model PKE 511
Nominal cooling capacity (at 77 °F)
95 Btu/hr
Max. ambient temperature
104 °F
Drift over full range
± 2.7 °F
Dew point noise static
± 0.18 °F
Two heat exchangers
Model PKE 512
Nominal cooling capacity (at 77 °F)
95 Btu/hr
Max. ambient temperature
104 °F
Dew point noise static
± 0.18 °F
Drift over full range
± 2.7 °F
Temperature differential between
heat exchangers
< 0.9 °F
Model PKE 521
Nominal cooling capacity (at 77 °F)
85 Btu/hr
Max. ambient temperature
122 °F
Dew point noise static
± 0.18 °F
Drift over full range
± 2.7 °F
Model PKE 522
Nominal cooling capacity (at 77 °F)
85 Btu/hr
Max. Ambient temperature
122 °F
Dew point noise static
± 0.18 °F
Drift over full range
± 2.7 °F
Temperature differential between
heat exchangers
< 0.9 °F
Note
:
The limits in the diagrams for the PTG, PTV respectively MTV are for a dew point of 104 °F.
Heat Exchanger
The energy content of the sample gas and, as a result, the required cooling capacity of the gas cooler is determined by 3
parameters: gas temperature
, dewpoint
(moisture content) and flow v. The outlet dew point rises with increasing energy
content (heat) of the gas. The required cooling capacity is determined by the maximum acceptable level of the outlet dew point.
The following table shows cooler performance assuming the following conditions: =120 °F and
=160 °F. Indicated is the v
in
lpm cooled air (i.e. after the moisture has condensed). With other dew points and gas inlet temperatures the values may differ.
J
t
t
J
G
e
e
G
max
Please contact one of Buhler’s application specialists for assistance and further information.
Heat exchanger
G
PTS
PTG
PTV
MTS
MT
MTV
PTS-I
PTG
PTV-I
MTS-I
MTG
MTV-I
3)
3)
3)
2)
2)
2) 3)
3)
2) 3)
)
)
)
)
Flow rate v
7.5 lpm
4.2 lpm
4.2 lpm
5 lpm
3.5 lpm
3.2 lpm
Inlet dew point
150 °F
150 °F
150 °F
150 °F
150 °F
150 °F
Gas inlet temp.
356 °F
284 °F
284 °F
284 °F
284 °F
284 °F
Max. cooling capacity Q
142 Btu/hr
85 Btu/hr
85 Btu/hr
90 Btu/hr
76 Btu/hr
62 Btu/hr
Gas pressure p
2320 psi
43 psi
29 psi
363 psi
43 psi
29 psi
Pressure drop p (v=2.5 lpm)
0.15 psi
0.15 psi
0.15 psi
0.29 psi
0.28 psi
0.26 psi
Dead volume
1.8 cu. in.
1.8 cu. in.
3.5 cu. in.
1.2 cu. in.
1.1 cu. In.
1.0 cu. in.
Swagelok
GL 14 (0.2 in.)
DN 4/6
tube 0.2 in.
GL14 (0.2 in.)
DN 4/6
1/4”
GL 14 (1/4”)
1/4”-1/8”
tube 1/4”
GL14 (1/4”)
1/4”-1/8”
G 3/8“
GL 25 (0.5 in.)
G 3/8"
G 1/4”
GL18 (0.3 in.)
G 1/4”
NPT 3/8“
GL 25 (1/2”)
NPT 3/8"
NPT 1/4”
Gl18 (0.3 in.)
NPT 1/4”
max
e,max
G,max
max
max
1)
1)
1)
4
4
4
4
1)
2)
3)
4)
t
J
D
Sample gas connections (metric)
0.2 in.
(US)
Condensate outlet connection (metric)
(US)
C
onsider the maximum cooling capacity of cooler
Types marked “I” have NPT-threads or US tubes, respectively
Heat exchangers MTS, MTG and MTV cannot be automatically drained
Inner diameter gasket
DA 440012
Page 3/4
10/2013
Содержание PKE 511
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