Page 50
R
ATIOMETRIC
If the flow calculation is to be
ratiometric P702 = 2
the flow will be
calculated using the formula: q= q
cal
C
e
/C
ecal
(h
e
/h
ecal
)
1.5
Where: q = flowrate
q
cal
=
flowrate at maximum head P705
Ce
=
discharge coefficient
calculated by FlowCERT
LITE
P723
Ce
cal
= discharge coefficient at maximum head
he = effective head
he
cal
= effective head at maximum head
BS 3680 V-Notch Weir
A
BSOLUTE
If the flow calculation is to be
absolute
P702
=
1
the flow will be calculated
using the formula: q = C
e
8/15tan(theta/2)(2gn)
0.5
h
2.5
Where: q = flowrate
Ce
=
discharge coefficient
calculated by FlowCERT
LITE
P723
theta = v-notch angle
gn = gravitational acceleration (nominal value = 980.66 cm/s
2
)
h = head
FlowCERT
LITE
presets the angle (theta) on selection of the chosen device
this angle is
90 degrees
for a BS 3680
full 90 degree V notch
weir,
53
degrees 8 minutes
in the case of the BS3680
half 90 degree V notch
weir
and
28 degree 4 minutes
in the case of the BS3680
quarter 90 degree V
notch
R
ATIOMETRIC
If the flow calculation is to be
ratiometric P702 = 2
the flow will be
calculated using the formula: q = q
cal
C
e
(h)/C
e
(h
cal
)(h/h
cal
)
2.5
Where: q = flowrate
q
cal
=
flowrate at maximum head P705
Ce(h) = discharge coeffecient for head
Ce(h
cal
)
=
discharge coefficient for maximum head
h = head
h
cal
=
maximum head P704
Summary of Contents for FlowCERT LITE
Page 1: ...FlowCERT LITE UL INSTRUCTION MANUAL...
Page 2: ......
Page 4: ......
Page 8: ......
Page 14: ...Page 6 EC DECLARATION OF CONFORMITY...
Page 18: ...Page 10 The full dimensions of the enclosure are as shown below...
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Page 77: ...Page 69...
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