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rate, and then back-calculated back with the flow model, see Appendix II
for details.
⑥
Cumulative coefficient:
the meter is accumulated every second by
(current value * cumulative coefficient / 3600).
When the accumulation factor is 1, it is accumulated by 1/3600
of the current value every second.
When the accumulation factor is 60, it is accumulated by 1/60 of
the current value per second.
When the accumulation factor is 3600, it will be added up by the
current value every second.
⑦
Range upper and lower limits:
user-defined flow range, free to
configure.
⑧
Media compensation:
Media compensation mode is divided into: no
compensation, general gas, superheated steam, saturated steam
(temperature), saturated steam (pressure), natural gas, hot water, the
meaning of each compensation type is detailed in Appendix III.
⑨
temperature channel:
the source channel is selected when the external
compensation, and the given compensation value is set when the internal
compensation is given.
⑩
Pressure channel:
Select the source channel when external
compensation is applied, and set the given compensation value when
internal compensation is given.
⑪
Standard density:
The density of fluid under standard condition (e.g.
20.00
℃
, 0.000Mpa (gauge pressure)), unit is Kg/m³.
⑫Standard temperature: The temperature corresponding to the volume
flow rate after compensation. When the calculation result is volume flow
rate, the nominal temperature should be set, and its parameters are
determined by the user, and the default of the instrument is 20.00
℃
. The
calculation result of mass flow rate has nothing to do with the standard
temperature.
Summary of Contents for HT R71
Page 22: ... 22 4 2 Usage Patterns ...