5
When the media is other:
Power calculation p=q×ρ×∆T×H
Q is the measured flow;
Ρ is the set medium density;
H is the set enthalpy of medium;
∆T=|Ts-Tr|.
The power measurement mode is divided into heating mode (heat), cooling mode
(cold) and automatic judgment mode (auto), which are calculated according to the rules
in the following table:
Table 3
-
1 Calculation rules of heat and cooling capacity31
Power
option
settings
Flow
Temp.
Power
measure
mode
Abnormal conditions
Heating
Forward
Ts>Tr
Heating
Reverse
Not calculate heat
Cooling
Forward
Ts<Tr
Reverse
Not calculate heat
Auto.
Forward
Ts>Tr
Heating
Not calculate heat when
Ts<30
℃
Ts<Tr
Cooling
Not calculate cooling when
Ts>18
℃
reverse
Ts>Tr
Cooling
Not calculate cooling when
Tr>18
℃
Ts<Tr
Heating
Not calculate heat when
Tr<30
℃
4. Technical parameter
4.1 Basic parameters
(1) Measuring medium: central air conditioning water, primary and secondary network
hot water of heat exchange station, industrial refrigerant, etc.
(2) Measurable flow rate range: 0 ~ 12m / S
(3) The accuracy of flow measurement is level 0.5
4.2 Converter
4.2.1 Input / output signal parameters
4.2.1.1 Current output interface
Through parameter setting, it can be set to
4 ~ 20 mA corresponding instantaneous flow output (load resistance ≤ 500 Ω)
4 ~ 20 mA corresponding power output (load resistance ≤ 500 Ω)
4.2.1.2 Pulse output interface
The pulse output is a passive pulse.
Transistor contact capacity: 30VDC, 200mA
Output frequency: 0.0001
~
5000Hz.
Scaled pulses can be output through the setting of pulse equivalent.
Pulse width: 50% duty cycle or fixed value (≤ 200ms).
4.2.1.3 RS485 output