- 17 -
©Rinnai
)*
A simple calculation of the water flow rate, in litres per minute, can be made using the charts on the
next page, or simply using the formula provided below. The charts on the following pages indicate
the water flow from the Infinity at various combinations of incoming water temperatures, and the
selected temperature at the remote control.
How to read the charts:
The vertical plane indicates the selected temperature at the remote, and the horizontal plane
indicates the flow of water in litres per minute. Remote control range is between 37 C and 75 C,
therefore the water flow charts only show the temperatures in that range. The temperature rise is the
difference between the temperature of the incoming water and the selected temperature at the
remote controls.
Select the appropriate chart depending on the incoming water temperature. Draw a horizontal line
across the graph from the selected temperature at the remote until it intersects the curve. At this point
draw the line in the vertical direction. The water flow is indicated where the line intersects the bottom
of the chart.
How to calculate water flows:
The following information is an outline of the formula required to measure accurately the flow rate
in litres per minute, as well as being the base for the charts on the next page. The most useful way in
which this formula can be utilised, is to calculate the water flow rate where there is maximum gas
input of 160MJ/h or 188MJ/h depending on the model.
Formula
: IN x TE = (
T
OUT -
T
IN) x 60 x Q
Where:
T
IN
=
Incoming water temperature.
T
OUT
=
Outgoing water temperature as selected at the remote.
IN
=
Gas input
#
.
TE
=
Thermal efficiency*.
Q
=
Water flow in litres per minute.
#
This is the maximum gas input converted from MJ/h into kilocalories. As 1 kilocalorie raises
the temperature of 1 litre of water by 1 degree centigrade, the method of calculation is to
multiply the input in MJ/h by 239.
*
Thermal efficiency may be in the range of 78% to 90%, depending on the temperature rise
and water flow. For the purpose of the following calculation we have assumed an efficiency
of 80%.
Example Data
Calculation
TIN =15 C
TOUT = 60 C
IN = 45000kcal/h
TE = 80%
Q = Water flow in Litres per minute
IN x TE = (
T
OUT
-
T
IN
) x 60 x Q
4500 x 0.8 = (60 - 15) x 60 x Q
36000 = 45 x 60 x Q
= 60 x Q
800 = 60 x Q
= Q
13.3 L/min
°
°
°
°
---------------
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Содержание REU-2007W
Страница 1: ...INFINITY...
Страница 8: ...Infinity REU 2007 2008 2408 2424 3 Rinnai 1 2 Note All dimensions are in mm...
Страница 14: ...2 4 9 9...
Страница 15: ......
Страница 16: ...Infinity REU 2007 2008 2408 2424 11 Rinnai 2 4...
Страница 31: ...Infinity REU 2007 2008 2408 2424 26 Rinnai 3 A A 6 4 8...
Страница 32: ...Infinity REU 2007 2008 2408 2424 27 Rinnai 4 2 A Normal Combustion Sequence...
Страница 33: ...Infinity REU 2007 2008 2408 2424 28 Rinnai Error Sequence Ignition Flame Failure Pre Purge Defect Sequence...
Страница 62: ...Infinity REU 2007 2008 2408 2424 57 Rinnai 5 2 4...
Страница 63: ...Infinity REU 2007 2008 2408 2424 58 Rinnai...
Страница 64: ...Infinity REU 2007 2008 2408 2424 59 Rinnai...
Страница 65: ...Infinity REU 2007 2008 2408 2424 60 Rinnai...