Sharp JX-9400 Informacje Techniczne Strona 120

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consumption of electrical energy by the fan motor, and on the other hand the
kinetic energy given to the air in duct.
The fan efficiency is the ratio of useful power,
m
, to the electrical power
consumed by the fan motor,
e
:
f
¼
m
e
¼
q p
e
ð5:50Þ
Measuring the airflow rate, q, and the pressure differential, p, across the fan
provides the kinetic power of the air, and measuring in addition the electric
power used by the fan allows for the assessment of fan efficiency.
The uncertainty band resulting from uncertainties on the measured quan-
tities is:

f
¼
f
ffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffi
ðqÞ
q
2
þ
ðp Þ
p
2
þ
e
e
2
s
ð5:51Þ
Measurement of airflow rate
Airflow rates through both supply and exhaust fans can be assessed by tracer
gas measurements, as described in Chapter 2, ‘Airflow measurements at
ventilation grilles’. Depending on the units used when interpreting the results,
these measurements may provide either volume airflow rates, q
v
, or mass
airflow rates, Q
m
. These are related by:
Q
m
¼ q ð5:52Þ
where is for the density of the air, which can be calculated by:
¼
MMp
RT
3:46 10
3
p½Pa
T½K
½kg=m
3
ð5:53Þ
where:
p is the atmospheric pressure (average 101,300 Pa at sea level),
T is the absolute temperature,
MM is the average molar mass of the air mixture (about 28.8 g/mole),
R is the molar gas constant ¼ 8.31396 J/(moleK) .
Then, if mass airflow rates are taken from tracer gas measurements, the airflow
through the fans should first be converted into volume airflow rate.
Airflow rate through the fan can also be assessed from the fan speed, the
pressure differential across the fan, and the fan characteristics provided by
the factory which give the airflow rate from the fan speed and pressure
differential.
Measurement of pressure differences
The pressure differential is measured with a differential manometer with a
range of 200–500 Pa (20–50 mm water column).
Measurements and Measures Related to Energy Efficiency in Ventilation 99
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