Sharp JX-9400 Información técnica Pagina 143

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and rotates at 5 rpm. The diameter of one honeycomb cell is 1.5 mm. The wheel
has no purging sector and the fans are not in their ideal positions. This explains
the high recirculation flow rate of about 15 per cent.
Pressure differentials were measured in all units just before or after the
experiments. These are shown in Table 6.4. It can be seen that a negative
pressure between supply and exhaust ducts allows vitiated air to pass from
exhaust to supply through possible leakage. This is especially remarkable in
the EMPA unit, where the fans are both on the same side of the wheel.
The climatic conditions just before or after the experiments are shown in
Table 7.2.
Results
Experiments were performed several times in various conditions. In order to
avoid adsorption in filters, these were taken out dur ing experiments. Experi-
ments were performed with the rotating heat exchanger turning in the correct
direction, i.e. with an active purging sector, and in the wrong direction, thus
suppressing the effect of the purging sector.
Table 6.4 Pressure differentials in the units [Pa]
Auditorium unit Laboratory unit EMPA unit
Filters in out in out in out
Across Inlet supply 88 5805855825972 109 3
wheel Extract exhaust 107 5 110 5605675941881
Between Cold side 125 5545305215 230 2 283 5
supply and
exhaust
Warm side 72 5 125 5 125 5 137 5 423 2 475 5
Table 6.5 Climatic conditions in the units [8C]
Unit Auditorium unit Laboratory unit EMPA
Expt. A þ 1Aþ 2Aþ 3A 1A 2Lþ 1Lþ 2L 1L 2
Dew point
Inlet 0.1 0.1 3.8 2.5 3.8 2.5 1.8
Supply 1.1 1.1 3.8 0.9 3.8 0.9 11.7
Extract 2.3 2.3 4.6 0.2 4.6 0.2 11.2
Exhaust 0.9 0.9 3.8 1.6 3.8 1.6 12.1
Temperature
Inlet 4.4 4.4 9.7 4.4 9.7 15.2 13.1 15.2 13.1 19.5
Supply 20.0 20.0 20.4 20.0 20.4 21.0 22.2 21.0 22.2 24.0
Extract 18.0 18.0 20.2 18.0 20.2 22.4 22.2 22.4 22.2 24.6
Exhaust 10.0 10.0 13.0 10.0 13.0 18.1 15.5 18.1 15.5 20.7
122 Ventilation and Airflow in Buildings
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