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Testo 350 Field Guide - Actoolsupply.com

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Fuel K gr K net CO 2max K 1 K 2 H M Q gr Q net O 2 ref F Br<br />

Natural gas 0.<strong>350</strong> 0.390 11.9 40 44.3 24.4 0 53.42 48.16 3 0.2304<br />

Fuel oil 0.480 0.510 15.4 53 56.4 13.0 0 45.60 42.80 3 0.2434<br />

Class D<br />

Fuel oil 0.510 0.540 15.8 54 57.2 11.5 0.2 42.90 40.50 3 0.2545<br />

Class E,F,G<br />

Coal 0.620 0.650 18.4 63 66.0 4.0 13.0 26.75 25.50 6 0.2561<br />

Anthracite 0.670 0.690 19.1 65 66.5 3.0 12.0 29.65 28.95 6 0.2551<br />

Coke LPG 0.750 0.760 20.6 70 71.1 0.4 10.0 27.9 27.45 6 0.2919<br />

Propane LPG 0.420 0.450 13.8 48 51.8 18.2 0 50.0 46.30 3 0.2341<br />

Butane 0.430 0.460 14.1 48 51.6 17.2 0 49.30 45.80 3 0.2301<br />

Fuel 1 0.<strong>350</strong> 0.390 11.9 40 44.3 24.4 0 53.42 48.16 3 0.2304<br />

Fuel 2 0.480 0.510 15.4 53 56.4 13.0 0 45.60 42.80 3 0.2434<br />

H: Hydrogen content of fuel<br />

M: Moisture content of fuel<br />

F Br: Conversion factor mg/m 3 in g/GJ<br />

Factors of fuel 1 and fuel 2 set by the factory can be freely selected<br />

Table 7a: Fuel-specific factors (British calculation)<br />

2.7 Dew point; condensate<br />

Dew point<br />

The dew point or dew point temperature of a gas is the temperature at which the<br />

water vapor contained in the gas is transformed into the liquid state. This transition<br />

is called condensation, the formed liquid is called condensate. Below the dew<br />

point temperature humidity (moisture) exists as liquid, above the dew point as<br />

gaseous <strong>com</strong>ponent of the gas. An example for that is the formation and de<strong>com</strong>position<br />

of fog or dew as a function of the temperature.<br />

The dew point temperature is a function of the moisture content of the gas: The<br />

dew point of air with 30% moisture content is at appr. 70 °C, while dry air with<br />

only 5% moisture content has a dew point at appr. 35 °C, see fig. 5.<br />

22<br />

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