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<8. Detailed Data Setting>
8-14
IM 11M13A01-04E
8.7.3 Setting Fuels
Input Parameters
The analyzer calculates the moisture content contained in exhaust gases.
The following sets forth the fuel parameters necessary for calculation and their entries.
The moisture quantity may be mathematically expressed by:
Moisture quantity =
=
=
=
where,
Ao : Theoretical amount of air per unit quantity of fuel, m
3
/kg (or m
3
/m
3
) ............ 2 in Table 8.8
G: Actual amount of exhaust gas (including water vapor) per unit quantity of fuel,
m
3
/kg (or m
3
/m
3
)
Gw : Water vapor contained in exhaust gas per unit quantity of fuel (by hydrogen
and moisture content in fuel), m
3
/kg (or m
3
/m
3
)
............ 1 in Table 8.8
Gw1: Water vapor contained in exhaust gas per unit quantity of fuel (moisture content
in air), m
3
/kg (or m
3
/m
3
)
Go: Theoretical amount of dry exhaust gas per unit quantity of fuel, m
3
/kg (or m
3
/m
3
)
m: Air ratio
X : Fuel coefficient determined depending on low calorific power of fuel, m
3
/kg (or m
3
/m
3
) ... 3 in Table 8.8
Z : Absolute humidity of the atmosphere, kg/kg ....... Figure 8.17
(water vapor caused by combustion and water vapor contained in the exhaust gas)
..
8.7.3E.siki
actual exhaust gas(including water vapor) per fuel
+ (water vapor contained in air for combustion)
x 100
Gw + (1.61 x Z x m x Ao)
Go + Gw + (m - 1) Ao + (1.61 x Z x m x Ao)
x 100
Gw + (1.61 x Z x m x Ao )
X + Ao x m
x 100
Gw + Gw
1
G
x 100
............ Equation 1
............ Equation 2
Fill in the boxes with fuel parameters in Equation 2 above to calculate the moisture content. Use Ao,
Gw and X shown in Table 8.16. If there are no appropriate fuel data in Table 8.16, use the following
equations for calculation.
Find the value of “Z” in Equations 1 and 2 using Japanese Industrial Standards JIS B 8222. If a
precise measurement is not required, obtain the value of “Z” using a graph for the absolute humidity
indicated by a dry and wet bulb hygrometer.
Summary of Contents for ZR202S
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