The sample was given No. 10 prototype dimensionless performance table and dimensionless performance curve, a number of other machine dimensional performance parameters can be deduced
Table 1 4-72 No. 10 prototype dimensionless performance table
123456
Phi
Only
Only D
Lambda
Eta in 0.1884
Zero point four five eight
Zero point zero three three five
Zero point zero nine nine five
0.867 0.2051
Zero point four five two
Zero point zero three nine seven
Zero point one zero four five
0.887 0.2218
Zero point four three four
Zero point zero four six five
Zero point one zero eight two
0.89 0.2361
Zero point four one three
Zero point zero five two eight
Zero point one one zero six
0.882 0.25
Zero point three nine
Zero point five nine four
Zero point one one two six
0.866 0.2637
Zero point three six three
Zero point zero six six three
Zero point one one three seven
Zero point eight four two
The dimensionless parameters are calculated as follows:
Q=900 D22U2 (m3/h) P= PI Phi Rho 1U22 /Kp (Pa)
Kp= Nin= (KW)
Nre= (KW)
In type:
Q flow (m3/h)
Kp full compression coefficient
P total pressure (Pa)
Nin - internal power (KW)
Nre - required power (KW)
D2 - impeller outer diameter (m)
U2 - impeller blade edge line velocity (m/s)
P 1 - air density (kg/m3)
The mechanical efficiency of M
K - motor reserve factor
Fan performance generally refers to the performance of air transportation in the standard state, the so-called standard state refers to the atmospheric pressure Pa=101325Pa, atmospheric temperature of t=20 DEG C and relative humidity X=50%, air density =1.2kg/m3, when using the state for non standard state, it must be the performance of non standard state properties converted to standard state, then the look-up table select the conversion formula is as follows:
(m3/h) (Pa)
In0= in (KW).
There are 0 footnotes in the form of the standard state without footnote 0 for the use of state
Table 2 mechanical efficiency
Drive motor direct coupling triangle belt
ETA m 10.98 0.95
Table 3 Motor reserve factor
Shaft power KW >0.5-1 >1-2 >2-5 >5 <0.5
K 1.5 1.3 1.2 1.4 1.15
Fan operation, often happened or insufficient flow phenomenon, the main reason is because the pipeline resistance when flying in or fan area and other reasons; if in use process, after a long time to gradually reduce or decrease suddenly in a short period of time, is the network congestion.
In the new installation of the fan, the flow is too large or insufficient phenomenon, the main reasons for this phenomenon are the following two points:
(1) the difference between the actual value and the calculated value is too large. General wind characteristic equation: P=KQ2 can be seen, such as the actual value of K is less than the calculation of K, the flow increases, otherwise, the flow reduction. See Figure 2
(2) the selection of the fan does not take into account the full pressure deviation of the impact of P, when the actual fan pressure is a positive deviation, the flow increases, the negative deviation, the flow is reduced.
If the flow is too large or too long after the new installation of the fan is started or when in use, one of the following methods can be used to eliminate:
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