kkala49
Chemical
- Nov 29, 2012
- 14
In 2007 we worked on a heavy fuel oil (max s.g.~0.96, it could be higher) transfer to boilers by use of centrifugal pumps. To reduce its viscosity, the oil had to be heated to about 60 oC in the suction atmospheric tank. The latter received fuel oil from a bigger similar tank and this from ships.
The question was whether water vapor pressure at 60 oC (~0.2 bara) should be added to (rather low) fuel oil vapor pressure for the calculation of pump NPSHa. Eventually water vapor pressure was not considered, on the ground that all free water content of fuel oil will settle down in the bigger tank upstream. But this assumes that all emulsions between fuel oil and water will brake down upstream of the pump. I do not know under what conditions this is realizable, it seems that these emulsions are not broken down easily. Besides s.g. difference between the specific fuel oil and water is quite small, while heating in the bigger tank (receiving oil from ships) would be somehow lower than 60 oC. Is it feasible to assume that fuel oil has got rid of free water on its arrival to the centrifugal pumps? I think it is mainly a matter of mentioned emulsion stability, that is why the question is placed here.
On the other hand no consideration of water vapor pressure has been detected on several seen fuel oil pump data sheets. Advice or opinion on this matter would be appreciated.
It is noted that water and fuel oil are practically immiscible, so vapor pressure of the mixture is the sum of the two vapor pressures, at any proportion between them. NPSHa issue has been previously discussed in < .
The question was whether water vapor pressure at 60 oC (~0.2 bara) should be added to (rather low) fuel oil vapor pressure for the calculation of pump NPSHa. Eventually water vapor pressure was not considered, on the ground that all free water content of fuel oil will settle down in the bigger tank upstream. But this assumes that all emulsions between fuel oil and water will brake down upstream of the pump. I do not know under what conditions this is realizable, it seems that these emulsions are not broken down easily. Besides s.g. difference between the specific fuel oil and water is quite small, while heating in the bigger tank (receiving oil from ships) would be somehow lower than 60 oC. Is it feasible to assume that fuel oil has got rid of free water on its arrival to the centrifugal pumps? I think it is mainly a matter of mentioned emulsion stability, that is why the question is placed here.
On the other hand no consideration of water vapor pressure has been detected on several seen fuel oil pump data sheets. Advice or opinion on this matter would be appreciated.
It is noted that water and fuel oil are practically immiscible, so vapor pressure of the mixture is the sum of the two vapor pressures, at any proportion between them. NPSHa issue has been previously discussed in < .