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CHAPTER 56
1965 Guide And Data Book
Fig. 6 .... Relation Between Pump Performance Curve and System Characteristic Curve
fig. 6, indicates the flow and pressure of the pump when
coupled to the system.
In the case of the open system, the discontinuity of the'
hydraulic , system requires adjustment of the system curve
to compensate for the static pressure difference at the break
in: the. hydraulic circuit. Thus a system with more static
pressure on the suction flange of the pump than on the dis
charge flange has static pressure available to increase the sys
tem flow. This available static pressure is graphically shown
by shifting the system curve down by an amount equal to the
static pressure A in fig. 7.
*. .
Conversely, a system that, has less static pressure ou the
suction flange thanon the discharge flange has Static pressure
available to decrease the'system flow. .This is. graphically
shown by shifting the system curve up by an amount equal to
the static pressure difference between suction and discharge.
(See A in fig. 8.)
- Too often, originally accurate estimates of friction losses in
circuits are arbitrarily adjusted and cause prediction of pump
operation at unrealistically high heads. When the actual system
losses are less than the adjusted estimate, the actual system curve is lower than predicted, and, consequently, the actual pump operating point will shift as shown in fig. 9, and power requirements will be increased.
This shift in pump operation also increases the net positive suction head requirements, and can cause noise m<w,hnnWt damage to the pumping equipment."
PUMP LOCATION IN THE HYDRAULIC SYSTEM
In an open system,' the pump should be placed so that the suction is flooded and flow is not restricted at pump entrance. Condensate,pumps are located at the source or reservoir and so.connected that the pump inlet is flooded. The pump can ..then handle condensate as close to the flash point as possible. - In this case there is no appreciable pressure drop or friction toss from the reservoir to the impeller eye. In most cases, the pump is attached to, or is part of, the condensate reservoir. Knowledge of the NPSH requirement is desirable, and some times essential/ for the proper selection of any pump operating with fluids at elevated temperatures. -
The selection of the pump location when applied to cooling towers is influenced by the available space, by the necessary protection from the -weather, and by the need to prevent freezing. When the pump is placed close to the tower pan or sump, long runs of costly suction piping areeliminated. Where a prime condition'must-be maintained, the suction line from the tower must be horizontal or run at a slope to make it ' self-venting, and the pump must' be placed below the fluid level in the tower. (See fig: 10.) ' Only -the discharge line may be looped' above the' liquid level. If the suction line is looped above the liquid level, it may collect air; restrict full coolant flow and lower system capacity. The suction line must go through, around, or below tire'ob struction,-even if.this makes it necessary,to relocate or raise tiie tower/Hie best position for the pumpis at the tower.
Closed systems work best if the pump is located so'that it pumps away from the expansion tank ami ia located dose to it* The .pump head!is then dissipated through, the piping.
Rg. 7 ..Shift in System Curve Caused by Higher Static Pressure on Suction Side of Pump .
Rg. 8 .... Shift in System Curve Caused by lower Static / Pressure on Suction Side of Pump
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Pumps
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splash-proof, totally-enclosed, and explosion-proof motors are furnished by all manufacturers on request.
' Gasoline- or diesel engine-driven centrifugal pumps- are called dose-coupled, when the impellers and volutes are mounted directly on the engine-shaft and housing; and longcoupled, when toe pump shaft is connected to toe motor by a flexible coupling, or is belt driven. Conversion kits are avail able for most engines to convert them for use of either natural gas or liquefied petroleum gases (butane or propane) instead of Due to speed variations possible with this type of drive, a governor is essential for satisfactory operation, in order to regulate the speed and delivery desired. Steam is usually available to drive centrifugal boiler feed-pumps and booster pumps in power stations by means of turbines. Re ciprocating boiler-feed pumps are also usually steam-driven.
Fig;' 9 .... Effect ' on Pump Performance of Difference Between Predicted and Actual System Curve
(See Chapter 10, 1664 Guide And Data Book cm effect of
pump location on hot water heating systems.) , .
...
. In open and dosed systems, the quality of the fluid reaching -
the pump has a direct bearing on overall performance and life
expectancy. Vortexing-and air pick-up at toe sump in.open
systems, and circulation of entrained, air or gases in dosed
systems, must be eliminated.- Adequate sump depth and rise,
prevent vortering, and also keep.the suction-pipe entrance
velocity below 3 fpal. Furthermore, the low-velodty areas in
closed systems should be used to eliminate air. It is especially
helpful if the velocity in the separating area does not exceed
one-half feet per second. Commercial dip..tubes and low-
velocity separators are furnished by some manufacturers as
packaged equipment.
MOTIVE POWER
Electrically-driven centrifugal pumps are called" closecoupled when toe impeller is mounted directly on the motor shaft, and long-coupled when the pump shaft is connected to the motor by a flexible coupling, or is belt driven. Due to the
amount of starting torque required on centrifugal pumps driven by squirrel-cage induction motors, acrosa-theline starting is usually employed with proper phase protection and switching. This applies especially to boiler feed-pumps, condensate pumps, circulating pumps, and tower pumps. For hazardous pump locations, such as wet pits, pits subject to flooding, or the accumulation of combustible gases, special motors are available. Unless otherwise specified, open, dripproof motors are supplied by the pump manufacturer, but
BLOW DOWN
PUMP. SELECTION AND INSTALLATION
Selection. Where noise or vibration generation must be kept
at a minimum, it is essential that the pump be suited to the
hydraulic characteristics of the system and be accurately se
lected in order to operate without cavitation. Vibrations and
unbalance become more critical with increasing speeds. There
fore, a low-speed pump will operate in most cases more quietly
than a pump of the
bead and capacity at higher speeds.
Sleeve-bearing motors are considered quieter in operation than
ball-bearing motors. Close-coupled pumps are generally not
used when sound control is important because the motor
noise cannot be isolated and consequently, any noise'gener
ated will pass directly into the system. In toe case of long-
coupled pumps, where a coupling separates the motor from the
pump shaft, the motor can be isolated from the building
structure by mounting it on resilient supports. Some motor
manufacturers supply resilient mounting for motors, up to
10 hp. Specially designed quiet motors are available above that
limit.
The selection of the proper pump, speed, and motor combi
nation is more effective in eliminating system noise than the
installation of pipe isolators which are useful, however, in some
cases. Sleeve-bearing motors and pumps generally are re
stricted to a speed of 1740 rpm.
In systems having highly varying leads, use of pumps with
nonoverloading motors is recommended. Nonoverloading
motors are sized to provide adequate power at any point of
the pump curve. If operating conditions can be accurately
predicted, a motor can be selected specifically for the power
required. In this case the selected motor will often be smaller
than the motor originally provided.
Pumps for handling liquids of medium temperatures have
special seals and bearing lubricants. High-temperature
pumps for liquids above 325 F have special pump construction
and materials. The bearings and seal areas are water-cooled.
Medium-temperature installations sometimes include a
high-temperature pump. Packing gland or stuffing box pumps /
are also used for high-temperature liquids, but must then also
be water-cooled. However, in order to keep the high-temper
ature installation as free of water losses as possible, special
mechanical seal pumps are somewhat more popular. (See
Chapter 12,1964 Guide And Data Book.)
Installation. Pump suction and discharge piping connec
tions are not necessarily of the same size as the system leading
to or from the pump, but changes in system piping to fit the
pump connections should be as close to the pump as possible.
Suction and discharge piping must be supported, so that when
the flange bolts are tightened, no strain will be transmitted
to the pump.
Close-coupled centrifugal pumps, because of the nature of
their derign, are properly aligned throughout their life with