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Centrifugal Pumps Design and Application 2nd ed - Val S. Lobanoff, Robert R. Ross (Butterworth-Heinemann, 1992)

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Mechanical Seals 367<br />

Figure 17-7. Balanc<strong>ed</strong> seal heat generation (courtesy of John Crane).<br />

tion of a heat exchanger or abrasive separator when requir<strong>ed</strong> (Figure 17-<br />

9). Another method of supplying additional cooling to a stuffing box is<br />

shown in Figure 17-10. This seal is equipp<strong>ed</strong> with a pumping ring <strong>and</strong><br />

heat exchanger. The pumping ring acts like a pump, causing liquid to<br />

flow through the stuffing box. Liquid is mov<strong>ed</strong> out the top of the stuffing<br />

box <strong>and</strong> through the heat exchanger, returning directly to the faces at an<br />

inlet at the bottom of the end plate. As liquid is circulat<strong>ed</strong>, heat is remov<strong>ed</strong><br />

at the seal <strong>and</strong> stuffing box. This is an extremely efficient method<br />

of removing heat because the coolant circulat<strong>ed</strong> is only in the stuffing<br />

box <strong>and</strong> does not r<strong>ed</strong>uce the temperature of the liquid in the pump. A<br />

clos<strong>ed</strong> loop system such as this is commonly us<strong>ed</strong> on hot water pumps.<br />

For double seal installations, the heat load for each seal must be consider<strong>ed</strong>,<br />

as well as the heat soak from the process. The flow of coolant<br />

can be achiev<strong>ed</strong> through the use of an external circuit with a small pump.

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