Scientific American Supplement, No. 821, September 26, 1891Various
Science
Scientific American Supplement, No. 821, September 26, 1891
Various
Science -- Periodicals
_Auxiliary Supply of Fresh Water_.--Intimately associated with the feed
is the means adopted for making up the losses of fresh water due to
leakage of steam from safety valves, glands, joints, etc., and of water
discharged from the air pumps. A few years ago this loss was regularly
made up from the sea, with the result that the water in the boilers was
gradually increased in density; whence followed deposit on the internal
surfaces, and consequent loss of efficiency, and danger of accident
through overheating the plates. With the higher pressures now adopted,
the danger arising from overheating is much more serious, and the
necessity is absolute of maintaining the heating surfaces free from
deposit. This can be done only by filling the boiler with fresh water in
the first instance, and maintaining it in that condition. To do this two
methods are adopted, either separately or in conjunction. Either a
reserve supply of fresh water is carried in tanks or the supplementary
feed is distilled from sea water by special apparatus provided for the
purpose. In the construction of the distilling or evaporating apparatus
advantage has been taken of two important physical facts, namely, that,
if water be heated to a temperature higher than that corresponding with
the pressure on its surface, evaporation will take place; and that the
passage of heat from steam at one side of a plate to water at the other
is very rapid. In practice the distillation is effected by passing
steam, say from the first receiver, through a nest of tubes inside a
still or evaporator, of which the steam space is connected either with
the second receiver or with the condenser. The temperature of the steam
inside the tubes being higher than that of the steam either in the
second receiver or in the condenser, the result is that the water inside
the still is evaporated, and passes with the rest of the steam into the
condenser, where it is condensed, and serves to make up the loss. This
plan localizes the trouble of deposit, and frees it from its dangerous
character, because an evaporator cannot become overheated like a boiler,
even though it be neglected until it salts up solid; and if the same
precautions are taken in working the evaporator which used to be adopted
with low pressure boilers when they were fed with salt water, no serious
trouble should result. When the tubes do become incrusted with deposit,
they can be either withdrawn or exposed, as the apparatus is generally
so arranged; and they can then be cleaned.
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