The filtration of public water-supplies: Third edition, revised and enlarged.Hazen, Allen
Science
The filtration of public water-supplies: Third edition, revised and enlarged.
Hazen, Allen
Filters and filtration; Water-supply
At London, on the other hand, the authorities consider a large storage
capacity for unfiltered water as one of the most important conditions
of successful filtration, the object however, being perhaps as much to
secure storage as to allow sedimentation. In 1893 thirty-nine places
were reported upon the Thames and the Lea which were giving their
sewage systematic treatment before discharging it into the streams
from which London’s water is drawn. These sewage treatments are, with
hardly an exception, dry-weather treatments, and as soon as there is
a considerable storm crude sewage is discharged into the rivers at
every point. The rivers are both short, and are quickly flooded, and
afterwards are soon back in their usual condition. At these times of
flood, the raw water is both very turbid and more polluted by sewage
than at other times, and it is the aim of the authorities to have the
water companies provide reservoir capacity enough to carry them through
times of flood without drawing any water whatever from the rivers. This
obviously involves much more extensive reservoirs than those used in
Germany, and the companies actually have large basins and are still
adding to them. The storage capacities of the various companies vary
from 3 to 18 times the respective average daily supplies, and together
equal 9 times the total supply.
In case the raw water is taken from a lake or a river at a point where
there is but little current, as in a natural or artificial pond,
sedimentation-basins are unnecessary. This is the case at Zürich (lake
water), at Berlin when the rivers Havel and Spree spread into lakes, at
Tegel and Müggel, and at numerous other works.
SIZE OF FILTER-BEDS.
The total area of filters required in any case is calculated from the
quantity of water required, the rate of filtration, and an allowance
for filters out of use while being cleaned. To prevent interruptions
of the supply at times of cleaning, the filtering area is divided into
beds which are operated separately, the number and size of the beds
depending upon local conditions. The cost per acre is decreased with
large beds on account of there being less wall or embankment required,
while, on the other hand, the convenience of operation may suffer,
especially in small works. It is also frequently urged that with large
filters it is difficult or impossible to get an even rate of filtration
over the entire area owing to the frictional resistance of the
underdrains for the more distant parts of the filter. A discussion of
this point is given in Chapter III, page 41. At Hamburg, where the size
of the single beds, 1.88 acres each, is larger than at any other place,
it is shown that there is no serious cause for anxiety; and even if
there were, the objectionable resistance could be still farther reduced
by a few changes in the under-drains. The sizes of filter-beds used at
a large number of places are given in Appendix IV.
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