Sewerage and Sewage TreatmentBabbitt, Harold E. (Harold Eaton)
History
Sewerage and Sewage Treatment
Babbitt, Harold E. (Harold Eaton)
Sewage disposal; Sewerage
=48. Slope and Diameter of Sewers.=—After the quantity of sewage to be
carried has been determined, and the profile of the ground surface has
been drawn, it is possible to determine the slope and diameter of the
sewer. A table such as No. 20 is made up somewhat similar to No. 19, or
which may be an extension of Table 19 since the first 6 columns in both
tables are the same. The elevation of the surface at the upper and lower
manholes is read from the profile.
The depth of the sewer below the ground surface is first determined.
Sewers should be sufficiently deep to drain cellars of ordinary depth.
In residential districts cellars are seldom more than 5 feet below the
ground surface. To this depth must be added the drop necessary for the
grade of the house sewer. Six-inch pipe laid on a minimum grade of 1.67
per cent is a common size and slope restriction for house drains or
sewers. An additional 12 inches should be allowed for the bends in the
pipe and the depth of the pipe under the cellar floor. Where the
elevation of the street and lots is about the same, and the street is
not over 80 feet in width between property lines, a minimum depth of 8
feet to the invert of sewers, 24 inches or less in diameter is
satisfactory. This is on the assumption that the axes of the house drain
and the sewer intersect. For larger pipes the depth should be increased
so that when the street sewer is flowing full, sewage will not back up
into the cellars or for any great distance into the tributary pipes.
[Illustration:
FIG. 26.—Typical Profile Used in the Design of a Separate Sewer
System.
]
The grade or slope at which a sewer shall be may be fixed by: the slope
of the ground surface; the minimum permissible self-cleansing velocity;
a combination of diameter, velocity, and quantity; or the maximum
permissible velocity of flow. Sewers are laid either parallel to the
ground surface where the slope is sufficient or where possible without
coming too near the surface they are laid on a flatter grade to avoid
unnecessary excavation. The minimum permissible slope is fixed by the
minimum permissible velocity.
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