Sewerage and Sewage TreatmentBabbitt, Harold E. (Harold Eaton)
History
Sewerage and Sewage Treatment
Babbitt, Harold E. (Harold Eaton)
Sewage disposal; Sewerage
in which _I_ is the moment of inertia to be employed, _I_{c}_ is the
moment of inertia of the concrete, _I_{s}_ is the moment of inertia of
the steel, and _n_ is the ratio of their moduli of elasticity, generally
taken as 15. All of the moments of inertia are referred to the neutral
axis of the beam. The reinforcement called for in precast circular pipes
is given in Table 39. Sewers cast in place are ordinarily designed to
avoid reinforcement, except where the depth of cover is small and the
sewer may be subjected to superimposed loads.
Concrete sewers are sometimes reinforced longitudinally, with expansion
joints from 30 to 50 feet apart. This reinforcement is to reduce the
size of expansion and contraction cracks by distributing them over the
length of a section. The pipe is divided into sections to concentrate
motion due to expansion or contraction at definite points where it can
be cared for.
The amount of longitudinal reinforcement to be used is a matter of
judgment. It varies in practice from 0.1 to 0.4 per cent of the area of
the section. Since the coefficients of expansion of concrete and of
steel are nearly the same, movements of the structure are as important
as the stresses due to changes in temperature.
Because of the uncertain and difficult conditions under which concrete
sewers are frequently constructed it is advisable to specify the best
grade of concrete and not to stress the concrete over 450 pounds per
square inch in compression, with no allowable stress in tension. The
concrete covering of reinforcing steel should be thicker than is
ordinarily used for concrete building design, because of the possibility
of poor concrete allowing the sewage to gain access to the steel,
resulting in more rapid deterioration than would be caused by exposure
to the atmosphere. A minimum covering of about 2 inches is advisable,
except in very thin sections not in contact with the sewage. A minimum
thickness of concrete of about 9 inches is frequently used in design,
although crown thicknesses of 4½ inches have been used with success.
Greater thicknesses should be used near the surface, particularly in
locations subjected to heavy or moving loads.
Brick linings are often provided for the invert where moderately high
velocities of about 10 feet per second when flowing full are to be
expected. For velocities in the neighborhood of 20 feet per second the
invert should be lined with the best quality vitrified brick. Although
concrete may erode no faster than brick under the same conditions, brick
linings are more easily replaced and at a smaller expense.
CHAPTER X
CONTRACTS AND SPECIFICATIONS
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