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A gravity sewer is a conduit utilizing the energy resulting from a difference in elevation to remove unwanted water. The term sewer implies removal of or rather than water intended for use; Design and Construction of Sanitary and Storm Sewers(1970)p.1 and the term excludes water movement induced through or . Most sewers are gravity sewers because gravity offers reliable water movement with no energy costs wherever grades are favorable. Gravity sewers may drain to sumps where is required to either force sewage to a distant location or lift sewage to a higher elevation for entry into another gravity sewer, and are often required to lift sewage into sewage treatment plants. Gravity sewers can be either , , or .


Gravity sewer hydraulics
Gravity sewer systems typically resemble the regional runoff pattern with large trunk sewers in each valley receiving flow from smaller lateral sewers extending up hillsides. Sewer systems within comparatively level terrain require careful planning and construction to minimize energy losses in free falls, sharp bends, or turbulent junctions. Every reach of the sewer should routinely experience the minimum velocity necessary to maintain solids in suspension and avoid blockage from solids deposition in low-velocity areas. Sewers in hilly areas, however, may require energy dissipation features to avoid sewer damage from high fluid velocities and the scouring effects of gritty solids in . Covered sewers are buried below the to avoid freezing, and deep enough to receive gravity flow from anticipated wastewater sources. Design and Construction of Sanitary and Storm Sewers(1970)pp.119-127 Long gravity sewers may require significant excavation depths or tunneling to maintain acceptable gradients near the sewer outfall.


Pumping alternatives to gravity
Availability of reliable pumps allows lifting accumulations of water into gravity sewers from collection sumps in excavations like mines or building foundations, but the cost of pumping surface runoff discourages use of lift stations in storm drains or combined sewers. The capitalized cost of operation and maintenance of lift stations and emergency power supplies usually justifies considerable first cost for excavation or tunneling to build a gravity sewer. Design and Construction of Sanitary and Storm Sewers(1970)pp.287&288 is most efficient at centralized locations; and pumping is often required to lift sewage from lower elevations to the sewage treatment plant . Structures called regulators allow overflow into gravity outfall sewers when peak flow in combined sewers exceeds pumping capacity.Okun(1959)p.6 are preferred for cost-effective pumping of sewage when treatment is required. Gravity sewers are preferred where grades are favorable, but often move sewage to sewage treatment plants.

have a permanent negative pressure; due to improvements in technology, they have become more comparable to gravity sewers in operation and maintenance costs, and are cheaper to install.


History
The earliest sewers were to remove standing water from muddy locations where dry ground was preferable for human activity. Early sewers served a function similar to modern (sometimes called storm sewers.) evolved from the practice of using flow in early drainage ditches to remove other wastes including . Sewers became offensive as waste concentrations increased in communities with high population density. were installed to cover the offensive liquids. Prosperous communities used and to cover early sewers. pipes were used for low volume sewers.Steel&McGhee(1979)p.318 The portion of a sewer discharging into a natural water feature is called an .Abbett(1956)p.19-02


Improved sewer materials
The Industrial Revolution increased population density in manufacturing districts, and produced pipes useful for drain-waste-vent systems from buildings to sewers. Gravity sewers have been assembled from cast iron pipe, vitrified clay pipe, pipe, pipe, and .Steel&McGhee(1979)pp.331-347 While some older brickwork sewers remain in use, new sewers of diameters exceeding typically use reinforced concrete. pipe may be used for storm drains or wastewaters with similarly low risk of corrosive conditions. Design and Construction of Sanitary and Storm Sewers(1970)p.123 Non-circular cross-sections may have advantages for large-diameter sewers.Steel&McGhee(1979)pp.348-351


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