Several cities of India were developed in the colonial era and provided with a combined system for sanitation and disposal of storm run-off. Further extension of the sanitation infrastructure had to involve a combined system in order to be consistent or address other constraints, generally congestion. For example, Kolkata receives > 1600 mm of average yearly rainfall, mostly from July to September. Storm run-off from any catchment is estimated to be about 80 to 120 times the corresponding sewage flow. Hence, only a small portion of the conduit's capacity is used during the dry period constituting the majority of the time (nine months). This paper summarises the rationale behind the general hydraulic design philosophy pertaining to the expansion of such a combined sewerage system. The approach uses differential values of Manning's coefficient (n) dependent on flow depth and restricts adoption of the qactual/Qfull ratio to 1·0 to address potential surcharge condition. A reasonable and approximate procedure of hydraulic design using a circular conduit is described thereafter utilising basic design charts and simple logic functions. Lastly, a set of design evaluation parameters are suggested for comparison and optimisation of such hydraulic design. These parameters, once calculated for similar designs, can be mutually compared and used as indicators to assess the level of optimisation achieved in any particular design.
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December 2013
Research Article|
August 30 2013
Hydraulic design and engineering aspects of combined sewers
Ayanangshu Dey, PhD, CEng, MICE, MASCE, MIWA
Ayanangshu Dey, PhD, CEng, MICE, MASCE, MIWA
Partner, AND Engineers & Associates, Kolkata, India
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Publisher: Emerald Publishing
Received:
October 12 2012
Accepted:
February 11 2013
Online ISSN: 1751-7699
Print ISSN: 0965-0903
ICE Publishing: All rights reserved
2013
Proceedings of the Institution of Civil Engineers - Municipal Engineer (2013) 166 (4): 216–229.
Article history
Received:
October 12 2012
Accepted:
February 11 2013
Citation
Dey A (2013), "Hydraulic design and engineering aspects of combined sewers". Proceedings of the Institution of Civil Engineers - Municipal Engineer, Vol. 166 No. 4 pp. 216–229, doi: https://doi.org/10.1680/muen.12.00055
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