№7|2019

DESIGNING WASTEWATER SYSTEMS

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UDC 628.2/.3

Shuvalov M. V.

System analysis of the evolution of designing sanitation systems for communities (to be discussed)

Summary

To get a whole picture of the evolution of wastewater disposal technologies for settlements and to study the conditionality of their development subject to the influence of specific demands of socio-historical practice, as well as to predict and plan further improvement of technologies, the sanitation system of a settlement should be considered as a set of interrelated components – suit of technologies: wastewater collection, disposal (or transportation); wastewater and sludge treatment, utilization of wastewater components, landfilling wastewater components (including effluent discharge into water bodies). The topological model of the structure of a sanitation system of a settlement is displayed using a graph. In the proposed graph model five vertices (components of the sanitation system structure) and numerous arcs (connection of components) are taken. The proposed topological model provides for analyzing a sanitation system of a real settlement and modeling to solve optimization problems and determine possible trends of its development.

Key words

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REFERENCES

  1. Shuvalov M. V. [Dialectics of theoretical, methodological and regulatory frameworks used for the design of sanitation systems for settlements]. Gradostroitel’stvo i Arkhitektura, 2018, v. 8, no. 2, pp. 35–45. (In Russian).
  2. Kofman V. Ia. [Emerging contaminants in water environment: international studies]. Vodosnabzhenie i Sanitarnaia Tekhnika, 2018, no. 3, pp. 46–53. (In Russian).
  3. Bitner I. I. Raznoobraznye sistemy ustroystva vygrebov otkho­zhikh mest i priborov, zamenyayushchikh vygreby [Diffe­rent designs of cesspits and substitutive devices. (A separate reprint from «Inzhenernyi Zhurnal» Journal, 1892, no. 10, 11, 12). Saint-Peterburg, V. A. Tikhanov’s Print Shop and Lithography, 1892, 132 p.].
  4. Golovetskii R. F. Mediko-sanitarnyi obzor morskoi kazarmy na Okhte i nadstroennoi chasti Kriukovskoi kazarmy s vkliu­cheniem opisaniia pechi dlia szhiganiia chelovecheskikh izverzhenii, tsentral’nogo paro-pesochnogo otopleniia, ventiliatsii i prochego [Medical-sanitary review of the naval barrack on the Okhta and of the built-over section of the Kriukovskaia barrack including a description of the combustor for incinerating human excreta, central steam-sand heating system, ventilation etc. Saint-Peterburg, Print Shop of the Naval Ministry in the Main Admiralty, 1900, 49 p.].
  5. Fedorov Е. Udalenie nechistot iz gorodov i naselennykh mest [Disposal of sewage in cities and settlements. Kazan, Print Shop of the Provincial Government, 1884, 27 p.].
  6. Fedorov E. Razdelitel’naia sistema inzhenera E.Fedorova [Separation system of engineer E.Fedorov]. Saint-Peterburg, Print Shop of E. Arnold, 1893, 14 p.].
  7. Zeeman G., Kujawa K., de Mes T., Hernandez L., de Graaf M., Abu-Ghunm L., et al. Anaerobic treatment as a core technology for energy, nutrients and water reco­very from source-separated domestic waste (water). Water Science & Technology, 2008, v. 57, no. 8. pp. 1207–1212.
  8. Lüthi C., Panesar A., Schütze T., Norström A., McConville J., Parkinson J., Saywell D., Ingle R. Sustainable sanitation in cities: A framework for action. Rijsijk, Papiroz Publishing House, 2011, 65 p. (www.papiroz.com).
  9. Shoa T. Z., Barjenbruch M., Wriege-Bechtold A. Source separation technologies, opportunities for sustainable wastewater management. European Water, 2017, no. 58, pp. 111–117.

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