Network Topology and Rainfall Controls on the Variability of Combined Sewer Overflows and Loads

  • McGrath, Gavan
  • Kaeseberg, Thomas
  • Silva, Julian David Reyes
  • Jawitz, James W.
  • Blumensaat, Frank
  • ... Paik, Kyungrock
  • 외 4명
Citations

WEB OF SCIENCE

15
Citations

SCOPUS

15

초록

Water and pollutant fluxes from combined sewer overflows (CSO) have a significant impact on receiving waters. The random nature of rainfall forcing dominates the variability of sewer discharges, pollutant loads, and concentrations. An analytical model developed here shows how sewer network topology and rainfall properties variously impact the stochasticity of CSO functioning. Probability distributions of sewer discharge and concentration compare well with the results from a calibrated Storm Water Management Model in an application to a sewershed located in Dresden, Germany. The model is determined by only four parameters, three of which can be predicted a priori, two from the rainfall record and one from the network topology using geomorphological flow recession theory, while the fourth can be estimated from a short discharge time series. The sensitivity of CSO and wastewater treatment loads to network structure suggests simple topologies may be more vulnerable to poor performance. The analytical model is useful for evaluating various CSO management strategies to reduce adverse impacts on receiving waters in a probabilistic setting.

키워드

Combined SewerRainfallTopologyStochasticAmmoniaFlow recessionCLIMATE-CHANGEURBAN SEWERWASTE-WATERRIVERMODELSTREAMFLOWRECESSIONPOLLUTIONDRAINAGEIMPACTS
제목
Network Topology and Rainfall Controls on the Variability of Combined Sewer Overflows and Loads
저자
McGrath, GavanKaeseberg, ThomasSilva, Julian David ReyesJawitz, James W.Blumensaat, FrankBorchardt, DietrichMellander, Per-ErikPaik, KyungrockKrebs, PeterRao, P. Suresh C.
DOI
10.1029/2019WR025336
발행일
2019-11
유형
Article
저널명
Water Resources Research
55
11
페이지
9578 ~ 9591