References
- R.M. Ashley, J.L. Bertrand-Krajewski, T. Hvitved-Jacobsen,
M. Verbanck, Solids in Sewers: Characteristics, Effects and
Control of Sewer Solids and Associated Pollutants, Scientific
and Technical Report No. 14, IWA Publishing, London, 2004.
- D. Laplace, Dynamique du dépôt en collecteur d’assainissement,
Thesis (Ph.D.), Institut National Polytechnique de Toulouse,
France, 1991.
- M. Verbanck, Field investigations on sediment occurrence and
behavior in Brussels combined sewers, Water Sci. Technol.,
25 (1992) 71–82.
- J.-L. Bertrand-Krajewski, J.-P. Bardin, C. Gibello, Long term
monitoring of sewer sediment accumulation and flushing
experiments in a man-entry sewer, Water Sci. Technol., 54 (2006)
109–117.
- A. Campisano, E. Creaco, C. Modica, Experimental and
numerical analysis of the scouring effects of flushing waves on
sediment deposits, J. Hydrol., 299 (2004) 324–344.
- E. Creaco, J.-L. Bertrand-Krajewski, Numerical simulation
of flushing effect on sewer sediments and comparison of
four sediment transport formulas, J. Hydraul. Res., 47 (2009)
195–202.
- R.W. Crabtree, Sediments in sewers, Water Environ. J., 3 (1989)
569–578.
- M. Verbanck, Sewer sediment and its relation with the quality
characteristics of combined sewer flows, Water Sci. Technol.,
22 (1990) 247–257.
- G. Chebbo, A. Bachoc, Characterization of suspended solids in
urban wet weather discharges. Water Sci. Technol., 25 (1992)
171–179.
- I. Ebtehaj, H. Bonakdari, Evaluation of sediment transport in
sewer using artificial neural network, Eng. Appl. Comput. Fluid
Mech., 7 (2013) 382–392.
- M. Kuśnierz, P. Wiercik, Analysis of particle size and fractal
dimensions of suspensions contained in raw sewage, treated
sewage and activated sludge, Arch. Environ. Prot., 42 (2016)
67–76.
- M. Lepot, T. Pouzol, X. Aldea Borruel, D. Suner, J.-L. Bertrand-
Krajewski, Measurement of sewer sediments with acoustic
technology: from laboratory to field experiments, Urban
Water J., 14 (2017) 369–377.
- W. Baosheng, A. Molinas, P.Y. Julien, Bed-material load
computations for nonuniform sediments, J. Hydraul. Eng.,
130 (2004) 1002–1012.
- S. Todeschini, C. Ciaponi, S. Papiri, Laboratory experiments
and numerical modelling of the scouring effects of flushing
waves on sediment beds, Eng. Appl. Comput. Fluid Mech.,
4 (2010) 365–373.
- S.J. Tai, A. Marion, G. Camuffo, Effect of environmental
conditions on the erosional resistance of cohesive sediment
deposits in sewers, Water Sci. Technol., 47 (2003) 27–34.
- R. Banasiak, R. Verhoeven, R. De Sutter, S. Tait, The erosion
behavior of biologically active sewer sediment deposits:
observations from a laboratory study, Water Res., 39 (2005)
5221–5231.
- A. Schellart, R. Veldkamp, M. Klootwijk, F. Clemens, S. Tait,
R. Ashley, C. Howes, Detailed observation and measurement of
sewer sediment erosion under aerobic and anaerobic conditions,
Water Sci. Technol., 52 (2005) 137–146.
- I. Seco, M. Gómez Valentín, A. Schellart, S. Tait, Erosion
resistance and behavior of highly organic in-sewer sediment,
Water Sci. Technol., 69 (2014) 672–679.
- M. Regueiro-Picallo, J. Anta, J. Suárez, J. Puertas, A. Jácome,
J. Naves, Characterisation of sediments during transport of
solids in circular sewer pipes, Water Sci. Technol., 1 (2017) 8–15.
- J.-L. Bertrand-Krajewski, Modelling of Sewer Solids Production
and Transport. Cours de DEA ‘Hydrologie Urbaine’, Transport.
INSA de Lyon, Lyon, France, 2006.
- P.J. Skipworth, S.J. Tait, A.J. Saul, Erosion of sediment beds
in sewers: model development, J. Environ. Eng., 125 (1999)
566–573.
- R. De Sutter, P. Rushforth, S. Tait, M. Huygens, R. Verhoeven,
A. Saul, Validation of existing bed load transport formulas
using in-sewer sediment, J. Hydraul. Eng., 129 (2003) 325–333.
- P.J. Rushforth, S.J. Tait, A.J. Saul, Modeling the erosion
of mixtures of organic and granular in-sewer sediments,
J. Hydraul. Eng., 129 (2003) 308–315.
- R. Banasiak, R. Verhoeven, Transport of sand and partly cohesive
sediments in a circular pipe run partially full, J. Hydraul. Eng.,
134 (2008) 216–224.
- M. Rammal, G. Chebbo, J. Vazquez, C. Joannis, Do storm
event samples bias the comparison between sewer deposits
contribution?, Water Sci. Technol., 75 (2017) 271–280.
- J.R. Richardson, W.N. Zaki, Sedimentation and fluidisation:
Part I, Trans. Inst. Chem. Eng., 32 (1954) 35–53.
- W.H. Graf, E.R. Acaroglu, Sediment transport in conveyance
systems (part 1), Bull. Int. Assoc. Sci. Hydrol., 13 (1968) 20–39.
- H.A. Einstein, The Bed Load Function for Sediment Transport
in Open Channel Flows, Technical Bulletin No. 1026,
U.S. Department of Agriculture, Soil Conservation Service,
Washington, D.C., USA, 1950.
- S. Dey, Fluvial Hydrodynamics; Hydrodynamic and Sediment
Transport Phenomena, Springer, Heidelberg, New York,
Dordrecht, London, 2014, pp. 418–419.