Copyright © 2008 ASCEThis paper will examine the increase in pipe roughness with time that can occur from biofilm build up in raw water, treated water and sewage pumping mains. Various methods exist which accurately predict the diameter of the pipe and the size of the pump needed for the most optimum and cost effective system. These methods use a specific range of pipe friction factors and it is assumed that this friction factor will represent the system roughness over the design lifetime of the system. However, pipes systems are subject to changes over time which can adversely affect performance and cause the system to run inefficiently. One of these changes is the build up of biological growth in the pipes and is most prevalent in systems...
It is well known how wastewater creates biofilm in pipes. Wastewater contains many microorganisms an...
The aim of this study was to investigate the combined impact of flow hydrodynamics and pipe material...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]GEUSI [Departement_IRSTEA]Eaux [TR1_IRSTEA]GEUSIInternational a...
The unpredictable impact of biofilms on friction in pipes causes difficulty in accurately designing ...
Pipeline distribution systems account for the vast majority of the physical infrastructure in the wa...
ABSTRACT: The hydraulic resistance of pipes with biofilm surface coatings can be difficult to predic...
The hydraulic performance of pipelines can be significantly affected by the presence of biological g...
The hydraulic performance of pipelines can be significantly affected by the presence of biological g...
Hydraulic conduits are vulnerable to deterioration in their carrying capacity over time due to biof...
Hydraulic conduits are susceptible to deterioration in their carrying capacity over time due to biol...
This paper aims at improving the current understanding of bacterial-based biofouling in drainage pip...
Pipeline distribution systems account for the vast majority of the physical infrastructure in the wa...
Biofilm formation and removal from dead-ends is a particularly difficult and understudied area of wa...
It is well known how wastewater creates biofilm in pipes. Wastewater contains many microorganisms an...
The aim of this study was to investigate the combined impact of flow hydrodynamics and pipe material...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]GEUSI [Departement_IRSTEA]Eaux [TR1_IRSTEA]GEUSIInternational a...
The unpredictable impact of biofilms on friction in pipes causes difficulty in accurately designing ...
Pipeline distribution systems account for the vast majority of the physical infrastructure in the wa...
ABSTRACT: The hydraulic resistance of pipes with biofilm surface coatings can be difficult to predic...
The hydraulic performance of pipelines can be significantly affected by the presence of biological g...
The hydraulic performance of pipelines can be significantly affected by the presence of biological g...
Hydraulic conduits are vulnerable to deterioration in their carrying capacity over time due to biof...
Hydraulic conduits are susceptible to deterioration in their carrying capacity over time due to biol...
This paper aims at improving the current understanding of bacterial-based biofouling in drainage pip...
Pipeline distribution systems account for the vast majority of the physical infrastructure in the wa...
Biofilm formation and removal from dead-ends is a particularly difficult and understudied area of wa...
It is well known how wastewater creates biofilm in pipes. Wastewater contains many microorganisms an...
The aim of this study was to investigate the combined impact of flow hydrodynamics and pipe material...
[Departement_IRSTEA]Eaux [TR1_IRSTEA]GEUSI [Departement_IRSTEA]Eaux [TR1_IRSTEA]GEUSIInternational a...