AbstractThe effect of demand uncertainty in water distribution systems (WDS) is a key problem, especially for water company assets. The presence or absence of demands, their number, size, and locations significantly affect the functioning of a pipe system and its response to a transient. The validity and the effectiveness of the Lagrangian model is firstly investigated by means of a comparison with a Method of Characteristics model in frictionless systems. Demands locations are stochastically varied to assess the impact of the uncertainty of the geometry of the network on transient propagation. A normal distribution has been used to model the uncertainty of demand location
AbstractIn this paper, the reliability of transients as a powerful tool in the management of real wa...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
AbstractA method of characteristics-based computational model of a straight reservoir/pipe/valve sys...
AbstractA method of characteristics-based computational model of a straight reservoir/pipe/valve sys...
AbstractThe use of water distribution network (WDN) models is an extended practice [13]. Confidence ...
Water distribution systems (WDS) are critical infrastructures that should be designed to work proper...
AbstractThe use of water distribution network (WDN) models is an extended practice [13]. Confidence ...
The use of water distribution network (WDN) models is an extended practice [13]. Confidence on decis...
There is a considerable amount of uncertainty associated with the design and operation of water dist...
There is a considerable amount of uncertainty associated with the design and operation of water dist...
AbstractTransient pressures occur in water distribution systems (WDS) and have the potential to caus...
The application of the reliability analysis techniques to the water distribution systems aims to pro...
AbstractThe common existence of pressure transients in operational water distribution systems (WDS) ...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
AbstractIn this paper, the reliability of transients as a powerful tool in the management of real wa...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
AbstractA method of characteristics-based computational model of a straight reservoir/pipe/valve sys...
AbstractA method of characteristics-based computational model of a straight reservoir/pipe/valve sys...
AbstractThe use of water distribution network (WDN) models is an extended practice [13]. Confidence ...
Water distribution systems (WDS) are critical infrastructures that should be designed to work proper...
AbstractThe use of water distribution network (WDN) models is an extended practice [13]. Confidence ...
The use of water distribution network (WDN) models is an extended practice [13]. Confidence on decis...
There is a considerable amount of uncertainty associated with the design and operation of water dist...
There is a considerable amount of uncertainty associated with the design and operation of water dist...
AbstractTransient pressures occur in water distribution systems (WDS) and have the potential to caus...
The application of the reliability analysis techniques to the water distribution systems aims to pro...
AbstractThe common existence of pressure transients in operational water distribution systems (WDS) ...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
AbstractIn this paper, the reliability of transients as a powerful tool in the management of real wa...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...
Demands are one of the most uncertain parameters in a water distribution network model. A good calib...