In this work, a modification and a generalization of the “Italian-Storage method” (ISM), a renowned method for sizing rainstorm drainage systems, are proposed and applied. The approach adopts a steady non-linear rainfall-runoff transformation probabilistic model within a “variational” or “maximizing” procedure. In this model, the transformation of rainfall in “excess (or effective) rainfall” is accomplished by means of the Rational Method, while the travel time is neglected. The flow within each link of the system, induced by a rectangular shaped discharge hydrograph for any rainfall duration, is assumed to be unsteady but locally uniform (Kinematic modeling). Combining the hydrological and hydraulic sub-models, and considering differ...
In the engineering practice routing reservoir sizing is commonly performed by using the design storm...
The sizing of the stormwater reservoir, as the design of its properties, usually requires simulation...
The authors acknowledge the publisher in granting permission for making post-print version available...
In this work, a modification and a generalization of the “Italian-Storage method” (ISM), a renowned ...
In this work, a modification and a generalization of the “Italian-Storage method” (ISM), a renowned ...
During a rainstorm, urban drainage systems channel the storm water to locations where the water can ...
A generalized package of hydrologic and hydraulic models and programs is developed for the quantitat...
Sustainable Urban Drainage Systems (SUDS) include strategies and solutions for distributed stormwate...
In the paper, a procedure is shown for the optimal design of both wastewater and rainstorm drainage ...
A novel approach is presented to evaluate the maximum flow discharges and depths in drainage network...
Temporal and spatial variability of rainfalls have a significant impact on the operation of urban dr...
Increasing public concern on urban storm water quantity and quality problems demands a thorough revi...
This study presents a deterministic, lumped model to simulate mesoscale sustainable drainage systems...
Extreme rainstorm is a main factor to cause urban floods when urban drainage system cannot discharge...
A simplified stormwater management model has been created to provide an inexpensive, flexible tool f...
In the engineering practice routing reservoir sizing is commonly performed by using the design storm...
The sizing of the stormwater reservoir, as the design of its properties, usually requires simulation...
The authors acknowledge the publisher in granting permission for making post-print version available...
In this work, a modification and a generalization of the “Italian-Storage method” (ISM), a renowned ...
In this work, a modification and a generalization of the “Italian-Storage method” (ISM), a renowned ...
During a rainstorm, urban drainage systems channel the storm water to locations where the water can ...
A generalized package of hydrologic and hydraulic models and programs is developed for the quantitat...
Sustainable Urban Drainage Systems (SUDS) include strategies and solutions for distributed stormwate...
In the paper, a procedure is shown for the optimal design of both wastewater and rainstorm drainage ...
A novel approach is presented to evaluate the maximum flow discharges and depths in drainage network...
Temporal and spatial variability of rainfalls have a significant impact on the operation of urban dr...
Increasing public concern on urban storm water quantity and quality problems demands a thorough revi...
This study presents a deterministic, lumped model to simulate mesoscale sustainable drainage systems...
Extreme rainstorm is a main factor to cause urban floods when urban drainage system cannot discharge...
A simplified stormwater management model has been created to provide an inexpensive, flexible tool f...
In the engineering practice routing reservoir sizing is commonly performed by using the design storm...
The sizing of the stormwater reservoir, as the design of its properties, usually requires simulation...
The authors acknowledge the publisher in granting permission for making post-print version available...