Water Supply Network District Metering: Theory and Case Study: CISM International Centre for Mechanical Sciences, cartea 543
Autor Armando Di Nardo, Michele Di Natale, Anna Di Mauroen Limba Engleză Paperback – 14 dec 2014
However, the water network partitioning may compromise water system performance, since some pipes are usually closed to delimit districts in order not to have too many metering stations, to decrease costs and simplify water balance. This may reduce the reliability of the whole system and not guarantee the delivery of water at the different network nodes. In practical applications, the design of districts or sectors is generally based on empirical approaches or on limited field experiences.
The book proposes a design support methodology, based on graph theory principles and tested on real case study. The described methodology can help water utilities, professionals and researchers to define the optimal districts or sectors of a water supply network.
Toate formatele și edițiile | Preț | Express |
---|---|---|
Paperback (1) | 607.22 lei 6-8 săpt. | |
SPRINGER VIENNA – 14 dec 2014 | 607.22 lei 6-8 săpt. | |
Hardback (1) | 613.81 lei 6-8 săpt. | |
SPRINGER VIENNA – 8 noi 2012 | 613.81 lei 6-8 săpt. |
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Specificații
ISBN-13: 9783709117545
ISBN-10: 3709117542
Pagini: 104
Ilustrații: X, 94 p.
Dimensiuni: 155 x 235 x 5 mm
Greutate: 0.16 kg
Ediția:2013
Editura: SPRINGER VIENNA
Colecția Springer
Seria CISM International Centre for Mechanical Sciences
Locul publicării:Vienna, Austria
ISBN-10: 3709117542
Pagini: 104
Ilustrații: X, 94 p.
Dimensiuni: 155 x 235 x 5 mm
Greutate: 0.16 kg
Ediția:2013
Editura: SPRINGER VIENNA
Colecția Springer
Seria CISM International Centre for Mechanical Sciences
Locul publicării:Vienna, Austria
Public țintă
ResearchCuprins
Water leakage management.- Water district metering policy and practice.- Design support methodology.- Case study: Monterusciello network.- Conclusion.
Textul de pe ultima copertă
The management of a water supply network can be substantially improved defining permanent sectors or districts that enhances simpler water loss detection and pressure management.
However, the water network partitioning may compromise water system performance, since some pipes are usually closed to delimit districts in order not to have too many metering stations, to decrease costs and simplify water balance. This may reduce the reliability of the whole system and not guarantee the delivery of water at the different network nodes. In practical applications, the design of districts or sectors is generally based on empirical approaches or on limited field experiences.
The book proposes a design support methodology, based on graph theory principles and tested on real case study. The described methodology can help water utilities, professionals and researchers to define the optimal districts or sectors of a water supply network.
However, the water network partitioning may compromise water system performance, since some pipes are usually closed to delimit districts in order not to have too many metering stations, to decrease costs and simplify water balance. This may reduce the reliability of the whole system and not guarantee the delivery of water at the different network nodes. In practical applications, the design of districts or sectors is generally based on empirical approaches or on limited field experiences.
The book proposes a design support methodology, based on graph theory principles and tested on real case study. The described methodology can help water utilities, professionals and researchers to define the optimal districts or sectors of a water supply network.
Caracteristici
Proposes the first automatic technique for water district partitioning of a water supply network Handbook for water utilities, professionals, and researchers The procedure described in the book is applied to a real case study