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Instrumentation and Measurement Technologies for Water Cycle Management: Springer Water

Editat de Anna Di Mauro, Andrea Scozzari, Francesco Soldovieri
en Limba Engleză Paperback – 24 noi 2023
This book aims at presenting a unified framework for the description of working principles, recent advances and applications of cutting-edge measurement technologies for the water sector. Instrumentation and measurement technologies are currently playing a key role in the monitoring, assessment and protection of environmental resources. Measurement techniques and sensing methods for the observation of water systems are rapidly evolving and are requiring an increased multi-disciplinary participation.
The whole water sector is characterised by multiple technological contexts concerning the monitoring of the resource, given the broad coverage that includes water from its natural domains to the men-made infrastructures. In particular, instrumentation and measurement technologies have a pervasive presence in all the necessary aspects for the assessment, monitoring and control of the water resource and of its relationship with the various environmental stressors, including the anthropic pressures.

Therefore, the book aims at presenting how the diagnostics/monitoring methodologies and the related technologies can give an answer to the issues raised by the complex scenario characterising the water cycle management (WCM). The book is structured in five topical sections, grouped by similarity of their technological and/or applicative contexts.
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Specificații

ISBN-13: 9783031082641
ISBN-10: 3031082648
Pagini: 599
Ilustrații: IX, 599 p. 250 illus., 213 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:1st ed. 2022
Editura: Springer International Publishing
Colecția Springer
Seria Springer Water

Locul publicării:Cham, Switzerland

Cuprins

Regional Adaptation of Water Quality Algorithms for Monitoring Inland Waters: Case Study from Irish Lakes.- Optical remote sensing in Lake Trasimeno: understanding from applications across diverse temporal, spectral and spatial scales.- Satellite instrumentation and technique for oil pollution monitoring of the seas.- Satellite instrumentation and technique for monitoring of seawater quality.- Inland Water altimetry: technological progress and applications.- Generic Strategy for Consistency Validation of the Satellite-, In-situ-, and Reanalysis - based Climate Data Records (CDRs) Essential Climate Variables (ECVs).- Optical spectroscopy for on line water monitoring.- Fiber optic technology for environmental monitoring: state of the art and application in the Observatory of transfers in the Vadose Zone- (O-ZNS).- Plants, vital players in the terrestrial water cycle.- Improving water quality and security with advanced sensors and indirect water sensing methods.

Notă biografică

Anna Di Mauro expertise is related to urban water demand modelling and management, digital water, hydroinformatics, data modelling and analysis of water big data, and innovative techniques and sensing solution to water monitoring at household and end-use levels. She obtained a PhD in Environment, Design and Innovation. Since 2010, she is a shareholder and founder of an academic spin-off Med.Hydro s.r.l. (Coastal and Hydraulic Engineering and Research).  Anna Di Mauro has been Responsible for the European Innovation Partnership on Water (EIP) Action Group CTRL+SWAN (Cloud Technologies & ReaL time monitoring + Smart WAter Network) (April 2014 to January 2021). From 2021, started her activities as technical responsible for the Water Europe Working Group WATER SEnsors & Tools (WATERSET).
Andrea Scozzari expertise is in the field of data and signal processing for the observation of the environment. He’s been co-organiser and committee memberof various water-related events in the MENA region, the most relevant output being the book “Water Security in the Mediterranean Region” published by Springer (2011). He holds University Master courses in the environmental remote sensing sector, and has been member of the PhD board in “Remote Sensing” at the University of Pisa (Italy) for six years.

Francesco Soldovieri is expert in radar imaging and integration with other diagnostics/sensing techniques of interest in environmental monitoring and protection. At present, Francesco Soldovieri is the president of the Division on “Geosciences Instrumentation and Data Systems (GI)” of European Geosciences Union (EGU). He has been Editor of the book “Sensing the Past” edited by Springer (2017). He has h-index 46 on Google Scholar.


Textul de pe ultima copertă

This book aims at presenting a unified framework for the description of working principles, recent advances and applications of cutting-edge measurement technologies for the water sector. Instrumentation and measurement technologies are currently playing a key role in the monitoring, assessment and protection of environmental resources. Measurement techniques and sensing methods for the observation of water systems are rapidly evolving and are requiring an increased multi-disciplinary participation.
The whole water sector is characterised by multiple technological contexts concerning the monitoring of the resource, given the broad coverage that includes water from its natural domains to the men-made infrastructures. In particular, instrumentation and measurement technologies have a pervasive presence in all the necessary aspects for the assessment, monitoring and control of the water resource and of its relationship with the various environmental stressors, including the anthropic pressures.
Therefore, the book aims at presenting how the diagnostics/monitoring methodologies and the related technologies can give an answer to the issues raised by the complex scenario characterising the water cycle management (WCM). The book is structured in five topical sections, grouped by similarity of their technological and/or applicative contexts.

Caracteristici

Represents an "entry point" for those who want to gain further knowledge on specific topics Permits to make the point about the current state-of-art Includes case studies that illustrate the relevance of the instrumentation and measurements in operative WCM scenarios