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Resilience of large water management...
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Hossain, Faisal.
Resilience of large water management infrastructuresolutions from modern atmospheric science /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Resilience of large water management infrastructureedited by Faisal Hossain.
其他題名:
solutions from modern atmospheric science /
其他作者:
Hossain, Faisal.
出版者:
Cham :Springer International Publishing :2020.
面頁冊數:
xv, 124 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer eBooks
標題:
Water-supply engineering.
電子資源:
https://doi.org/10.1007/978-3-030-26432-1
ISBN:
9783030264321$q(electronic bk.)
Resilience of large water management infrastructuresolutions from modern atmospheric science /
Resilience of large water management infrastructure
solutions from modern atmospheric science /[electronic resource] :edited by Faisal Hossain. - Cham :Springer International Publishing :2020. - xv, 124 p. :ill. (some col.), digital ;24 cm.
Chapter 1. Resilience Of Large Water Management Infrastructure -- Chapter 2. Survey Of Water Managers For 21st Century Challenges -- Chapter 3. Current Approaches For Resilience Assessment -- Chapter 4. Application Of Numerical Atmospheric Models -- Chapter 5. Infrastructure-Relevant Storms Of The Last Century -- Chapter 6. Sensitivity Of Probable Maximum Precipitation (PMP) -- Chapter 7. A Recommended Paradigm Shift In The Approach To Risks To Large Water Infrastructure In The Coming Decades -- Chapter 8. Safety Design of Water Infrastructures In A Modern Era.
Infrastructure that manages our water resources (such as, dams and reservoirs, irrigation systems, channels, navigation waterways, water and wastewater treatment facilities, storm drainage systems, urban water distribution and sanitation systems), are critical to all sectors of an economy. Realizing the importance of water infrastructures, efforts have already begun on understanding the sustainability and resilience of such systems under changing conditions expected in the future. The goal of this collected work is to raise awareness among civil engineers of the various implications of landscape change and non-climate drivers on the resilience of water management infrastructure. It identifies the knowledge gaps and then provides effective and complementary approaches to assimilate knowledge discovery on local (mesoscale)-to-regional landscape drivers to improve practices on design, operations and preservation of large water infrastructure systems.
ISBN: 9783030264321$q(electronic bk.)
Standard No.: 10.1007/978-3-030-26432-1doiSubjects--Topical Terms:
190580
Water-supply engineering.
LC Class. No.: TC405 / .R47 2020
Dewey Class. No.: 333.91
Resilience of large water management infrastructuresolutions from modern atmospheric science /
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Chapter 1. Resilience Of Large Water Management Infrastructure -- Chapter 2. Survey Of Water Managers For 21st Century Challenges -- Chapter 3. Current Approaches For Resilience Assessment -- Chapter 4. Application Of Numerical Atmospheric Models -- Chapter 5. Infrastructure-Relevant Storms Of The Last Century -- Chapter 6. Sensitivity Of Probable Maximum Precipitation (PMP) -- Chapter 7. A Recommended Paradigm Shift In The Approach To Risks To Large Water Infrastructure In The Coming Decades -- Chapter 8. Safety Design of Water Infrastructures In A Modern Era.
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Infrastructure that manages our water resources (such as, dams and reservoirs, irrigation systems, channels, navigation waterways, water and wastewater treatment facilities, storm drainage systems, urban water distribution and sanitation systems), are critical to all sectors of an economy. Realizing the importance of water infrastructures, efforts have already begun on understanding the sustainability and resilience of such systems under changing conditions expected in the future. The goal of this collected work is to raise awareness among civil engineers of the various implications of landscape change and non-climate drivers on the resilience of water management infrastructure. It identifies the knowledge gaps and then provides effective and complementary approaches to assimilate knowledge discovery on local (mesoscale)-to-regional landscape drivers to improve practices on design, operations and preservation of large water infrastructure systems.
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