Rainwater infiltration in urban areas
Author(s)
Bibliographic Information
Rainwater infiltration in urban areas
(Water science and technology library, v. 89)
Springer, c2020
Available at 1 libraries
  Aomori
  Iwate
  Miyagi
  Akita
  Yamagata
  Fukushima
  Ibaraki
  Tochigi
  Gunma
  Saitama
  Chiba
  Tokyo
  Kanagawa
  Niigata
  Toyama
  Ishikawa
  Fukui
  Yamanashi
  Nagano
  Gifu
  Shizuoka
  Aichi
  Mie
  Shiga
  Kyoto
  Osaka
  Hyogo
  Nara
  Wakayama
  Tottori
  Shimane
  Okayama
  Hiroshima
  Yamaguchi
  Tokushima
  Kagawa
  Ehime
  Kochi
  Fukuoka
  Saga
  Nagasaki
  Kumamoto
  Oita
  Miyazaki
  Kagoshima
  Okinawa
  Korea
  China
  Thailand
  United Kingdom
  Germany
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Note
Includes bibliographical references
Description and Table of Contents
Description
The book presents a comprehensive study of the percolation of water from surface runoff with a focus on the retention capacity and intensity of precipitation.
Discussing the state of the art in scientific knowledge and solutions for the infiltration of water from surface runoff, the book addresses a wide variety of rainwater management issues, from precipitation, surface runoff and water infiltration, to impact on the drainage system. Although modern urban hydrology has improved the management of rainwater runoff for flood protection, public health, and environmental protection, current methods of drainage in urban areas mean that there is a continued threat to the regime of water flow and water resources. In this context, the book presents a new approach to rainwater management based on a unique fusion of hydrology, hydrogeology, urban engineering, and water management. It also includes research findings that are helpful in developing recommendations and technical guidelines for the use of infiltration systems in urban areas.
Table of Contents
1. Introduction
2. Urban hydrology
2.2 Rainwater management in urban areas
2.3 Infiltration processes
2.4 Role of infiltration in flood management
3. Research of rainwater infiltration
3.1 Study area
3.2 Experimental research
3.3 Numerical analysis
4. Percolation facilities
a. Precipitation monitoring
b. Determination of filtration coefficient
c. Model of emptying time
5. Legislation - technical standards
6. Results of research - design of percolation facility
7. Recommendations
by "Nielsen BookData"