System dynamics model of Suzhou water resources carrying capacity and its application

A model of Suzhou water resources carrying capacity (WRCC) was set up using the method of system dynamics (SD). In the model, three different water resources utilization programs were adopted: (1) continuity of existing water utilization, (2) water conservation/saving, and (3) water exploitation. Th...

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Main Author: Li Cheng
Format: Article
Language:English
Published: Elsevier 2010-06-01
Series:Water Science and Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1674237015301071
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spelling doaj-323af3ee228245dfa8f3313a6499b0562020-11-25T01:27:50ZengElsevierWater Science and Engineering1674-23702010-06-013214415510.3882/j.issn.1674-2370.2010.02.003System dynamics model of Suzhou water resources carrying capacity and its applicationLi ChengA model of Suzhou water resources carrying capacity (WRCC) was set up using the method of system dynamics (SD). In the model, three different water resources utilization programs were adopted: (1) continuity of existing water utilization, (2) water conservation/saving, and (3) water exploitation. The dynamic variation of the Suzhou WRCC was simulated with the supply-decided principle for the time period of 2001 to 2030, and the results were characterized based on socio-economic factors. The corresponding Suzhou WRCC values for several target years were calculated by the model. Based on these results, proper ways to improve the Suzhou WRCC are proposed. The model also produced an optimized plan, which can provide a scientific basis for the sustainable utilization of Suzhou water resources and for the coordinated development of the society, economy, and water resources.http://www.sciencedirect.com/science/article/pii/S1674237015301071system dynamics (SD)water resources carrying capacity (WRCC)eco-environmental water demandSuzhou City
collection DOAJ
language English
format Article
sources DOAJ
author Li Cheng
spellingShingle Li Cheng
System dynamics model of Suzhou water resources carrying capacity and its application
Water Science and Engineering
system dynamics (SD)
water resources carrying capacity (WRCC)
eco-environmental water demand
Suzhou City
author_facet Li Cheng
author_sort Li Cheng
title System dynamics model of Suzhou water resources carrying capacity and its application
title_short System dynamics model of Suzhou water resources carrying capacity and its application
title_full System dynamics model of Suzhou water resources carrying capacity and its application
title_fullStr System dynamics model of Suzhou water resources carrying capacity and its application
title_full_unstemmed System dynamics model of Suzhou water resources carrying capacity and its application
title_sort system dynamics model of suzhou water resources carrying capacity and its application
publisher Elsevier
series Water Science and Engineering
issn 1674-2370
publishDate 2010-06-01
description A model of Suzhou water resources carrying capacity (WRCC) was set up using the method of system dynamics (SD). In the model, three different water resources utilization programs were adopted: (1) continuity of existing water utilization, (2) water conservation/saving, and (3) water exploitation. The dynamic variation of the Suzhou WRCC was simulated with the supply-decided principle for the time period of 2001 to 2030, and the results were characterized based on socio-economic factors. The corresponding Suzhou WRCC values for several target years were calculated by the model. Based on these results, proper ways to improve the Suzhou WRCC are proposed. The model also produced an optimized plan, which can provide a scientific basis for the sustainable utilization of Suzhou water resources and for the coordinated development of the society, economy, and water resources.
topic system dynamics (SD)
water resources carrying capacity (WRCC)
eco-environmental water demand
Suzhou City
url http://www.sciencedirect.com/science/article/pii/S1674237015301071
work_keys_str_mv AT licheng systemdynamicsmodelofsuzhouwaterresourcescarryingcapacityanditsapplication
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