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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/102402


    Title: Integrated water resources system dynamics modeling and indicators for sustainable rural community
    Authors: 陳沛芫;Li, Yuan-Hua;Chen, Pei-Yuan;Lo, Wei-Hsuan;Tung, Ching-Pin
    Contributors: 地球科學學院水文與海洋科學研究所
    Keywords: Agriculture;Artificial wetlands;Biomedical and Life Sciences;Climate change;constructed wetlands;Construction;Crop yield;Demand;Domestic;Domestic water;Drought;drought tolerance;Ecotoxicology;Geoecology/Natural Processes;Hydrogeology;Hydrology/Water Resources;Indicators;Irrigation;Irrigation systems;Irrigation water;Life Sciences;Mathematical models;paddies;rain;Reclaimed water;Reuse;Rural areas;Rural communities;Rural sociology;Soil Science & Conservation;Sustainable agriculture;Taiwan;water conservation;Water conveyance;Water harvesting;Water quality;Water requirements;Water resources;Water resources management;Water supply;Wetlands
    Date: 2013-01-01
    Issue Date: 2026-04-23 11:08:04 (UTC+8)
    Publisher: Springer Verlag;Tokyo: Springer Japan
    Abstract: 摘要: The water resources management may face serious challenges under climate change. In order to efficiently utilize water resources and reduce loadings on centralized water supply systems, it is necessary for each water user to reduce their water requirements. Rural community consumes the great portion of water resources in Taiwan due to high irrigation water demands and thus is concerned in this study. The rural community considers having both external domestic water supply and irrigation systems, and installing reuse system and constructed wetland to provide harvested rainwater and reclaimed water. The purpose of this study is to establish an integrated water resources system dynamics model and propose indicators for quantitatively evaluating the water supply system of a rural community. The three indicators are designed to evaluate water saving efficiency, tolerance of drought duration, and influence of insufficient irrigation water on crop yields. The results show that the combination of the constructed wetland and reuse system possesses more eminent stability than the reuse system alone. The integrated water resources system may reduce up to 32 % of domestic water demands and 7.8 % of irrigation water demands from external systems, respectively. At the same time, the domestic system owns higher resilience. In conclusion, the results indicate that the reuse system and constructed wetland can significantly improve the stability and resilience of water supply system. The study on integrated water resources system for rural community desires more researches. Besides, the influence of climate change and water quality of reclaimed water should be further considered.
    其他題名: Paddy Water Environ
    出版者: Tokyo: Springer Japan
    出版日期: 2015-01-01
    出處: Paddy and water environment, 2015-01, Vol.13 (1), p.29-41
    資源來源: Agricultural & Environmental Science Collection
    版權: The International Society of Paddy and Water Environment Engineering and Springer Japan 2013
    版權: The International Society of Paddy and Water Environment Engineering and Springer Japan 2015
    識別號: ISSN: 1611-2490
    識別號: EISSN: 1611-2504
    識別號: DOI: 10.1007/s10333-013-0404-0
    Appears in Collections:[Graduate Institute of Hydrological and Oceanic Sciences] journal & Dissertation

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