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Sustainable Water Distribution Strategy with Smart Water Grid

Author

Listed:
  • Seongjoon Byeon

    (Department of Civil and Environmental Engineering, Incheon National University, Incheon 406-772, Korea)

  • Gyewoon Choi

    (Department of Civil and Environmental Engineering, Incheon National University, Incheon 406-772, Korea)

  • Seungjin Maeng

    (Department of Agricultural & Rural Engineering, Chungbuk National University, Chungbuk 362-763, Korea)

  • Philippe Gourbesville

    (University Nice Sophia Antipolis, Polytech Nice-Sophia, Sophia-Antipolis 06903, France)

Abstract

Many problems that are encountered in regards to water balance and resources management are related to challenges of economic development under limited resources and tough competition among various water uses. The development of major infrastructure like airports in remote areas that have limited water resources is becoming a common problem. In order to overcome these difficulties, water management has to articulate and combine several resources in order to respond to various demands while preserving the ecological quality of the environment. The paper discusses the interest in implementing the Smart Water Grid concept on Yeongjongdo Island, which is the location of Korea’s main airport. This new concept is based on the connection of various water resources and their optimized management with new information technology solutions. The proposed system integrates water generated through rainfall, external water resources ( i.e. , metropolitan water distribution system), gray water and other types of alternative water resources. The paper analyses the feasibility of this approach and explores interest in the Smart Water Grid concept.

Suggested Citation

  • Seongjoon Byeon & Gyewoon Choi & Seungjin Maeng & Philippe Gourbesville, 2015. "Sustainable Water Distribution Strategy with Smart Water Grid," Sustainability, MDPI, vol. 7(4), pages 1-20, April.
  • Handle: RePEc:gam:jsusta:v:7:y:2015:i:4:p:4240-4259:d:48009
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    References listed on IDEAS

    as
    1. Michele Mutchek & Eric Williams, 2014. "Moving Towards Sustainable and Resilient Smart Water Grids," Challenges, MDPI, vol. 5(1), pages 1-15, March.
    2. Eunmi Kim & Ilkyeun Ra & Kyung Hyun Rhee & Chang Soo Kim, 2014. "Estimation of Real-Time Flood Risk on Roads Based on Rainfall Calculated by the Revised Method of Missing Rainfall," Sustainability, MDPI, vol. 6(9), pages 1-14, September.
    3. Ema Oladiran Ekundayo (ed.), 2011. "Environmental Monitoring," Books, IntechOpen, number 1340.
    4. Philippe Gourbesville, 2011. "ICT for Water Efficiency," Chapters, in: Ema Oladiran Ekundayo (ed.), Environmental Monitoring, IntechOpen.
    5. Eun-Sung Chung & Kwangjae Won & Yeonjoo Kim & Hosun Lee, 2014. "Water Resource Vulnerability Characteristics by District’s Population Size in a Changing Climate Using Subjective and Objective Weights," Sustainability, MDPI, vol. 6(9), pages 1-17, September.
    Full references (including those not matched with items on IDEAS)

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    Cited by:

    1. Günter Müller-Czygan & Viktoriya Tarasyuk & Christian Wagner & Manuela Wimmer, 2021. "How Does Digitization Succeed in the Municipal Water Sector? The WaterExe4.0 Meta-Study Identifies Barriers as well as Success Factors, and Reveals Expectations for the Future," Energies, MDPI, vol. 14(22), pages 1-21, November.
    2. Yungyu Chang & Gyewoon Choi & Juhwan Kim & Seongjoon Byeon, 2018. "Energy Cost Optimization for Water Distribution Networks Using Demand Pattern and Storage Facilities," Sustainability, MDPI, vol. 10(4), pages 1-19, April.
    3. Mina Farmanbar & Kiyan Parham & Øystein Arild & Chunming Rong, 2019. "A Widespread Review of Smart Grids Towards Smart Cities," Energies, MDPI, vol. 12(23), pages 1-18, November.
    4. Kapil Gnawali & Kuk Heon Han & Zong Woo Geem & Kyung Soo Jun & Kyung Taek Yum, 2019. "Economic Dispatch Optimization of Multi-Water Resources: A Case Study of an Island in South Korea," Sustainability, MDPI, vol. 11(21), pages 1-18, October.

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