• Title/Summary/Keyword: Water surplus

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The Study on micro-hydropower used surplus water resources on the dam (댐체 관개용수를 활용한 초소수력발전에 관한 연구)

  • Lee, Dong-Hee;Yang, Hyun-Sik;Hong, Young-Chul
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1342-1343
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    • 2011
  • 댐체를 통해 하류 관개용수로 무효방류되는 수자원을 활용한 초소수력 발전가능성에 관한 고찰을 통해 개발 가능한 신재생 에너지 발굴 및 경제성과 타당성에 대하여 검증해 보고자 한다.

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Flow characteristics analysis and test in the Pelton turbine for pico hydro power using surplus water (잉여 유출수를 이용한 소수력발전용 수차의 유동특성 해석 및 시험)

  • Jeong, Seon Yong;Lee, Kye Bock
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.4
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    • pp.325-331
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    • 2016
  • Computational fluid numerical analysis using the commercial code CFX was performed to develop a Pelton turbine for a pico hydro power generator using the circulating water of a cooling tower in a large building. The performance of the Pelton turbine was examined for different design factors, such as the bucket shape, in which the Pelton wheel was connected in an appropriate manner to the pipe section, and the number of buckets in order to find the optimal design of Pelton turbine for a pico hydro power using surplus water. A benchmark test was carried out on the manufactured small scale Pelton turbine to validate the design method of the Pelton turbine by numerical analysis. The results obtained by comparing the flow characteristics and power output measured using the ultrasonic flowmeter, the pressure transducer and the oscilloscope with the numerical results confirmed the validity of the analytical design method. The possibility of developing Pelton turbines for kW class pico hydro power generators using surplus water with an average circulation velocity of 1.2 m/s for the chosen bucket shape and number of buckets in a 30 m high building was confirmed.

Economic Feasibility Analysis for P2G Using PEM Water Electrolysis (PEM 수전해를 이용한 P2G에 대한 경제적 타당성 분석)

  • JEONG, SEONJU;CHOI, NAK HEON;MOON, CHANGHWAN;MOON, SANGBONG;LIM, HANKWON
    • Transactions of the Korean hydrogen and new energy society
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    • v.28 no.3
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    • pp.231-237
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    • 2017
  • With worldwide efforts to increase the portion of renewable energy for $CO_2$ reductions, a lot of attention has been paid to P2G (power-to-gas) in Europe and Japan to efficiently utilize the surplus electricity. In this paper, economic feasibility analysis has been carried out for P2G using PEM water electrolysis by reflecting current economic status in Korea. In addition, efficiency and electricity price required to be competent in Korean market were provided. Based on cash flow diagrams, unit production costs for $H_2$ and $CH_4$ were estimated and profitability of P2G using PEM water electrolysis was analyzed.

Economic Valuation of the Municipal Water: Residential and Non-residential Uses (전국 생활용수의 경제적 가치 평가: 가정용수 대 비가정용수)

  • Ku, Se-Ju;Yoo, Seung-Hoon
    • Journal of Korea Water Resources Association
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    • v.43 no.11
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    • pp.957-965
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    • 2010
  • The municipal water is directly related to the people's quality of life. To examine and implement reasonable water policies including management of the water demand and economically sound investment decisions, it is essential to estimate the conceptually correct and empirically valid economic value of water. This study attempts to estimate the consumer surplus and economic value of municipal water which is supplied to 16 cities in Korea using demand curve approach. The results indicate that the consumer surplus and economic value of municipal water in 2009 are estimated as KRW 1,180.7 per $m^3$ and KRW 1,812.8 per $m^3$, respectively. The economic values of municipal water in 16 cities range from KRW 1,082.7 per $m^3$ to KRW 3,268.6 per $m^3$. Moreover, the economic value of non-residential water is higher than that of residential water in all cities, and the economic value of water is higher than the present price of water. This study is expected to provide policy-makers with useful information to assess a policy and to evaluate the price of water.

A study for the Mitigation of Impact to Daecheong Dam Management due to the Water Transfer by Yongdam Dam (용담댐에 의한 유역변경이 하류 대청댐 저수량 관리에 미치는 영향 경감 방안 연구)

  • Kim Tai Cheol;Park Jung Nam
    • KCID journal
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    • v.7 no.2
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    • pp.75-86
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    • 2000
  • As more water becomes necessary for agricultural, industrial and other purposes, certain regions are facing the water shortage. Accordingly, it is needed to transfer water over long distances from surplus to deficit areas. But, this inter-regional water t

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The Optimum Control Study for Improving Efficiency of the Small Hydropower Generation in Water Pipe (수도관로 소수력발전 운영효율 향상을 위한 최적제어 방안)

  • Hong, Jeong-Jo;Rim, Dong-Heui;Kim, Soo-Sang
    • New & Renewable Energy
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    • v.4 no.2
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    • pp.31-38
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    • 2008
  • Using a surplus head in presented water supply pipes, we have studied to improve the operating efficiency of small hydro generator, which was chosen for a test model with 00 hydro power plant. With regard to power control and countermeasure of water hammer impact, Finally we have represented the optimal control method through the synthetical analysis of existing system symptoms, operation efficiency, the effect of water hammer impact and system configuration.

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Eco-efficiency of Energy Symbiosis for the Energy Network of Surplus Heat

  • Shin, Choon-Hwan;Kim, Ji-Won
    • Journal of Environmental Science International
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    • v.21 no.5
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    • pp.545-553
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    • 2012
  • Eco-efficiency considers both environmental impacts and economic values. It is a useful tool for communicating with stakeholders for business decision making. This study evaluated the eco-efficiency factor (EEF) for the energy network of a dyeing company that supplies surplus heat to a neighboring apartment during the night. This symbiosis network is one of the eco-industrial park (EIP) projects in Korea and aims to benefit local residents and the industrial complex by utilizing surplus heat. In this study, two categories were annualized. The first quantified environmental burden based on $CO_2$ emissions and quantified product value in terms of steam sales. The second used a variety of environmental factors, such as fossil fuel, water and waste, to quantify environmental burden and used steam sales to quantify value. The EEF of the symbiosis network was 1.6, using the global warming impact, and determined using the multiple variable, was 1.33. This study shows that the EEF depends on variable details of environmental burden but the values of this project were very high contrast to other business or EIP project.

Regional Application of the OECD Nitrogen Budget Considering Livestock Manure Compost (국내 가축분뇨 자원화 특성을 고려한 OECD 질소수지 산정법의 지역단위 적용 연구)

  • Lim, Do Young;Ryu, Hong-Duck;Chung, Eu Gene;Kim, Yongseok;Lee, Jae Kwan
    • Journal of Korean Society on Water Environment
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    • v.33 no.5
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    • pp.546-555
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    • 2017
  • The Nutrient budget is one of the agricultural-environment indicators of OECD. A nutrient budget measures the surplus as the differential between the inputs and the outputs of within a certain boundary and within a specified period of time (i.e. one year). According to OECD, the annual nitrogen budget for Korea was $245kg\;N\;ha^{-1}$ in 2014, which corresponds to the first position among OECD countries. In Korea in 2014, about 90 % of livestock excreta was composted as solid and liquid manure, which are usually and customarily spread on agricultural land. The objectives of this study are intended to suggest methodology of the regional nitrogen budget as a nitrogen management tool, which considers conversion from raw excreta to composted manures based on the methodology of OECD/Eurostat, and application of the new method in an agricultural region of Korea. As a result, the calculated excess rate of hydrospheric nitrogen surplus was $251kg\;N\;ha^{-1}$ (in the region in 2014), which indicates the presence of potential risks emanating from excessive nitrogen, with regard to both export water and soil environments. The findings also assert that this was shown to be one of the most important elements in the nitrogen budget, which translates to the actual amounts of nitrogen lost during the solid composting process. To better understand the process and the reliability of the method, it is necessary to analyze the sensitivity of the relevant co-efficients used in the method in the near future.

Hydrogen Production from Water Electrolysis Driven by High Membrane Voltage of Reverse Electrodialysis

  • Han, Ji-Hyung;Kim, Hanki;Hwang, Kyo-Sik;Jeong, Namjo;Kim, Chan-Soo
    • Journal of Electrochemical Science and Technology
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    • v.10 no.3
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    • pp.302-312
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    • 2019
  • The voltage produced from the salinity gradient in reverse electrodialysis (RED) increases proportionally with the number of cell pairs of alternating cation and anion exchange membranes. Large-scale RED systems consisting of hundreds of cell pairs exhibit high voltage of more than 10 V, which is sufficient to utilize water electrolysis as the electrode reaction even though there is no specific strategy for minimizing the overpotential of water electrolysis. Moreover, hydrogen gas can be simultaneously obtained as surplus energy from the electrochemical reduction of water at the cathode if the RED system is equipped with proper venting and collecting facilities. Therefore, RED-driven water electrolysis system can be a promising solution not only for sustainable electric power but also for eco-friendly hydrogen production with high purity without $CO_2$ emission. The RED system in this study includes a high membrane voltage from more than 50 cells, neutral-pH water as the electrolyte, and an artificial NaCl solution as the feed water, which are more universal, economical, and eco-friendly conditions than previous studies on RED with hydrogen production. We measure the amount of hydrogen produced at maximum power of the RED system using a batch-type electrode chamber with a gas bag and evaluate the interrelation between the electric power and hydrogen energy with varied cell pairs. A hydrogen production rate of $1.1{\times}10^{-4}mol\;cm^{-2}h^{-1}$ is obtained, which is larger than previously reported values for RED system with simultaneous hydrogen production.