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        검색결과 5

        1.
        2018.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The residual chlorine concentration is an essential factor to secure reliable water quality in the water distribution systems. The chlorine concentration decays along the pipeline system and the main processes of the reaction can be divided into the bulk decay and the wall decay mechanisms. Using EPANET 2.0, it is possible to predict the chlorine decay through bulk decay and wall decay based on the pipeline geometry and the hydraulic analysis of the water distribution system. In this study, we tried to verify the predictability of EPANET 2.0 using data collected from experimental practices. We performed chlorine concentration measurement according to various Reynolds numbers in a pilot-scale water distribution system. The chlorine concentration was predicted using both bulk decay model and wall decay model. As a result of the comparison between experimental data and simulated data, the performance of the limited 1st-order model was found to the best in the bulk decay model. The wall decay model simulated the initial decay well, but the overall chlorine decay cannot be properly predicted. Simulation also indicated that as the Reynolds number increased, the impact of the wall
        4,000원
        2.
        2018.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Direct spring loaded pressure relief valve(DSLPRV) is a safety valve to relax surge pressure of the pipeline system. DSLPRV is one of widely used safety valves for its simplicity and efficiency. However, instability of the DSLPRV can caused by various reasons such as insufficient valve volume, natural vibration of the spring, etc. In order to improve reliability of DSLPRV, proper selection of design factors of DSLPRV is important. In this study, methodology for selecting design factors for DSLPRV was proposed. Dynamics of the DSLPRV disk was integrated into conventional 1D surge pressure analysis. Multi-objective genetic algorithm was also used to search optimum design factors for DSLPRV.
        4,000원
        3.
        2018.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Maintaining adequate residual chlorine concentration is an important criteria to provide secure drinking water. The chlorine decay can be influenced by unstable flow due to the transient event caused by operation of hydraulic devices in the pipeline system. In order to understand the relationship between the transient event and the chlorine decay, the probability density function based on the water demand curve of a hypothetical water distribution system was used. The irregular transient events and the same number of events with regular interval were assumed and the fate of chlorine decay was compared. The chlorine decay was modeled using a generic chlorine decay model with optimized parameters to minimize the root mean square error between the experimental chlorine concentration and the simulated chlorine concentration using genetic algorithm. As a result, the chlorine decay can be determined through the number of transients regardless of the occurrence intervals.
        4,000원
        4.
        2017.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Surge pressure is created by rapid change of flow rate due to operation of hydraulic component or accident of pipeline. Proper control of surge pressure in distribution system is important because it can damage pipeline and may have the potential to degrade water quality by pipe leakage due to surge pressure. Surge relief valve(SRV) is one of the most widely used devices and it is important to determine proper parameters for SRV’s installation and operation. In this research, determining optimum parameters affecting performance of the SRV were investigated. We proposed the methodology for finding combination of parameters for best performance of the SRV. Therefore, the objective function for evaluate fitness of candidate parameters and surge pressure simulation software was developed to validate proposed parameters for SRV. The developed software was integrated into genetic algorithm(GA) to find best combination of parameters.
        4,000원
        5.
        2018.11 KCI 등재 서비스 종료(열람 제한)
        관망의 해석은 관망의 설치, 운영에서 매우 중요한 요소이다. 이를 위한 연구 방법은 1차원 모형과 3차원 모형이 있으나 각각은 정확도와 계산속도의 면에서 관망 해석에 장점과 한계점을 보인다. 2차원 모형의 경우 1차원 모형과 달리 난류 점성을 이용하여 보다 정확한 마찰을 모의할 수 있게 하는데, 이때 사용되는 난류 점성을 모의하는 모형은 Five-Region Turbulence Model을 이용하였다. 그러나 이들 모형에 사용되는 매개 변수들은 실험에 의한 값이기 때문에 이러한 매개변수에 따른 2차원 부정류 해석 방법의 응답 특성을 알아보았다. 이를 위해 실제 상수관망에서의 수격압 데이터와 부정류 해석 모형으로 부터의 수격압 데이터를 비교하고, 다양한 매개변수에 따른 속도 분포 모의 특성을 조사하였다. 이를 통해서, 난류 해석 모형의 마찰 거동과 매개변수와의 관계를 규명하였다.