• 제목/요약/키워드: Underwater discharge

검색결과 54건 처리시간 0.035초

원심펌프 방식 수중발사 시스템의 동특성 해석 (Analysis of the Dynamic Characteristics of the Underwater Discharge System using a Centrifugal Pump)

  • 정찬희;박인기
    • 한국군사과학기술학회지
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    • 제15권5호
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    • pp.594-600
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    • 2012
  • In this study, the mathematical model of the underwater discharge system using a centrifugal pump was derived and the rotating speed profiles of the pump which satisfied the discharge performance requirements were obtained through the underwater discharge simulations. The simulation results showed that the dynamic characteristics of a projectile were greatly affected by the rotational speed of the pump, however, hardly by the discharge depth. It is anticipated that the simulation model can be used to derive the design parameters and analyze the performance concerning the underwater discharge system using a centrifugal pump.

선형펌프 방식 수중발사 시스템의 동특성 해석 (Analysis of the Dynamic Characteristics of the Underwater Discharge System using a Linear Pump)

  • 박인기;정찬희
    • 한국군사과학기술학회지
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    • 제8권3호
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    • pp.11-17
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    • 2005
  • In this paper, the mathematical model of the underwater discharge system using a linear pump is derived and the suitable opening pattern of a flow control valve which satisfies the discharge performance requirements is obtained through the underwater discharge simulations. The simulation results show that the dynamic characteristics of a projectile are greatly affected by the opening pattern of the flow control valve, however, hardly by the diving depth. It is anticipated that the simulation model can be used to derive the design parameters and analyze the performance of the designed underwater discharge system using a linear pump.

펄스 방전에 의한 충격파 발생 시뮬레이션 (Simulation of Shockwave Developed by Pulse Discharge)

  • 이승래;박현구;김태훈
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.912-921
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    • 2009
  • Pulse-discharge technology (PDT) is an innovative technology which uses enormous energy developed by electric discharge for a very instant moment of time. Lately, it has been applied to make expanded sections at the ends of piles and anchors. The expanded section is formed by the deformation of bore-hole induced by shockwave energy developed in filling material by the pulse discharge. In this study, considering the phenomenon of pulse-discharge as an underwater explosion, finite element analyses were carried out to model the shockwave development by pulse discharge. The simulation technique was verified by comparing results with underwater discharge test results.

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임펄스전압에 의한 수중방전특성에 대한 연구 (The Study of Underwater Discharge Characteristics against impulse voltage)

  • 이복희;최종혁;박건춘;이봉;김회구;이강수;안창환
    • 한국조명전기설비학회:학술대회논문집
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    • 한국조명전기설비학회 2007년도 춘계학술대회 논문집
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    • pp.271-273
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    • 2007
  • This paper presents the experimental results of underwater discharges in 25 mm point-plane gap caused by impulse voltage. Discharge phenomena were observed by digital cameras and recorded by oscilloscope. As a result, discharge patterns in positive and negative polarity have different shapes according to applied voltage amplitudes. The positive discharge is like root but the negative discharge is similar to bush. As the voltage is increased, the discharge routs are thick and have more branches. Also the time to breakdown is inversely proportional to voltage.

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압축공기 방식 수중발사 시스템의 동특성 시뮬레이션 (Simulations of Dynamic Characteristics of the Underwater Discharge System with Compressed Air)

  • 박인기
    • 한국군사과학기술학회지
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    • 제7권2호
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    • pp.41-47
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    • 2004
  • In this paper, simulations of the underwater discharge system with compressed air are performed to predict dynamic characteristics of the system and to find optimal opening trajectories of the expulsion valve. Major components of the system are defined and their governing equations are derived to make up the mathematical model. The compressed air discharge method is affected largely by the discharge depth, and therefore the opening trajectories according to the discharge depth should be found to satisfy the demands of discharge performances. Simulation results are compared with experimental data to confirm the validity of the system model.

임펄스전압에 의한 수증방전특성의 분석 (Analysis of Underwater Discharge Characteristics Caused by Impulse Voltages)

  • 최종혁;안상덕;이복희
    • 조명전기설비학회논문지
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    • 제22권2호
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    • pp.128-133
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    • 2008
  • 이 논문은 반구형 수조에 설치되어 있는 침전극과 구형전극에 표준뇌임펄스전압을 인가하였을 때 나타나는 수중 방전현상과 절연파괴특성을 나타낸다. 이 논문의 목적은 뇌서지에 대한 과도접지임피던스와 관련된 기본적인 특성을 파악하는데 있다. 인가전압의 극성과 물의 저항률에 따른 방전광을 촬영하였고 절연파괴전압의 의존성을 측정하였다. 침전극과 구형전극의 끝단에서 스트리머코로나가 발생하였고 접지된 수조를 향하여 단계적으로 진전하였다. 저항률에 따른 절연파괴전압은 V자 형태를 나타내며, 구형전극의 절연파괴전압-시간곡선이침전극보다 높게 나타났다.

수중 방전 플라즈마를 이용한 탄소나노소재 합성 시 흑연전극의 형상과 조합의 영향 (Effect of Graphite Electrode Geometry and Combination on Nanocarbon Synthesis using Underwater Discharge Plasma)

  • 조성일;이병주;정구환
    • 한국표면공학회지
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    • 제50권2호
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    • pp.108-113
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    • 2017
  • We investigated the effect of graphite electrode geometry and combination on nanocarbon material synthesis using underwater discharge plasma(UDP). The UDP system consists of two graphite electrodes and beaker filled with de-ionized water. A high voltage of 15 kV with a frequency of 25 kHz is applied to produce UDP using an alternating-current power source. The UDP system with conical electrodes produced the largest amount of products due to the concentration of electrical fields between electrodes. In addition, hollow-shaped stationary electrode and conical-shaped moving electrode stores discharge-induced bubbles and maintains longer reaction time. We found from Raman spectroscopy and electron microscopy that high quality carbon nanomaterials including carbon nanotubes are synthesized by the UDP system.

저항률에 따른 수중방전 특성에 관한 연구 (A Study of underwater discharge characteristics in different resistivity)

  • 이복희;최종혁;이강수;;;안창환;정용기
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 제38회 하계학술대회
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    • pp.254-255
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    • 2007
  • This paper describes underwater discharge phenomena which are less studied than gas, solid and dielectric liquid. Since discharge phenomena were affected by various factors, we investigated the effect of water resistivity in point-plane gap by impulse voltage. In discharge photograph, it is hard to discover the streamer development in positive polarity at high reisistivity. On the other hand, the streamer originated at the tip of rod and developed toward the plane with increasing voltage. It is found that the breakdown voltage of both polarities in lower resistivity are lower than that of high resistivity. High current flowing in lower resistivity before the breakdown induce more streamer and enhance the probability of breakdown.

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Underwater Discharge Phenomena in Inhomogeneous Electric Fields Caused by Impulse Voltages

  • Lee, Bok-Hee;Kim, Dong-Seong;Choi, Jong-Hyuk
    • Journal of Electrical Engineering and Technology
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    • 제5권2호
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    • pp.329-336
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    • 2010
  • The paper describes the electrical and optical properties of underwater discharges in highly inhomogeneous electric fields caused by 1.2/50 ${\mu}s$ impulse voltages as functions of the polarity and amplitude of the applied voltage, and various water conductivities. The electric fields are formed by a point-to-plane electrode system. The formation of air bubbles is associated with a thermal process of the water located at the tip of the needle electrode, and streamer coronas can be initiated in the air bubbles and propagated through the test gap with stepped leaders. The fastest streamer channel experiences the final jump across the test gap. The negative streamer channels not only have more branches but are also more widely spread out than the positive streamer channels. The propagation velocity of the positive streamer is much faster than that of the negative one and, in fact, both these velocities are independent of the water conductivity; in addition the time-lag to breakdown is insensitive to water conductivity. The higher the water conductivity the larger the pre-breakdown energy, therefore, the ionic currents do not contribute to the initiation and propagation of the underwater discharges in the test conditions considered.

수중 아-크 방전음원에 관한 연구 (ARC Discharge Sound Source in Underwater)

  • 장재환;장지원
    • 수산해양기술연구
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    • 제21권1호
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    • pp.12-18
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    • 1985
  • 고압변압기의 1차측을 제어하고 2차측에 유도된 전압을 이용한 수중방전음원의 전기음향학적 제특성을 분석.검사한 결과는 다음과 같다. 1. 방전시 2차측 전류는 초기에는 Ohm 법칙을 따르다가 전류가 최고 6.3A 흘러 절연 파괴되었으며, 그 순간 방전음이 생성되었다. 2. 전류인가점과 방전음 생성문의 시간차는 약 3ms였으며, 전압이 최고일 때 절연파괴가 일어나 방전음이 생성되었다. 3. 전극의 끝이 뾰족할수록 2차측 전압이 높을수록 음압수준은 높았다. 4. 뾰족한 형태의 전극은 전극간격이 100cm일 때도 방전이 일어났으며 전극간격이 1cm이상부터 비교적 안정된 방전음이 생성되었다. 5. 방전음의 펄스폭은 약 0.15ms인 Shock Wave였으며, 10HKz 이하의 합성저주파 성분이었다.

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