• Title/Summary/Keyword: MVR system

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A study on the development of MVR desalination plant and its performance analysis (MVR해수담수화플랜트의 개발 및 성능에 관한 연구)

  • Kim, Yeongmin;Chun, Wongee;Kim, Dongkook
    • Journal of Energy Engineering
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    • v.25 no.3
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    • pp.59-65
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    • 2016
  • MVR evaporation is a method of pressurizing the evaporating steam to raise its temperature with an electric compressor instead of burning fuel and reusing the heat source through the embraced heat exchanger to minimize energy use. MVR desalination system with wind power uses varying wind power instead of stable electricity and can flexibly control the volume of fresh water production. The present study introduces the design, construction and operation of a MVR desalination system of 30ton/day capacity. Experimental results, MVR compression ratio is higher than 1.5, temperature difference of the main heat exchanger is $5{\sim}7^{\circ}C$. This value shows the same performance as the designed value.

Development of Turbo Steam Compressors for MVR System (MVR 담수화장비용 터보 증기압축기의 개발)

  • Oh, Jong-Sik;Sung, Beong-Il;Hyun, Yong-Ik
    • 유체기계공업학회:학술대회논문집
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    • 2003.12a
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    • pp.482-486
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    • 2003
  • A high-efficiency turbo steam compressor has been successfully developed for the MVR desalination system, first one in Korea. The state-of-the-art design methods using real gas properties were applied to get all the aerodynamic design results. Bull and pinion gear trains, tilting-pad bearings and investment cast impellers were developed also to be integrated into the integral gear-driven turbo steam compressor. System tests show highly efficient performance.

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The Analysis on AVR-MVR Conversion Trouble for Excitation System (여자시스템 자동-수동 전환 문제점에 대한 분석)

  • Ok, Yeon-Ho;Lee, Eun-Woong;Byun, Ill-Hwan;Lee, Hyoung-Mook;Choi, Hong-Yeol
    • Proceedings of the KIEE Conference
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    • 2006.07b
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    • pp.941-942
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    • 2006
  • The Analysis on AVR-MVR conversion trouble for Excitation System AVR-MVR conversion is a very important function to transfer AVR to MVR when the grid has abrupt changes or the control system has some problems. Therefore through studying on AVR-MVR transfer scheme, and problems which might happen when transferring, we would like to enhance the stability of generator and control system.

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Identification of Excitation System Model Parameters from the Test of Switching from MVR Mode to AVR Mode (MVR모드에서 AVR모드로의 절환에 의한 여자계 모델정수 결정)

  • Kim, Dong-Joon;Moon, Yung-Hwan;Choi, Kyung-Sun;Lyu, Seung-Hhon;Song, Seok-Ha;Lee, Heung-Taek
    • Proceedings of the KIEE Conference
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    • 1996.11a
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    • pp.91-94
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    • 1996
  • A simulation procedure was developed for identifying Yungnam unit 2 excitation model parameters to improve the accuracy of stability simulation of KEPCO. First, generator model parameters are derived by using modified load rejection technique from measured load rejection test. For identifying excitation model parameters, switch was changed from MVR mode to AVR mode in Yungnam unit 2 excitation system instead of applying to a small step to the voltage reference($V_{ref}$) because of saving time and efforts, assuming the test result would show coincided result with applying to a small step to the $V_{ref}$. However, it was found that the response of switching from MVR to AVR is greatly different from it of applying small signal to the $V_{ref}$. A simulation procedure was needed to take into accounts of real AVR component status before and after switching from MVR to AVR. This paper reports the procedure which duplicated the measured response and addresses the merits of this test on conventional AVR step test.

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Enhanced Image Mapping Method for Computer-Generated Integral Imaging System (집적 영상 시스템을 위한 향상된 이미지 매핑 방법)

  • Lee, Bin-Na-Ra;Cho, Yong-Joo;Min, Sung-Wook;Park, Kyung-Shin
    • 한국HCI학회:학술대회논문집
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    • 2006.02a
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    • pp.535-540
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    • 2006
  • 집적 영상(Integral Imaging) 시스템은 관찰자가 특수안경의 착용 없이 육안으로 3 차원 영상을 볼 수 있는 무안경식 양안시차 디스플레이 방식 중 하나로, 수직, 수평 시차와 총천연색의 영상을 제공한다. 집적영상 시스템은 3 차원 정보를 2 차원 엘리멘탈 이미지 (Elemental image)의 형태로 저장하는데, 엘리멘탈 이미지는 조금씩 다른 방향에서 제한된 크기로 촬영된 이미지이다. 엘리멘탈 이미지는 컴퓨터 그래픽으로 만들어질 수도 있는데, 이를 이용하는 집적 영상 방식을 CG 직접 영상 시스템이라 한다. 이와 같이 컴퓨터 계산에 의해 엘리멘탈 이미지를 얻는 과정을 이미지 매핑 (Image mapping)이라 부른다. 이제까지 제안된 이미지 매핑 방식에는 점대점 (Point to Point), MVR (Multi-Viewpoint Rendering), PGR (Parallel Group Rendering) 이 있다. 그러나 이런 방식들은 계산량이 많거나 렌즈 어레이 개수의 증가에 의해 속도에 영향을 받는 단점이 있어, 아직 가상현실 같은 실시간 CG 응용 분야에 사용하기 어려운 문제가 있다. 본 논문에서는 VVR (Viewpoint Vector Rendering)이라는 기존의 방법과 비교해 향상된 새로운 이미지 매핑 방법을 제안한다. 먼저 VVR 개념을 자세히 설명한 후 VVR 을 사용한 집적 영상 시스템을 구현하여 MVR 방법과 비교 분석한 실험결과와 개선되어야 할 방향을 제시한다.

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Enhanced Image Mapping Method for Computer-Generated Integral Imaging System (집적 영상 시스템을 위한 향상된 이미지 매핑 방법)

  • Lee Bin-Na-Ra;Cho Yong-Joo;Park Kyoung-Shin;Min Sung-Wook
    • The KIPS Transactions:PartB
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    • v.13B no.3 s.106
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    • pp.295-300
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    • 2006
  • The integral imaging system is an auto-stereoscopic display that allows users to see 3D images without wearing special glasses. In the integral imaging system, the 3D object information is taken from several view points and stored as elemental images. Then, users can see a 3D reconstructed image by the elemental images displayed through a lens array. The elemental images can be created by computer graphics, which is referred to the computer-generated integral imaging. The process of creating the elemental images is called image mapping. There are some image mapping methods proposed in the past, such as PRR(Point Retracing Rendering), MVR(Multi-Viewpoint Rendering) and PGR(Parallel Group Rendering). However, they have problems with heavy rendering computations or performance barrier as the number of elemental lenses in the lens array increases. Thus, it is difficult to use them in real-time graphics applications, such as virtual reality or real-time, interactive games. In this paper, we propose a new image mapping method named VVR(Viewpoint Vector Rendering) that improves real-time rendering performance. This paper describes the concept of VVR first and the performance comparison of image mapping process with previous methods. Then, it discusses possible directions for the future improvements.

A Study on the Survivability of the General Purpose Warhead by Counter Mass Gun Test & Analysis (Counter Mass Gun을 이용한 표준탄의 생존성 연구)

  • 임완권;김성식;김호수;박관진;이정환
    • Journal of the Korea Institute of Military Science and Technology
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    • v.7 no.1
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    • pp.59-65
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    • 2004
  • Survivability of the general purpose warhead during the target impact was studied. We first simulated the penetration phenomena and temporarily defined the survivability of the warhead at the impact situation. Next we launched the warhead projectiles by using Counter Mass Gun(CMG) system against the simulated specific steel target. The recovered warheads were carefully investigated and the penetration behaviors were analyzed. As a result the warhead can be hardened efficiently to enhance the survivability with the help of CMG test & analysis.