• 제목/요약/키워드: 슬로싱현상

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슬로싱 하중을 받는 한국형 LNG선 화물창(KC-1)의 보냉 판넬에 대한 구조 안전성 평가 (An Assessment of Structure Safety for Basic Insulation Panel of KC-1 LNG Cargo Containment system under Sloshing Load)

  • 진교국;오병택;김영균;윤인수;양영철
    • 한국가스학회지
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    • 제17권2호
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    • pp.85-89
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    • 2013
  • 한국형 LNG선 화물창(KC-1)의 개발은 LNG선의 핵심기술인 화물창시스템의 원천기술을 확보하여 외화절감 및 조선 산업의 경쟁력을 높이는데 그 목적이 있다. 화물창 내부의 액체가 선박의 모션에 의해 생기는 슬로싱 충격 하중에 대한 LNG선의 화물창의 구조 안전성 평가는 중요한 설계 요소가 되었다. 슬로싱 현상에 의한 구조 안전성을 평가하는 가장 이상적인 방법은 유체 영역과 화물창 구조의 상호 작용을 완벽하게 구현하는 것이다. 그러나 유체-구조 연성해석은 방대한 계산 시간과 결과의 정확성을 보장하기 어렵기 때문에 불규칙적인 슬로싱 압력을 삼각파의 형태로 이상화하여 구조 안전성을 평가하였다. 따라서 본 연구에서는 슬로싱 압력은 15/1000초 동안에 최대 10bar의 압력으로 가정한 삼각파로 고려하였고, 해석 결과 한국형 LNG선 화물창(KC-1)의 보냉 판넬은 슬로싱 하중에 대해 구조적으로 건전한 것으로 평가되었다.

LNG 탱크 방열구조의 슬로싱 충격 응답 해석법에 관한 연구 (A Study on the Sloshing Impact Response Analysis for the Insulation System of Membrane Type LNG Cargo Containment System)

  • 노인식;기민석;이재만;김성찬
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2011년도 정기 학술대회
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    • pp.531-538
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    • 2011
  • 멤브레인형 LNG 탱크의 구조적 안전성을 확보하기 위해서는 슬로싱에 의한 작용 압력과 구조응답을 정확히 평가할 수 있어야 한다. 탱크 방열구조에 작용하는 슬로싱 충격하중은 매우 불규칙적이며 이로 인한 구조 응답 역시 유탄성 거동을 포함하는 매우 복잡한 물리 현상이기 때문에 최신의 이론적 실험적 접근 방법을 동원하더라도 정확한 평가가 어렵다. 본 연구에서는 실험이나 수치해석으로부터 얻어진 슬로싱 압력 시계열을 이용하여 탱크 방열 구조의 구조응답을 간편하게 해석할 수 있는 방안을 제안하였다. 이 간이 해석법은 기본적인 삼각형 impulse 형태의 충격 압력에 대한 구조응답을 시간영역에서 과도응답해석법으로 계산한 후, 이렇게 구해진 구조물의 삼각형 응답함수를 조합하여 임의 형상의 압력 시계열에 대한 구조 응답을 구하는 방식이다. 여러 가지 예제 해석을 통하여 제안된 해석법의 타당성을 검토하였고, 이를 이용하여 실제 모형실험에서 얻어진 압력시계열을 바탕으로 구조응답을 계산하고 그 결과를 고찰하였다.

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배플의 높이 변화에 따른 3 차원 사각 탱크 내부의 슬로싱 현상에 관한 수치적 연구 (Numerical Study on Liquid Sloshing in the Three-dimensional Rectangular Tank with Various Baffle Heights)

  • 이창열;윤현식;정재환
    • 대한조선학회논문집
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    • 제47권1호
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    • pp.38-46
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    • 2010
  • This study aims at investigating the effect of the baffle height on the liquid sloshing in the three-dimensional (3D) rectangular tank. In order to simulate the 3D incompressible viscous two-phase flow in the 3D tank with partially filled liquid, the present study has adopted the volume of fluid (VOF) method based on the finite-volume method which has been well verified by comparing with the results of the relevant previous researches. The ratio of the baffle height ($h_B$) to filling level (h) has been changed in the range of $0{\leq}h_B/h{\leq}1.2$ to observe the effect on the impact loads on the side wall and free surface behavior. Generally, as baffle height increases, the impact pressure on the wall decreases and the deformation of free surface becomes weaker. However it seemed that a critical ratio of the baffle height existed to reveal the lowest impact pressure on the wall. Consequently, $h_B/h=0.8$ among $h_B/hs$ considered in the study showed the lowest impact pressure.

압축성이 슬로싱 현상에 미치는 영향에 관한 실험적 연구 (An Experimental Study on Compressibility Effect in Sloshing Phenomenon)

  • 박준수;김현이;이기현;권순홍;전수성;정병훈
    • 한국해양공학회지
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    • 제23권4호
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    • pp.12-18
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    • 2009
  • The present study focused on the compressibility of partially filled fluids in a sloshing tank. Filling ratios ranging from 18% to 26% were used to find compressible impact on a vertical wall. The model test was for 1/25 scale of a 138 K LNGC cargo tank. To investigate the two dimensional phenomenon of sloshing, a longitudinal slice model was tested. A high speed camera was used to capture the flow field, as well as the air pocket deformation. The pressure time history synchronized with the video images revealed the entire compressible process. Three typical impact phenomena were observed: hydraulic jump, flip through, and plunging breaker. In particular, the pressure time history and flow pattern details for flip through and plunging breaker are presented.

액체연료탱크의 슬로싱 거동 평가기법 (Evaluation for Sloshing Behaviors of Liquid Storage Tank)

  • 윤성호;박기진;심국상
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.314-317
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    • 2002
  • The sloshing phenomenon sometimes happens to be occurred in the liquid storage tank due to the unexpected and/or inevitable vibrating conditions and may result in severe effects on the structural stability. This study deals with the development of experimental techniques for the evaluation of sloshing behavior in the liquid storage tank and for the identification of natural frequencies and mode shapes by varying with various vibrating conditions. In addition, suitable method is suggested to minimize the sloshing effect on the liquid storage tank and its validity is experimentally investigate d.

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분체슬로싱 현상에 의한 원통형 용기에서의 에너지 소실 (Energy dissipation by particle sloshing in a rolling cylindrical vessel)

  • 이수혁;허성모;조혜민;손현성;정성민;박준영
    • 한국기계가공학회지
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    • 제9권3호
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    • pp.62-68
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    • 2010
  • In the engineering field, sloshing in rolling vessel is a hot issue because of the connection with ship stability problem. The sloshing phenomena also can be utilized in the field of structure or facility vibration damper. This paper explores the possibility which sloshing of multi-particles can be used to dissipate energy in a rolling container. This energy dissipation can be utilized to the application of rotating damper. Some of the parameters expected to dissipates energy, such as vessel size, particle size, mass fraction and ramp height, have been experimentally and theoretically studied.

KSR-III 로켓의 액체 연료 탱크 내에서 발생하는 슬로싱 현상의 배플에 의한 감쇄율 측정 (Measurement of Damping Ratio of Fuel Sloshing in a Baffled Liquid Propellant Tank of KSR-III Rocket)

  • 박순홍;유준태;이영무
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2002년도 추계학술대회논문집
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    • pp.172-175
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    • 2002
  • Sloshing of fuel in a liquid propellant tank is an important part of the dynamic and the stability analysis of the rocket. Baffles are installed in a propellant tank to reduce the instability due to sloshing. Multi degree of spring-mass-damper model was used to model sloshing of fuel in an axisymmetric tank. The natural frequencies and damping ratios are estimated. In order to verify the estimated natural frequencies and damping ratios, tests are performed for the real propellant tank of KSR-III with single ring baffle. Results of fuel sloshing analysis are compared with those of tests.

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승용차량용 연료탱크 슬로싱 현상에 대한 실험적 고찰 및 평가 방법에 대한 연구 (Experimental Study and Evaluation Method for Sloshing Noise of Fuel Tank on Passenger Vehicle)

  • 안세진;윤성호
    • 한국소음진동공학회논문집
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    • 제24권6호
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    • pp.444-451
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    • 2014
  • The signal patterns of slosh noise produced by the fuel tank of a passenger vehicle are characterized by analyzing vehicle interior noise, fuel tank vibration, and near-field noise radiated from the fuel tank. This paper also shows the noise transfer path analysis results performed from the fuel tank to the vehicle inside. On top of them, physical index is described, demonstrating a good correlation with subjective feeling of slosh noise. It is essential to identify the main noise transfer paths for redesigning of the fuel tank system aiming at reducing slosh noise and also helpful to apply physical index in evaluating and reducing this noise. It is found that structure-borne path is the main root of slosh noise and a value reveals a good correlation with subjective feeling.

내부 슬로싱 현상을 이용한 사각상자 형태의 부유체 Sway 거동 모사에 대한 수치적 고찰 (Numerical study of sway motion of a rectangular floating body with inner sloshing phenomena)

  • 하민호;정철웅
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2013년도 춘계학술대회 논문집
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    • pp.161-165
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    • 2013
  • In this paper, possibility of controlling motion of a floating structure using a tuned liquid damper (TLD) is numerically investigated. A TLD is a tank partially filled with liquid. Sloshing phenomena of liquid inside a tank can suppress movement of the tank subject to external excitations at specific frequency. The effects of sloshing phenomena inside a rectangular floating body on its sway motion are investigated by varying excitation frequency. First, a grid-refinement study is carried out to ensure validity of grid independent numerical solutions using present numerical techniques. Then, sway motion of the floating body subjected to wave with five different frequencies are simulated. The normalized amplitudes of sway motion of the target floating body are compared over the frequency, for cases with and without water inside the floating body. It is shown that the motion of the floating body can be minimized by matching the sloshing natural frequency to excitation frequency.

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