• Title/Summary/Keyword: 에너지 소산특성

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Boundary Element Analysis on the Hydraulic Characteristics of Submerged Breakwater with Trapezoidal Type (사다리꼴형상 잠제의 수리특성에 관한 경계요소해석)

  • Kim Nam-Hyeong;Yang Soon-Bo
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.6 no.4
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    • pp.45-51
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    • 2003
  • The reflection and transmission of submerged breakwater with trapezoidal type are computed numerically using boundary element method. The analysis method is based on the wave pressure function with the contlnuit? in the analytical region including fluid and porous structures. Wane motion within the porous structures is simulated by introducing the linear dissipation coefficient and added mass coefficient. The results indicate that transmission and reflection coefficient are determined due to the change of slope of submerged breakwater with trapezoidal type.

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Experimental Study on Bed Material and Slope in Sloping drop Structures (하상재료와 경사에 따른 경사형낙차공 실험연구)

  • Yeo, Hong-Koo;Kang, Joon-Gu;Kim, Sung-Joong;Yoon, Byung-Mo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.841-845
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    • 2007
  • 낙차공(drop structure)은 치수목적의 하천정비를 위한 주요 수공구조물이다. 하지만 국내외적으로 환경을 고려한 하천공법이 요구되면서 고낙차로 인해 발생하는 수중생물의 단절은 기존 낙차공의 큰 문제로 대두되었다. 이에 기존 고낙차를 이용한 낙차공 보다는 완만한 경사를 가지는 낙차공을 설치함으로써 기존 낙차공에 의해 단절되었던 어류의 이동통로로서의 역할과 주변 경관개선을 위해 설치하고 있는 구조물이 필요하였다. 본 연구는 위와 같은 필요성에서 시작되었으며 완경사 낙차공을 경사형 낙차공이라 정의하고 조건에 따른 흐름특성을 수리실험을 통해 분석하였다. 연구내용은 경사형 낙차공의 경사조건과 하상재료의 입경에 따라 발생하는 에너지 소산에 따른 효율과 구조물 하류부 도수현상에 대한 것으로 이를 통해 경사형 낙차공 조건에 따른 흐름특성을 파악하였다. 수리실험은 폭 0.6m, 길이 20.0m 인 가변경사수로에서 수행하였으며, 하상재료는 크기에 따라 2가지 입경(16mm, 25mm)의 재료를 선정하였고, 구조물 경사에 대해 각각 1V:2H, 1V:3H, 1V:4H, 1V:6H의 경사도를 가지는 모형을 제작하여 실험을 수행하였다. 유량조건 및 도수발생위치는 유입부 수위에 따라 단계별로 4가지 수위조건을 만족시키는 유량을 통수하였고, 하류부 수위를 조절하여 도수위치를 조절하여 유입부(1), 낙차공부(5), 사류부(1), 하류부(1)에 대하여 총 8개 지점을 선정하여 수위$(y_n)$ 및 유속(V), 도수길이(Lr), 도수발생거리(Lj) 등을 측정하였다.

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Effects of Moisture Content in Concrete on Diffuse Ultrasound (확산초음파의 콘크리트 함수율에 대한 의존성)

  • Ahn, Eunjong;Shin, Myoungsu
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.24 no.1
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    • pp.142-147
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    • 2020
  • This study investigates the effects of moisture content on diffuse ultrasound to be applied for the evaluation of micro-structural damage in concrete subjected to various environmental conditions. We monitored diffuse wave parameters for concrete samples in process of water saturation for 5 days. Dried samples were immersed in a water bath, and the change of moisture content in concrete were estimated by measuring the change of mass. For the diffuse wave analysis, a frequency range of 500 kHz, which represents a scattering regime of ultrasound in concrete, was selected. The test results reveal that the ultrasonic diffusivity slightly changed, and the ultrasonic dissipation significantly increased by approximately 120% in the process of water saturation. Therefore, the moisture content in concrete should be considered for the evaluation of micro-structural damage using diffuse wave techniques.

Response Reduction of a SDOF Structure based on Friction Force Ratio of MR Controller (MR제어기의 마찰력비에 따른 단자유도 구조물의 응답감소)

  • Seong, Ji-Young;Min, Kyung-Won
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.23 no.4
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    • pp.435-443
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    • 2010
  • This study presents key parameters for the structure installed with MR controller in reducing its responses. MR controller is regarded as Bingham model of which control forces are frictional and viscous ones. The parameters are identified as friction force ratios, $R_f$ and $R_h$ which are, respectively, ratio of MR controller friction force to static restoring force for free vibration and ratio of the friction force to amplitude of harmonic force. Structure-MR controller system shows nonlinear response behavior due to friction force. Energy balance strategy is adopted to transform the behavior to linear one with equivalent damping ratio. Finally, proposed equivalent linear process is compared to the nonlinear one, which turns out to give acceptably good results.

Analysis of Ship Collision Behavior of Pile Supported Structure (파일지지 구조물의 선박 충돌거동에 대한 해석)

  • Bae, Yong Gwi;Lee, Seong Lo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.3A
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    • pp.323-330
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    • 2008
  • The ship collision analysis of steel pile group as protection system of bridge in navigable waterways was performed to analyze the structural characteristics of protective structure during ship collision. The analysis encompassed finite element modeling of ship and pile, modeling of material non-linearity, hard impact analysis, displacement-based analysis and soft impact analysis for collision scenarios. Through the analysis of hard impact with a rigid wall, impact load for each collision type of ship bow was estimated. In the displacement-based analysis the estimate of energy which protection system can absorb within its maximum horizontal clearance so as to secure bridge pier from vessel contact during collision was performed. Soft impact analysis for various collision scenarios was conducted and the collision behaviors of vessel and pile-supported protection system were reviewed for the design of protection system. The understanding of the energy dissipation mechanism of pile supported structure and colliding vessel would give us the optimized design of protective structure.

Study on Behavior Characteristics of a Pile-Type Vessel Collision Protective Structure (파일형 선박 충돌방호공의 거동특성 연구)

  • Lee, Gye-Hee;Lee, Jeong-Woo
    • Journal of the Society of Disaster Information
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    • v.7 no.1
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    • pp.75-85
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    • 2011
  • In this study, the behavior were analyzed for the bow collision event. The model of protective Structure was consist of slab, RCP and non-linear soil spring. The ship was modeled by bow and midship. The bow model was composed by elastic-plastic shell elements, and the midship was composed by elastic solid element. According to the weight of the ship's change from DWT 10000 until DWT 25000 increments 5000. The head-on collision was assumed, its speed was 5knot. Analysis was carried out ABAQUS/Explicit. As the result, increasing the weight of the ship deformability in athletes and to increase the amount of energy dissipated by the plastic could be confirmed.

Experimental Investigation on the Energy Dissipation of Friction-type Reinforcing Members Installed in a Transmission Tower for Wind Response Reduction (송전철탑의 풍응답 감소를 위한 마찰형 보강기구의 에너지 소산특성 분석 실험)

  • Park, Ji-Hun;Moon, Byoung-Wook;Lee, Sung-Kyung;Min, Kyung-Won
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.17 no.7 s.124
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    • pp.649-661
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    • 2007
  • Friction-type reinforcing members(FRM) to enhance the resistance to wind loads of a transmission tower through both stiffness strengthening and damping increase are energy dissipation devices that utilize bending deflection of a tower leg. In this paper, the hysteretic behavior of the transmission tower structure with FRMs was experimentally investigated through cyclic loading tests on a half scale substructure model. Firstly, the variation of friction forces and durability of the FRM depending on the type of friction-inducing materials used in the FRM were examined by performing the cyclic loading tests on the FRM. Secondly, cyclic loading tests of a half-scale two-dimensional substructure model of a transmission tower with FRMs were conducted. Test results show that the FRM, of which desired maximum friction force is easily regulated by adjusting the amplitude of the torque applied to the bolts, have stable hysteretic behaviors and it is found that there exists the optimum torque depending on a design load by investigating the amount of energy dissipation of the FRMs according to the increase of torque.

Experimental Investigation on the Energy Dissipation of Friction-type Reinforcing Members Installed in a Transmission Tower for Wind Response Reduction (송전철탑의 풍응답 감소를 위한 마찰형 보강기구의 에너지 소산특성 분석 실험)

  • Park, Ji-Hun;Moon, Byoung-Wook;Lee, Sung-Kyung;Min, Kyung-Won
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2007.05a
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    • pp.568-577
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    • 2007
  • Friction-type reinforcing members (FRM) to enhance the resistance to wind loads of a transmission tower through both stiffness strengthening and damping increase are energy dissipation devices that utilize bending deflection of a tower leg. In this paper, the hysteretic behavior of the transmission tower structure with FRMs was experimentally investigated through cyclic loading tests on a half scale substructure model. Firstly, the variation of friction forces and durability of the FRM depending on the type of Friction-inducing materials used in the FRM were examined by performing the cyclic loading tests on the FRM. Secondly, Cyclic loading tests of a half-scale two-dimensional substructure model of a transmission tower with FRMs were conducted. Test results show that the FRM, of which desired maximum friction force is easily regulated by adjusting the amplitude of the torque applied to the bolts, have stable hysteretic behaviors and it is found that there exists the optimum torque depending on a design load by investigating the amount of energy dissipation of the FRMs according to the increase of torque.

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감응시간지연에 의한 고주파 연소불안정 해석

  • 조용호;윤웅섭
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 1997.11a
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    • pp.6-7
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    • 1997
  • 연소불안정은 로켓엔진 연소실 내에서의 연소와 유동특성들이 커플링되어 발생한다. 이와 같은 커플링을 통하여 연소로부터 맥동에너지가 공급되며, 되먹임과정 및 소산에 의한 맥동에너지양의 변화에 따라 맥동은 증폭, 유지되거나 소멸된다. 액체추진제 로켓엔진에서 고주파 연소불안정을 특징짓는 이와 같은 맥동발생 매카니즘의 해석은 용이하지 않으며 적절한 모델링을 필요로 한다. 연소불안정의 해석은 연소실 설계에서 고려되어야 할 안정성 여유를 한정하며, 설계된 사양 및 작동조건에서의 안정성 여부를 확인하는 수단으로 사용된다. 연소불안정 해석방법들은 전통적인 음향 n, $\tau$로 대표되는 frequency-domain 방법을 비롯하여, Fourier time expansion, time-domain 방법 등으로 구분되며, 연소실의 단순 및 적극설계과정에 사용된다[1].

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Numerical simulation of two-phase flows in hydraulic jump using RANS model (RANS 모형을 이용한 자유도수 2상흐름 수치모의)

  • Choi, Seongwook;Choi, Sung-Uk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.98-98
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    • 2022
  • 도수는 사류가 상류로 천이되며 흐름이 불연속적으로 변하는 현상이다. 도수는 롤러와 벽 제트와 같은 흐름이 발생하는 영역으로 구분되며 큰 에너지 손실을 발생시키므로, 보나 댐과 같은 수리시설물에서는 에너지 소산을 위한 목적으로 도수를 발생시킬 수 있다. 도수구간 중 롤러 영역에서는 공기가 유입되어 복잡한 3차원 2상 흐름을 발생시키므로 공기방울의 거동에 대한 정밀한 모의는 매우 중요한 것으로 평가된다. 그러나 현실적으로 롤러 영역에서의 작은 공기방울까지 재현하는 것은 어려운 일이다. 본 연구에서는 k-ω SST 난류모형을 이용하여 수문 아래에서 발생하는 자유도수를 수치모의하고 연행된 공기량에 대한 특성을 검토하였다. 롤러 영역에서 격자의 해상도를 다르게 하여 도수구간 내 공기의 체적비와 공기방울의 크기 및 공기방울의 거동을 분석하였다. 실내 실험자료에 난류모형을 적용하고 그 결과와 비교하여 모의 결과의 적정성을 확인하였다. 또한 도수구간에서 공기방울 거동의 정밀한 모의가 평균흐름 및 난류량의 종방향 변화에 미치는 영향을 검토하였다.

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