• 제목/요약/키워드: Wall Friction

검색결과 503건 처리시간 0.036초

Numerical simulation of a toroidal single-phase natural circulation loop with a k-kL-ω transitional turbulence model

  • Yiwa Geng;Xiongbin Liu;Xiaotian Li;Yajun Zhang
    • Nuclear Engineering and Technology
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    • 제56권1호
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    • pp.233-240
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    • 2024
  • The wall friction correlations of oscillatory natural circulation loops are highly loop-specific, making it difficult to perform 1-D system simulations before obtaining specific experimental data. To better predict the friction characteristics, the nonlinear dynamics of a toroidal single-phase natural circulation loop were numerically investigated, and the transition effect was considered. The k-kL-ω transitional turbulence and k-ω SST turbulence models were used to compute the flow characteristics of the loop under different heating powers varying from 0.48 to 1.0 W/cm2, and the results of both models were compared with previous experiments. The mass flow rates and friction factors predicted by the k-kL-ω model showed a better agreement with the experimental data than the results of the k-ω SST model. The oscillation frequencies calculated using both models agreed well with the experimental data. The k-kL-ω transitional turbulence model provided better friction-factor predictions in oscillatory natural circulation loops because it can reproduce the temporal and spatial variation of the wall shear stress more accurately by capturing the movement of laminar, transition turbulent zones inside unstable natural circulation loops. This study shows that transition effects are a possible explanation for the highly loop-specific friction correlations observed in various oscillatory natural circulation loops.

사각 채널에 설치된 테이프가 열전달과 마찰계수에 미치는 효과 (Effects of Tape on Heat Transfer and Friction Factor in a Square Channel)

  • 안수환;강호근;배성택;아리바시아크리시나 부트라
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.2402-2407
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    • 2007
  • Heat transfer distributions and friction factors in square channels (3.5 ${\times}$ 3.5 cm) with twisted tape inserts and with twisted tape inserts plus interrupted ribs are respectively investigated. Tests are performed for Reynolds numbers ranging from 8,900 to 29,000. The rib height-to-channel hydraulic diameter, e/Dh, is kept at 0.057 and test section length-to-hydraulic diameter, L/Dh is 30. The twisted tape is 0.1 mm thick carbon steel sheet with diameter of 3.3cm, length of 90cm, and 2.5 turns. The square ribs are arranged to follow the trace of the twisted tape and along the flow direction defined as axial interrupted ribs. Each wall of the square channel is composed of isolated aluminum sections. The following conclusions from the experimental study were drawn as: 1) In the 4 heating wall channel with twisted tape inserts, Nusselt number based on bottom wall temperature is enhanced by 1.2 - 1.6 times if adding the axial interrupted ribs on the bottom wall only. 2) The twisted tape with interrupted ribs under the two-sided heating condition produces the highest heat transfer performance. 3) Friction factor data obtained for the square channel with twisted tape inserts plus axial interrupted ribs are less than those in the past publications for circular tubes with axial interrupted ribs and twisted tape inserts.

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중력식 구조물의 형태에 따른 주동토압 산정과 설계법 제안 (The Calculation and Design Method of Active Earth Pressure with Type of Gravity Structures)

  • 김병일;정영진;김도형;이충호;한상재
    • 한국지반공학회논문집
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    • 제30권4호
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    • pp.47-63
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    • 2014
  • 육상 및 항만 구조물 설계시 적용되고 있는 토압 이론(Rankine, Coulomb, 시행쐐기법, 개량시행쐐기법)을 정리하였고, 구조물 형태에 따라 가상배면(Vitural back, wall, plane)과 구조물 벽면에 작용하는 토압 특성 등을 제시하였다. 토압 특성을 검토하기 위해 육상구조물의 경우 배면토 경사에 따른 캔틸레버식 옹벽과 벽경사에 따른 중력식 옹벽, 해상구조물은 케이슨식 안벽과 블록식 안벽을 적용하였다. 여러 가지 토압이론을 적용하여 뒷굽 길이에 따른 토압, 작용각(벽면마찰각), 벽면측으로의 활동각 등을 분석한 결과 뒷굽이 긴 경우 가상배면에서의 작용토압은 Rankine 토압과 작용각은 지표경사각, 뒷굽이 짧은 경우 Coulomb 방법과 작용각은 벽마찰각으로 산정하는 것이 가장 합리적임을 알 수 있었다. 벽면측으로의 활동각은 Rankine 이론에 의한 활동각보다 큰 것으로 나타났다. 또한, 본 논문에서는 현재 적용되고 있는 여러 가지 토압 산정법 및 작용각 중에서 항만 구조물 설계시 적용할 수 있는 적정 토압 산정방법을 제안하였다. 제안방법은 뒷굽장단 결정과 이에 따른 적정 토압산정법을 결정하고 벽면 측으로의 활동각에 따른 옹벽자중 고려 방법을 설정하도록 하였다.

A low damage and ductile rocking timber wall with passive energy dissipation devices

  • Loo, Wei Yuen;Quenneville, Pierre;Chouw, Nawawi
    • Earthquakes and Structures
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    • 제9권1호
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    • pp.127-143
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    • 2015
  • In conventional seismic design, structures are assumed to be fixed at the base. To reduce the impact of earthquake loading, while at the same time providing an economically feasible structure, minor damage is tolerated in the form of controlled plastic hinging at predefined locations in the structure. Uplift is traditionally not permitted because of concerns that it would lead to collapse. However, observations of damage to structures that have been through major earthquakes reveal that partial and temporary uplift of structures can be beneficial in many cases. Allowing a structure to move as a rigid body is in fact one way to limit activated seismic forces that could lead to severe inelastic deformations. To further reduce the induced seismic energy, slip-friction connectors could be installed to act both as hold-downs resisting overturning and as contributors to structural damping. This paper reviews recent research on the concept, with a focus on timber shear walls. A novel approach used to achieve the desired sliding threshold in the slip-friction connectors is described. The wall uplifts when this threshold is reached, thereby imparting ductility to the structure. To resist base shear an innovative shear key was developed. Recent research confirms that the proposed system of timber wall, shear key, and slip-friction connectors, are feasible as a ductile and low-damage structural solution. Additional numerical studies explore the interaction between vertical load and slip-friction connector strength, and how this influences both the energy dissipation and self-centring capabilities of the rocking structure.

운전조건변화에 따른 피스톤-링 결합체 마찰특성 (Friction Characteristics of the Piston-Ring Assembly Varying Engine Operation Coditions)

  • 윤정의;김승수
    • 대한기계학회논문집
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    • 제18권6호
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    • pp.1510-1519
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    • 1994
  • It is important to understand the friction characteristics between piston-ring assembly and cylinder wall for the friction loss reduction as well as the solution of problem such as scuffing wear and oil consumption. A new system was developed for the piston-ring assembly friction force measurement. This system was applied to the friction force measurement to find its functional relationship with variables such as engine speed, oil viscosity, and engine load. The friction mean effective pressure(fmep) was found to have a linear relationship with$(\vpsilon{U})^{0.42}$ under motering and with$(\vpsilon{U})^{0.45}$ under firing operations, where $\vpsilon$ is the kinematic oil viscosity and U is mean piston speed.

半圓周形 윤활홈을 갖는 저어널 베어링의 熱效果에 관한 연구 (A Study of Thermal Effects for a Half-Circumferential Grooved Journal Bearing)

  • Chun, Sang-Myung;Lalas, Demetrius P.
    • Tribology and Lubricants
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    • 제6권1호
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    • pp.36-51
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    • 1990
  • A parametric study of the thermal effects of a half-circumferential grooved journal bearings under aligned and misaligned conditions has been carried out by solving numerically the coupled Reynolds and energy equation system. Five different sets of boundary conditions for the energy equation have been used which include mixing between recirculating oil and inlet oil and a contraction ratio for the cavitation region. The effects of changes of the inlet oil temperature and pressure, the wall temperature and the L/D ratio have also been examined. For the range of parameters found in internal combustion engines, the mixing effectiveness at the groove and the resulting final mixture temperature have been found to be as important as the wall temperature and the heat transfer rate. The variability of the temperature, though, has been shown to smooth out the peaks of both pressure and friction during misaligned condition Distributions of friction and pressure in the oil are also examined which may be useful in attempts to reduce friction without reducing load. Results for an axial grooved bearing are also presentsed for comparision purpose.

마이크로채널 흐름에 관한 종횡비의 영향 (Effect of Aspect Ratio on Gas Microchannel Flow)

  • 타줄 이슬람;이연원
    • 동력기계공학회지
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    • 제11권3호
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    • pp.16-21
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    • 2007
  • Three dimensional numerical study was carried out to investigate the effect of aspect ratio on microchannel flow. We considered five straight rectangular channels with aspect ratios (height/width) 0.2, 0.4, 0.6, 0.8 and 1.0. Nitrogen gas flow was investigated for both slip and noslip wall boundary conditions. Isothermal wall condition was assumed. We used control volume method for this simulation. The slip velocity increases with the increase of aspect ratio. Friction coefficient decreases with the increase of aspect ratio. Slip friction coefficient is lower than noslip friction coefficient. Mass flow rate of slip model is higher than that of noslip model. We compared our results with the experimental result reported in the literature. The agreement was good.

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사각 채널에서 테이프에 의한 스월유동이 열전달과 마찰계수에 미치는 효과 (Effects of Swirl Flow Generated by Twisted Tape on Beat Transfer and Friction Factor in a Square Channel)

  • 안수환;강호근;아리바시아크리시나부트라
    • 대한기계학회논문집B
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    • 제31권11호
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    • pp.912-917
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    • 2007
  • Regionally averaged heat transfer distributions and friction factors in square channels with twisted tape inserts and with twisted tape inserts plus interrupted ribs are experimentally investigated. The effects of surface heating condition on heat transfer enhancement are also investigated. Each wall of the square channel is composed of isolated aluminum plates. The interrupted square ribs are arranged along the axial flow direction on the bottom wall only. Experimental tests are performed for Reynolds numbers ranging from 8,900 to 29,000. The results are compared with those of previous investigations for circular tube with axial interrupted ribs and twisted tape inserts.

로타리 베인 공기압축기의 성능에 관한 수치해석 (Analytical Study on the Performance of a Rotary Vane Compressor)

  • 김현진;남보영;이경용
    • 설비공학논문집
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    • 제18권4호
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    • pp.351-358
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    • 2006
  • This paper presents analytical results of a rotary vane compressor performance when the compressor is used for air supply from underwater. Compression characteristics such as pressure and temperature in a compression chamber are analyzed. Volumetric and adiabatic efficiencies are calculated. Vane dynamics are also performed to give reaction forces on the vane from the cylinder inner surface and from vane slots. Compressor efficiency is about 34.9%, and about 55% of the compressor loss is produced by the friction between the vane nose and the cylinder wall. Volumetric efficiency is about 79.5%, and indicated efficiency is about 77.1%, which are comparable to other displacement type compressors. When roller was introduced between housing inner wall and vane tips, mechanical efficiency could be improved by as much as 24.9%, depending on the roller friction.

강재 슬릿과 회전 마찰형 감쇠 장치를 결합한 복합 감쇠 장치의 실험적 구조 성능 평가 (Experimental Evaluation for Structural Performance of Hybrid Damper Combining Steel Slit and Rotational Friction Damper)

  • 김유성;강주원;박병태;이준호
    • 한국공간구조학회논문집
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    • 제19권3호
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    • pp.101-109
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    • 2019
  • In order to develop the compatible damping device in various vibration source, a hybrid wall-type damper combining slit and friction damper in parallel was developed. Cyclic loading tests and two-story RC reinforced frame tests were performed for structural performance verification. As a result of the 5-cyclic loading test according to KBC-2016 and low displacement cyclic fatigue test, The hybrid wall type damper increased its strength and the ductility was the same as that of the slit damper. In addition, As a result of the two-layer frame test, the reinforced frame had about twice the strength of the unreinforced frame, and the story drift ratio was satisfied to Life Safety Level.