• 제목/요약/키워드: Combined load

검색결과 1,127건 처리시간 0.029초

신뢰도에 근거한 말뚝의 지지력 평가 (Reliability Based Pile Bearing Capacity Evaluation)

  • 이인모;조국환;이정학
    • 한국지반공학회지:지반
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    • 제11권1호
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    • pp.9-22
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    • 1995
  • 본 연구의 목적은 신뢰도해석에 근거한 말뚝의 여러가지 지지력 예측방법들의 안전율을 제시하는데 있다. 각 지지력 결정방법들은 여러가지 불착실성을 포함하고 있으며, 이러한 오차를 고려하기 위해 말뚝재하시험에 의해 측정된 지지력과 예측된 지지력과의 비를 분포함수로 표현할 수 있다. 이 분포함수를 이용하여 파괴확률이 10-3이하가 될 수 있는 말뚝지지력의 안전율을 산정할 수 있다. Bayes' 이론의 적용은 정역학적 지지력 공식을 Prior Distribution으로 가정하고 동역학적 지지력 공식 및 WEAP, PDA를 이용해 산정된 지지력의 분포를 Likelihood Distribution으로 가정하여 적용함으로써 많은 불확실성을 줄일 수 있게 된다. 본 연구결과에서 보면 동역학적 지지력 공식의 안전율은 대략 7.4 정도로 S.P.T.를 이용해 산정된 지지력과 함께 불확실성이 크며, 파동방정식을 이용한 지지력 결정방법인 PDA에 의해 산정된 지지력의 안전율은 약 2.7정도로 가장 신뢰도가 높음을 알 수 있다. 또한 Bayes' 이론을 적용하여 본 결과 안전율을 줄일 수 있었으며 말뚝의 지지력 산정시 이의 응용은 최적설계의 관점에서 많은 도움을 줄 수 있을 것이다.

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병렬 U형 현장타설 에너지파일의 열교환 효율 및 적용성 평가 (Evaluation of Heat Exchange Efficiency and Applicability for Parallel U-type Cast-in-place Energy Pile)

  • 박상우;김병연;성치훈;최항석
    • 대한토목학회논문집
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    • 제35권2호
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    • pp.361-375
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    • 2015
  • 에너지파일은 기존의 수직밀폐형 지중열교환기를 경제적으로 대체할 수 있는 새로운 형태의 지중열교환기이다. 즉, 에너지파일은 건물의 기초 구조물과 지중열교환기의 역할을 동시에 수행하는 에너지 구조체로서, 말뚝 기초 내부에 열교환 파이프를 삽입하고 파이프를 통해 유체를 순환시켜 지반과의 열교환을 유도한다. 본 연구에서는 병렬 U형(5쌍, 8쌍, 10쌍)의 열교환 파이프를 대구경 현장타설 에너지파일에 삽입하여, 3본의 에너지파일을 실규모로 시공하였다. 또한 현장 열응답 시험(In-situ thermal response tests, TRTs)을 수행하고 시공된 현장타설 에너지파일과의 열교환 효율을 비교하기 위하여 30m 깊이의 수직밀폐형 지중열교환기를 별도로 시공하였다. 병렬 U형 현장타설 에너지파일에 대해서는 냉난방 부하를 인공적으로 주입하는 열교환 성능 평가시험을 수행하여 열교환 성능(heat exchange rate)을 평가하였다. 마지막으로 현장타설 에너지파일의 적용성 평가를 위해 산정된 상대 열교환 효율(relative heat exchange efficiency) 및 열교환 성능을 선행 연구 결과와 비교하였으며, 본 연구에서 시공된 현장타설 에너지파일은 안정적이고 효율적인 열성능을 보이는 것으로 나타났다.

진해만 서부 용남·광도해역의 세균학적 수질에 미치는 육상 오염원의 영향 (Impact of Pollution Sources on the Bacteriological Water Quality in the Yongnam-Gwangdo Shellfish Growing Area of Western Jinhae Bay, Korea)

  • 심길보;하광수;유현덕;이태식;김지회
    • 한국수산과학회지
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    • 제45권6호
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    • pp.561-569
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    • 2012
  • To evaluate the bacteriological water quality in Yongnam-Gwangdo, located in western Jinhae Bay, seawater samples were analyzed using sanitary indicator bacteria at 57 sampling stations. According to survey results from January 2007 to December 2009, the range of the geometric mean and the estimated 90th percentile for coliforms and fecal coliforms in the samples were <1.8-16.5 and 1.8-246.8 MPN/100 mL and <1.8-7.1 and 1.8-74.8 MPN/100 mL, respectively. The samples, including those taken from stations located in Wonmunman, Gwangdo, and Dangdong, showed high levels of microbial contamination caused by the climate and weather patterns in the marine environment. The bacteriological water quality in the area met Korean criteria for a designated shellfish growing area for export and National Shellfish Sanitation Program criteria for an approved shellfish growing area, except at station #49. A total of 24 direct pollution sources were discharged into the shellfish growing area. The radius of impact was calculated for each pollution source to assess the effect on the shellfish growing area. The calculated radius of impact for most of the pollution sources was below 300 m. However, the radius of impact for the combined pollution sources in Kyeonnaeryang was 93-1973 m. There were significant differences between the calculated closed sea area and actual monitoring results. The closed sea area values calculated from the fecal coliform load in drainage water tended to be higher than the actual monitoring results. Tidal currents and environmental factors such as salinity, water temperature, sunlight, and microbiological factors affect the survival of fecal indicator bacteria in seawater.

경쟁체제 하에서의 발전소 건설 시스템 다이내믹스 모델 개발 (Development of System Dynamics model for Electric Power Plant Construction in a Competitive Market)

  • 안남성
    • 한국시스템다이내믹스연구
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    • 제2권2호
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    • pp.25-40
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    • 2001
  • This paper describes the forecast of power plant construction in a competitive korean electricity market. In Korea, KEPCO (Korea Electric Power Corporation, fully controlled by government) was responsible for from the production of the electricity to the sale of electricity to customer. However, the generation part is separated from KEPCO and six generation companies were established for whole sale competition from April 1st, 2001. The generation companies consist of five fossil power companies and one nuclear power company in Korea at present time. Fossil power companies are scheduled to be sold to private companies including foreign investors. Nuclear power company is owned and controlled by government. The competition in generation market will start from 2003. ISO (Independence System Operator will purchase the electricity from the power exchange market. The market price is determined by the SMP(System Marginal Price) which is decided by the balance between demand and supply of electricity in power exchange market. Under this uncertain circumstance, the energy policy planners such as government are interested to the construction of the power plant in the future. These interests are accelerated due to the recent shortage of electricity supply in California. In the competitive market, investors are no longer interested in the investment for the capital intensive, long lead time generating technologies such as nuclear and coal plants. Large unclear and coal plants were no longer the top choices. Instead, investors in the competitive market are interested in smaller, more efficient, cheaper, cleaner technologies such as CCGT(Combined Cycle Gas Turbine). Electricity is treated as commodity in the competitive market. The investors behavior in the commodity market shows that the new investment decision is made when the market price exceeds the sum of capital cost and variable cost of the new facility and the existing facility utilization depends on the marginal cost of the facility. This investors behavior can be applied to the new investments for the power plant. Under these postulations, there is the potential for power plant construction to appear in waves causing alternating periods of over and under supply of electricity like commodity production or real estate production. A computer model was developed to sturdy the possibility that construction will appear in waves of boom and bust in Korean electricity market. This model was constructed using System Dynamics method pioneered by Forrester(MIT, 1961) and explained in recent text by Sternman (Business Dynamics, MIT, 2000) and the recent work by Andrew Ford(Energy Policy, 1999). This model was designed based on the Energy Policy results(Ford, 1999) with parameters for loads and resources in Korea. This Korea Market Model was developed and tested in a small scale project to demonstrate the usefulness of the System Dynamics approach. Korea electricity market is isolated and not allowed to import electricity from outsides. In this model, the base load such as unclear and large coal power plant are assumed to be user specified investment and only CCGT is selected for new investment by investors in the market. This model may be used to learn if government investment in new unclear plants could compensate for the unstable actions of private developers. This model can be used to test the policy focused on the role of unclear investments over time. This model also can be used to test whether the future power plant construction can meet the government targets for the mix of generating resources and to test whether to maintain stable price in the spot market.

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공항 콘크리트 포장 구조해석을 위한 3차원 유한요소 모형 개발 (Development of Three-Dimensional Finite Element Model for Structural Analysis of Airport Concrete Pavements)

  • 박해원;심차상;임진선;조남현;정진훈
    • 한국도로학회논문집
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    • 제19권6호
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    • pp.67-74
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    • 2017
  • PURPOSES : In this study, a three-dimensional nonlinear finite element analysis (FEA) model for airport concrete pavement was developed using the commercial program ABAQUS. Users can select an analysis method and set the range of input parameters to reflect actual conditions such as environmental loading. METHODS : The geometrical shape of the FEA model was chosen by considering the concrete pavement located in the third-stage construction site of Incheon International Airport. Incompatible eight-node elements were used for the FEA model. Laboratory test results for the concrete specimens fabricated at the construction site were used as material properties of the concrete slab. The material properties of the cement-treated base suggested by the Federal Aviation Administration(FAA) manual were used as those of the lean concrete subbase. In addition, preceding studies and pavement evaluation reports of Incheon International Airport were referred for the material properties of asphalt base and subgrade. The kinetic friction coefficient between the concrete slab and asphalt base acquired from a preceding study was used for the friction coefficient between the layers. A nonlinear temperature gradient according to slab depth was used as an input parameter of environmental loading, and a quasistatic method was used to analyze traffic loading. The average load transfer efficiency obtained from an Heavy falling Weight Deflectomete(HWD) test was converted to a spring constant between adjacent slabs to be used as an input parameter. The reliability of the FEA model developed in this study was verified by comparing its analysis results to those of the FEAFAA model. RESULTS : A series of analyses were performed for environmental loading, traffic loading, and combined loading by using both the model developed in this study and the FEAFAA model under the same conditions. The stresses of the concrete slab obtained by both analysis models were almost the same. An HWD test was simulated and analyzed using the FEA model developed in this study. As a result, the actual deflections at the center, mid-edge, and corner of the slab caused by the HWD loading were similar to those obtained by the analysis. CONCLUSIONS : The FEA model developed in this study was judged to be utilized sufficiently in the prediction of behavior of airport concrete pavement.

기체/액체 분리막을 위한 3차원 Macropore 채널을 갖는 Superflux 니켈 모세관 지지체의 제조 (Preparation of Superflux Nickel Capillary Support with 3D Macropore Channel Network For Gas Separation and Liquid Filtration Membranes)

  • 송주섭;조철희
    • 멤브레인
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    • 제28권3호
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    • pp.214-219
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    • 2018
  • 본 연구에서는 비용매 유도 상분리와 소결 공정을 혼용하여 기체 및 액체에 대하여 슈퍼플럭스 거동을 보이는 니켈 모세관 지지체를 성공적으로 제조하였다. 니켈 모세관 전구체는 니켈, 폴리술폰, DMAC, PEG를 이용하여 도프용액을 제조한 후 NIPS 공정에 의하여 제조된 후에, 다양한 소결온도에서 수소 분위기 조건에서 소결하여 니켈 모세관 지지체를 제조하였다. 최적의 니켈 모세관 지지체는 $950^{\circ}C$ 소결온도에서 얻어졌는데 외경 $722{\mu}m$, 내경 $550{\mu}m$, 두께 $94{\mu}m$이었다. 니켈 모세관 지지체 기공율은 26%, 평균 기공경은 $4{\mu}m$이었으며 3차원으로 서로 연결된 기공구조를 갖고 있었다. 그리고 파괴하중은 2.84 kgf, 파괴 연신율은 13%이었다. 니켈 모세관 지지체의 He, $N_2$, $O_2$, $CO_2$에 대한 단일 기체 투과도는 상온에서 각각 432,327, 281,119, 264,259, 193,143 GPU로 슈퍼플럭스 거동을 보였다. 이는 3차원적으로 서로 연결된 $4{\mu}m$ 크기 마크로기공을 통하여 viscous flow가 일어났기 때문에 나타나는 현상으로 설명되었다.

바이오매스 및 생분해 촉매제를 이용한 산화생분해 투명 바이오 필름 개발 (Development of Oxo-biodegradable Transparent Bio Films Using Biomass and Biodegradable Catalyst)

  • 유영선;김영태;박대성;최성욱
    • 청정기술
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    • 제23권2호
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    • pp.133-139
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    • 2017
  • 식물로부터 유래하는 바이오매스를 25% 이상 함유하는 바이오 베이스 플라스틱은 탄소배출을 억제하는 효과가 있고, 한정된 자원인 석유의 소비량을 줄일 수 있으며, 산화생분해 첨가제를 추가 적용하면 폐기 후에는 미생물에 의해 생분해되기 때문에 친환경적인 소재로 최근 연구가 활발하다. 본 연구에서는 염화비닐수지에 식물체 유래 가소제, 생분해 촉매제를 첨가하여 생분해성 및 물성변화등을 관찰하였다. 또한 초기 신장율과 인장강도 등의 물성이 우수한 자연에서 분해되는 산화 생분해 투명 바이오 필름을 제조하여 식품포장재로서의 제품 안전성을 시험하였다. 염화비닐 수지와 1차 가소제, 2차 가소제, 방담제, 안정제를 비율에 맞게 투입한 다음, 고속혼합기에서 혼합한 후, 압출성형기를 이용하여 압출한 뒤 냉각 와인더 롤을 통해 두께 $12{\mu}m$의 대조구와 산화생분해 투명 바이오 필름을 제조하였다. 기계적 물성으로 인장강도, 연신율 및 최대하중연신율을 측정하였으며, 생분해 실험을 실시하였다. 식물체 유래 가소제, 생분해 촉매제로 제조된 투명 바이오 필름은 대조구 대비 인장강도 및 연신율이 큰 차이가 없는 것으로 나타났다. 또한 ASTM D 6954-04 방법에 따라 45일간 생분해 테스트를 한 결과 표준물질인 셀룰로오스 분말 대비 61.4%의 생분해를 나타내었다.

확장된 상부플랜지 PSC I형 거더교의 동특성 및 동적안정성 분석 (Dynamic Response of PSC I shape girder being used wide upper flange in Railway Bridge)

  • 박종권;장판기;차태권;김찬우;장일영
    • 한국구조물진단유지관리공학회 논문집
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    • 제19권4호
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    • pp.125-135
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    • 2015
  • 철도교량의 경제성 확보를 전제로 PSC I형 거더의 장경간화 추세는 근간에 가장 활발히 진행되고 있는 연구이며, 이에 따른 교량의 강성확보를 위한 거더의 효율적인 기하형상 선정은 우선시 되어야할 과제이다. 본 연구에서는 회전반경과 휨효율을 기반으로 확장된 상부플랜지의 거더 단면을 선정하였으며, 본 거더가 적용된 경간장 25m, 30m, 35m, 40m PSC I형 거더교를 대상으로 수치해석을 수행하여 국내 및 국외의 동적성능 기준과의 부합여부를 검증하였다. 또한 경간장 40m PSC I형 거더의 동적성능을 상대적으로 비교하기 위해서 현재 호남고속철도에서 적용된 40m PSC Box 거더교를 대상으로 동적 해석을 수행하였고 KTX열차와 화물열차 주행 시의 동적안정성을 수치해석적으로 검토하여 국내 및 국외의 동적 안정성 기준과 부합여부를 검토하였다. 추가로 표준열차하중과 충격계수를 고려하여 정적해석을 수행하고 한계치와의 부합여부를 분석하였다. 그 결과, 검토대상 PSC I형 거더 철도교는 모든 항목에서 국내 철도교량 관련 정적, 동적안정성 기준치를 만족하는 것으로 분석되었다.

Impacts of wave and tidal forcing on 3D nearshore processes on natural beaches. Part I: Flow and turbulence fields

  • Bakhtyar, R.;Dastgheib, A.;Roelvink, D.;Barry, D.A.
    • Ocean Systems Engineering
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    • 제6권1호
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    • pp.23-60
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    • 2016
  • The major objective of this study was to develop further understanding of 3D nearshore hydrodynamics under a variety of wave and tidal forcing conditions. The main tool used was a comprehensive 3D numerical model - combining the flow module of Delft3D with the WAVE solver of XBeach - of nearshore hydro- and morphodynamics that can simulate flow, sediment transport, and morphological evolution. Surf-swash zone hydrodynamics were modeled using the 3D Navier-Stokes equations, combined with various turbulence models (${\kappa}-{\varepsilon}$, ${\kappa}-L$, ATM and H-LES). Sediment transport and resulting foreshore profile changes were approximated using different sediment transport relations that consider both bed- and suspended-load transport of non-cohesive sediments. The numerical set-up was tested against field data, with good agreement found. Different numerical experiments under a range of bed characteristics and incident wave and tidal conditions were run to test the model's capability to reproduce 3D flow, wave propagation, sediment transport and morphodynamics in the nearshore at the field scale. The results were interpreted according to existing understanding of surf and swash zone processes. Our numerical experiments confirm that the angle between the crest line of the approaching wave and the shoreline defines the direction and strength of the longshore current, while the longshore current velocity varies across the nearshore zone. The model simulates the undertow, hydraulic cell and rip-current patterns generated by radiation stresses and longshore variability in wave heights. Numerical results show that a non-uniform seabed is crucial for generation of rip currents in the nearshore (when bed slope is uniform, rips are not generated). Increasing the wave height increases the peaks of eddy viscosity and TKE (turbulent kinetic energy), while increasing the tidal amplitude reduces these peaks. Wave and tide interaction has most striking effects on the foreshore profile with the formation of the intertidal bar. High values of eddy viscosity, TKE and wave set-up are spread offshore for coarser grain sizes. Beach profile steepness modifies the nearshore circulation pattern, significantly enhancing the vertical component of the flow. The local recirculation within the longshore current in the inshore region causes a transient offshore shift and strengthening of the longshore current. Overall, the analysis shows that, with reasonable hypotheses, it is possible to simulate the nearshore hydrodynamics subjected to oceanic forcing, consistent with existing understanding of this area. Part II of this work presents 3D nearshore morphodynamics induced by the tides and waves.

Experimental and numerical investigations on remaining strengths of damaged parabolic steel tubular arches

  • Huang, Yonghui;Liu, Airong;Pi, Yong-Lin;Bradford, Mark A.;Fu, Jiyang
    • Steel and Composite Structures
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    • 제34권1호
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    • pp.1-15
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    • 2020
  • This paper presents experimental and numerical studies on effects of local damages on the in-plane elastic-plastic buckling and strength of a fixed parabolic steel tubular arch under a vertical load distributed uniformly over its span, which have not been reported in the literature hitherto. The in-plane structural behaviour and strength of ten specimens with different local damages are investigated experimentally. A finite element (FE) model for damaged steel tubular arches is established and is validated by the test results. The FE model is then used to conduct parametric studies on effects of the damage location, depth and length on the strength of steel arches. The experimental results and FE parametric studies show that effects of damages at the arch end on the strength of the arch are more significant than those of damages at other locations of the arch, and that effects of the damage depth on the strength of arches are most significant among those of the damage length. It is also found that the failure modes of a damaged steel tubular arch are much related to its initial geometric imperfections. The experimental results and extensive FE results show that when the effective cross-section considering local damages is used in calculating the modified slenderness of arches, the column bucking curve b in GB50017 or Eurocode3 can be used for assessing the remaining in-plane strength of locally damaged parabolic steel tubular arches under uniform compression. Furthermore, a useful interaction equation for assessing the remaining in-plane strength of damaged steel tubular arches that are subjected to the combined bending and axial compression is also proposed based on the validated FE models. It is shown that the proposed interaction equation can provide lower bound assessments for the remaining strength of damaged arches under in-plane general loading.