• 제목/요약/키워드: short columns

검색결과 194건 처리시간 0.018초

항만유통의 컨테이너 재정돈 성능요인에 따른 알고리즘 성능비교 (Comparison of Algorithm based on the Container Remarshalling Efficiency Factor in Port Distribution)

  • 박영규
    • 유통과학연구
    • /
    • 제14권5호
    • /
    • pp.107-114
    • /
    • 2016
  • Purpose - Loading can decrease the productivity due to the possibility of carrying out with the opposite order of storage in container terminal. When the container is to be taken out, it is needed to move the container stacked upon the container to be carried out to other place temporarily. It is called as rehandling. Remarshalling, with the loading plan, is the arranging the containers before the ship arrives in order to avoid the rehandling during the carrying out. The present study tried to find out the factors affecting the efficiency when building the remarshalling plan with the utilization of neighboring storage space as a outer slot, and analyzed the efficiency of several remarshalling algorithms with the combination of those factors. Research design, data and methodology - The present study used, when the remarshalling plan is prepared for utilizing the outer slot, the simulation methods in order to compare the efficiency of the remarshalling algorithms which made with the factors affecting the efficiency. The factors affecting the efficiency are the method of making the child node, method of arrangement, and possibility of application of FIX. In order to analyze the affecting factors on the efficiency, several algorithms are prepared with the combination of production of the child node and the arrangement method with the availability of FIX application. With this algorithm, the effect of the factors on the efficiency after building up of remarshalling plan with the target on the bay with 10 rows, 8 columns, and 10 indices. Results - The method of rearrangement and making of a child node as the factor affecting the efficiency of remarshalling utilization of the outer bay were studied. It is efficient to combine the method of making a child node with MCS in order to reduce the number of moving the containers. For reducing the time in carrying out, it was found that all arrangement methods should be combined with RCS for the efficiency. The result of experiment shows the application of FIX with good result in case of succession ratio. In addition, when FIX was not applied, all of the most combinations resulted in short time in remarshalling. As a result, it can be concluded that the algorithm with proper combination of making the child node and the arrangement can increase the job efficiency based on the importance. Conclusion - The present study suggested and analyzed the algorithms with the combination of the arrangement method, the making of child node, and FIX. It is needed to develop the algorithm to judge the possibility whether the best remarshalling plan can be built or not within the bay in order to find a better method between the two cases such as within the bay and outer the bay. As a method for extending the study on the factors affecting the efficiency, it is possible to find out the way to build the remarshalling plan within the permitted time under any storage situation.

토양중 fenoxaprop-P-ethyl의 흡착성 및 이동성 (Adsorption and Movement of Fenoxaprop-P-ethyl in Soils)

  • 한수곤;안병구;문영희
    • 한국잡초학회지
    • /
    • 제18권4호
    • /
    • pp.325-332
    • /
    • 1998
  • 미사질식토와 사양토 중 fenoxaprop-P-ethyl의 흡착성과 이동성에 대하여 연구 검토하였다. 두 토양 중 fenoxaprop-P-ethyl은 진탕 30분 후에 약 15%가 흡착되었으며 8~14시간 후에는 의사평형에 도달하였고 50%가 흡착되는 시간은 미사질식토에서 15.8시간, 사양토에서 19.3시간이었다. 본 제초제의 흡착은 Freundlich식에 따랐으며 흡착분배계수(Kd)값은 미사질식토에서 3.86, 사양토에서 2.32이었다. 두 토양의 컬럼에서 fenoxaprop-P-ethyl은 처리 7일 후에는 6cm, 21일 후에는 8cm까지 이동되었으나, 이동성은 누수량의 증가와 더불어 증가되었다. 포장조건의 두토양 중 fenoxaprop-P-ethyl은 처리 14일 후에는 6cm층위까지, 56일 후에는 8cm 층위까지 이동되었다. 그러나 어느 경우이든 처리된 fenoxaprop-P-ethyl의 대부분은 0-2cm 층위에 존재하였다. Fenoxaprop-P-ethyl의 반감기는 1주 이내이었으며 처리 4주 후에는 처리량의 약 90%정도까지 분해되었다. 이상의 결과를 종합하여 볼 때 토양 중 fenoxaprop-P-ethyl은 비교적 이동성이 작고 분해가 빠른 편인 바 주변환경에 대한 위해성이 낮을 것으로 사료된다.

  • PDF

고층 벽식 아파트의 지진해석을 위한 등가모델 (An equivalent model for the seismic analysis of high-rise shear wall apartments)

  • 김태완;박용구;김현정;이동근
    • 한국지진공학회논문집
    • /
    • 제11권5호
    • /
    • pp.11-21
    • /
    • 2007
  • 현재 국내에서도 내진설계에 대한 요구 및 관심이 증가하여 지진해석의 필요성이 증대되고 있다. 특히 벽식 아파트는 주거용으로 가장 많이 건설되고 있어 내진설계를 위한 지진해석이 활발히 수행되고 있다. 지진해석을 위해 벽식 아파트 전체를 유한요소로 세분화하여 모형화하는 것은 시간 및 노력에 있어 효율적이지 못하다. 따라서 자유도를 감소시키면서 실제 구조물의 동적 거동을 정확히 표현할 수 있는 등가모델이 필요하다. 본 연구에서는 구조물의 변형형상과 밀접한 관계가 있는 유효질량계수를 이용하여 간편하게 사용할 수 있는 등가모델 구성방법을 제안하였다. 이 등가모델은 기둥과 보로 구성된 골조구조물을 사용하여 벽식 구조물을 등가의 모델로 치환하였다. 등가모델은 어떤 상용프로그램에서도 쉽게 적용할 수 있으며, 해석시간단축이 가능하여 단시간 다양한 지진에 대한 해석이 필요한 경우 매우 유용하게 사용될 수 있다. 또한 등가모델은 바닥슬래브를 모형화 할 수 있어 실제 벽식 아파트의 거동을 잘 표현할 수 있다. 더욱이 등가모델은 구조물의 비대칭성을 표현할 수 있어 매우 우수하다.

Experimental and analytical study of squat walls with alternative detailing

  • Leonardo M. Massone;Cristhofer N. Letelier;Cristobal F. Soto;Felipe A. Yanez;Fabian R. Rojas
    • Computers and Concrete
    • /
    • 제33권5호
    • /
    • pp.497-507
    • /
    • 2024
  • In squat reinforced concrete walls, the displacement capacity for lateral deformation is low and the ability to resist the axial load can quickly be lost, generating collapse. This work consists of testing two squat reinforced concrete walls. One of the specimens is built with conventional detailing of reinforced concrete walls, while the second specimen is built applying an alternative design, including stirrups along the diagonal of the wall to improve its ductility. This solution differs from the detailing of beams or coupling elements that suggest building elements equivalent to columns located diagonally in the element. The dimensions of both specimens correspond to a wall with a low aspect ratio (1:1), where the height and length of the specimen are 1.4 m, with a thickness of 120 mm. The alternative wall included stirrups placed diagonally covering approximately 25% of the diagonal strut of the wall with alternative detailing. The walls were tested under a constant axial load of 0.1f'cAg and a cyclic lateral displacement was applied in the upper part of the wall. The results indicate that the lateral strength is almost identical between both specimens. On the other hand, the lateral displacement capacity increased by 25% with the alternative detailing, but it was also able to maintain the 3 complete hysteretic cycles up to a drift of 2.5%, reaching longitudinal reinforcement fracture, while the base specimen only reached the first cycle of 2% with rapid degradation due to failure of the diagonal compression strut. The alternative design also allows 46% more energy dissipation than the conventional design. A model was used to capture the global response, correctly representing the observed behavior. A parametric study with the model, varying the reinforcement amount and aspect ratio, was performed, indicating that the effectiveness of the alternative detailing can double de drift capacity for the case with a low aspect ratio (1.1) and a large longitudinal steel amount (1% in the web, 5% in the boundary), which decreases with lower amounts of longitudinal reinforcement and with the increment of aspect ratio, indicating that the alternative detailing approach is reasonable for walls with an aspect ratio up to 2, especially if the amount of longitudinal reinforcement is high.