해안항만 분야 문제해결을 위하여 여러 가지 방법이 적용되어 왔다. 특히 전통적으로 수행되어온 방법으로는 수리모형실험과 수치해석을 들 수 있다. 특히 수치해석의 경우 컴퓨터의 발전과 더불어 수치기법의 다양화, 3차원 해석, 계산영역의 확대, 다양한 변수의 적용 등 많은 발전이 이루어져 왔다. 수리모형실험에 있어서도 전자장비의 발전과 더불어 조파장치의 발달, 첨단계측장비의 개발 등 많은 개선이 이루어져 왔다.
그렇지만 여전히 수리실험은 원형의 성능을 사전에 파악하고, 또한 지배적인 외력을 대상으로 실험을 실시하여 원형에서의 현상을 미리 예측하고 분석하여 대응방법을 세우는 것이 목적이다. 이러한 수리실험을 수행하기 위해서는 실험목적을 달성하기 위하여 실험장비 적용 및 한계, 실험자의 적절한 경험이 필요하다. Hughes(1993)은 실험자의 경험에 의한 수리모형의 설계가 실험의 단계에 있어 가장 중요하다고 제시하고 있다.
본 발표에서는 기존 연구자료(Hughes, 1993; HydralabⅢ, 2011)에서 제시하고 있는 기본적인 수리실험의 적용한계 및 장비구성 등에 대하여 기술하며, 국내외 대표 실험인프라에 대하여 소개하고자 합니다. 그리고 특히 유럽내 Hydralab의 사례를 바탕으로 국내 해안항만 실험 연구분야 및 실험인프라의 활성화에 대한 제언을 하고자 합니다.
The characteristics of circulation in the coastal area of Jeju Harbor in Korea was examined using the Princeton Ocean Model(POM) with a sigma coordinate system. The result of numerical analysis well corresponded to the observed current data. The velocity at offshore was stronger compared to coastal area during the both period of in maximum flood and maximum ebb of spring tide. According to mean wind velocity, the tidal velocity at the shallow area of Jocheon was slightly increasing during maximum ebb. The effect of wind on the circulation was stronger in shallow area and showed rapid change with depth.
The aim of paper is to calculate the optimized size of Mobile Harbor(MH) which would be operated in South Korea coast area. MH is the combined entity which has the function of both ship and container port. In estimating the optimized size, the total cost concept is applied to the different size of MH. Trade-off factors for calculating total cost are MH cost and the over-capacity lost cost. The factors for MH cost estimation are the cargo demand, distance from origin to destination, voyage route and MH's fixed and variable cost in both sailing and port. The other cost is the over-capacity lost cost which is occurred from dead space in case of oversize compared with a voyage demand. The alternatives for the least cost are 250TEU, 500TEU, 750TEU and 1,000TEU sized vessel. The result of research is that 250TEU sized vessel is optimized in a South Korea costal service. If the coastal area be separated in terms of voyage distance or the specific area in considering trade, the optimized size is changed depending upon distance.
컨테이너 물동량 증가와 함께 선박의 대형화는 항만과 터미널 운영에 많은 영향을 주었고, 선사들의 운송네트워크들은 점차 hub-and-spoke방식으로 변하고 있다. 이는 항만간 치열한 경쟁을 초래하였고 그로 인해 새로운 항만을 개발하거나 기존 항만을 확장해야 하는 압력들을 받아왔다. 그러나 항만 개발에 따른 환경적 물리적 재무적 한계를 극복하기에는 너무나 많은 비용과 시간의 투자를 요구하고 있다. 그래서 본 연구에서는 하나의 대안으로서 새로운 해상 운송시스템인 모바일하버를 다루었다. 그리고 컨테이너 연안운송시장을 중심으로 모바일하버 도입에 대한 경제적 분석과 함께 관련 요인들의 변화들에 대한 민감도 분석도 같이 수행하였다. 본 연구는 모바일하버의 가치와 활용방안에 대한 기초 연구로서 추후 관련 연구들에 대해 기여하고자 하였다.
Gunsan-Janghang Harbor is located at the mouth of Gum River, on the central west coast of Korea The harbor and coastal boundaries are protected from the effects of the open ocean by natural coastal islands and shoals due to depositions from the river, and two breakwaters. The navigation channel commences at the gap formed by the outer breakwater and extends through a bay via a long channel formed by an isolated jetty. For better understanding and analysis of wave transformation process where a wide coastline changes appear due to on-going reclamation works, we applied the spectral wave model including wind effect to the related site, together with the energy balance models. This paper summarizes comparisons of coastal responses predicted by several numerical wave predictions obtained at the coastal waters near Gunsan-Janghang Harbor. Field and numerical model investigations were initially conducted for the original navigation channel management project. We hope to contribute from this study that coastal engineers are able to use safety the numerical models in the area of port and navigational channel design.
A study on the changes of the oceanographical environment caused by Mokpo coastal zone development was carried out. Special emphasis was placed on the clarification of the water level changes and coastal current structure and influence of the environmental factors on the coastal area. In order to understand the structure oceangraphical environemnt, such as water temperature, salinity, suspended solids, pH, dissolved oxygen, chemical oxygen demand, biochemical oxygen demand, distribution of bottom sediment, tide and current were measured. To investigated the structure of tide and current for the future development, a numerical analysis was carried out. In certain zones, it was found to be flooding problems near the lowlying commercial area.
The change of water level at Mokpo Harbour and its adjacent coastal area due to the construction of the Youngsan Estuary Barrage and the Third Land Reclamation Work of estuary barren had been roughly expected. Periodical floods, which occur 2 times per month, are also being observed at the low lying commercial areas near the Mokpo Old Harbor. Although it is said that the highest tidal current component among the tidal current records at the approaching channel to Mokpo Harbor is reduced to 6 kts, because of the esturary barrage, they do not give any precise statement or a deep analysis for the flooding and periodical water level change under certain environmental conditions. Moreover, they never tried the analysis of development plan considering the natural disaster such as typhoon or other extreme conditions. Thus, it is necessary to collect and analyze the data related to floodings, harbor oscillations, currents, and water quality , etc. because of the development considering the extreme condition. Thus, it is necessary to collect and analyze the data related to floodings, harbor oscillations, currents, and water quality, etc. because of the development considering the extreme condition and to evaluate the field observation and measurement, including the numerical model simulation based on the scientific approaches. This study deals the problem of the water level change among the integrated analyses of the coastal area changes. The result can be used for the integrated planning to give a strong foundation and it will contribute to the development of local area.