• 제목/요약/키워드: FRP Fishing Boats

검색결과 18건 처리시간 0.022초

FRP 폐어선 관리 실태와 재활용 기술 경쟁우위에 관한 연구 (A Study on Management Status of Disposed FRP Fishing Boats and Competitive Advantages of Third Recycling Technology)

  • 고동훈;손영태
    • 수산경영론집
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    • 제54권3호
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    • pp.93-114
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    • 2023
  • Around the 1980s, with government's promotion and dissemination policies for FRP (Fiberglass Reinforced Plastics) of the government as a main material of fishing boats, approximately 97% of the entire fishing boats in Korea have utilized FRP until now. Nevertheless, diverse social and environmental issues have emerged due to the susceptibility to fire and the generation of substances detrimental to human health during the construction process of FRP fishing vessels. Especially, the high disposal cost and the limitation of recycling technology in the disposal process of FRP fishing boats have elicited attention to circular economy. This research intended to grasp the management status and problems of disposed FRP fishing boats in Korea, and to assess the level of competitive advantage of FRP fishing boats' recycling technologies of FRP fishing boats based on VRIO (Value, Rarity, Imitability, Organization) analysis through domestic and foreign management policies and related recycling examples. According to the survey of 161 respondents, including the industry, stakeholders and experts related to the collection, treatment and recycling of fisheries wastes, it was revealed that FRP fishing boats' recycling technologies of FRP fishing boats are at the level of 'unused competitive advantage' that satisfied the level of value, rarity and imitability, but not the level of organization.

알루미늄 합금제 어선건조를 위한 선체구조기준 설정에 관한 연구 (A Study on the Standard of Ship Hull Construction for Aluminium Alloys Fishing Boats)

  • 홍봉기
    • 수산해양교육연구
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    • 제12권1호
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    • pp.22-82
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    • 2000
  • The ship hull construction materials of fishing boat has changed in order that wooden, steel, and fiber glass reinforced plastic(FRP). The fishing boat made from FRP has increased every year because that materials has proved excellent of the characteries for fishing boats construction members. Recently, FRP tend towards evasion for the pollution of air enviroment. Therefore. the materials of fishing boat construction must be exchanged by another one. Aluminium alloys must be recommended for fishing boats construction mateials because that is light weight and corrosion resisting in the sea water. Regulation of the standard of ship hull construction for aluminium alloys fishing boats did not enact laws in the interior now. Therefore, this regulation was studied by the following items. that is Rudder, Bottom construction, Side hull plate construction, Deck plate construction, piller. Water tight bulkhead, Deep tank, Fish tank, Stern construction, Superstructure, Deck house construction, Hatch, Engine room opening, Hatch opening, Bulwark, Welding and Rivet etc. A study on the regulation will be contributed to enact laws for fishing boat construction of aluminium alloys.

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외판 전개를 응용한 무형틀 FRP선박 건조방법 (Production Method of FRP Boat Using Developable Surface without a Mould)

  • 양지만;하윤석;김효철
    • 대한조선학회논문집
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    • 제42권5호
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    • pp.506-515
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    • 2005
  • Novel ships are commonly required iterative hull form modifications until she get reputation for new marine environment. Small FRP boats are manufactured in a identical shape with a mould. It implies that every modification step requires great time and expense which makes it difficult to improve the hull form promptly. Domestic hull form of small fishing boat of force has been evolved from the traditional hull form of developable shape. Utilizing this typical developable characteristics of small boats, ,New mouldless production method for FRP boat has been suggested and it is confirmed that the method is recommendable for a petty order of hull in evolving period of hull form development.

소형 알루미늄 어선 3종의 고유진동 특성 분석 (Characterizing the Natural Frequencies of Three Small Aluminum Fishing Boats)

  • 김대현;홍현진;이상목;손영태;문병영
    • 대한조선학회논문집
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    • 제60권5호
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    • pp.388-396
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    • 2023
  • As the government encourages the replacement of small FRP ships with eco-friendly aluminum ships due to environmental pollution problems, interest and demand for small aluminum ships are increasing. It is known that the vibration and noise of aluminum ships are somewhat vulnerable than that of FRP ships. However, in the process of designing and manufacturing small aluminum fishing boats, vibration and noise are not reviewed. In this study, vibration analysis is performed on three existing aluminum fishing boats, and the vibration characteristics of small aluminum boats are identified. Through this study, we intend to contribute to improving the vibration quality of small aluminum ships.

소형어선의 소음에 관한 연구 (A Study on the Airborne Noise of the Small Fishing Boats)

  • 양용수;정공흔;서두옥
    • 수산해양기술연구
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    • 제28권4호
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    • pp.412-417
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    • 1992
  • In full-speed cruising, the airborne sound pressure levels are measured from 11 small fishing boats operated around Cheju Island. In these measurement, 9 measuring positions are selected in each fishing boats. The results of measurements and analyses are as follows: 1. The sound pressure levels in FRP boats are higher than those in wooden boats. 2. The highest sound pressure level is 112dB(A) at the engine room in C boat, while the lowest one is 72dB(A) at the front deck in K boat. 3. The highest sound pressure level is shown to be in the frequency band less than 500Hz. 4. The highest sound pressure level is shown to be in the frequency band less than 500Hz. 5. Through all 9 positions, the sound pressure levels are higher in B and C boat and lower in E and K boats.

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AL계 희생양극에 의한 2종스테인리스 강축의 음극방식 실용화 연구 (Study of Practical Cathodic Protection of 2nd Class Stainless Steel Shaft by means of Al Sacrificial Anode)

  • 손영태;이명훈;이희준
    • 선박안전
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    • 통권22호
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    • pp.34-53
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    • 2007
  • In the case of hull material. large sized merchant ships are made of steel, on the other hand FRP or wood are used for small sized fishing boats. At present in Korea approximately 88,500 fishing boats are in operation of which 70% are made of FRP In the meantime, stainless steel is frequently used as shaft materials of the small-size FRP fishing boat. Namely, the kinds of shaft materials are STS 304(18Cr-8Ni), STS 316(18Cr-12Ni-2.5Mo steel) and STS 630(17Cr-Ni-Nb steel)etc. Among these things, STS 304 which is the cheapest and having ordinary corrosion resistance is most widely used as 2nd class shaft material. But, using STS 304 for shaft system material of the small-size FRP fishing boat on seawater environments entails a severe corrosion which causes shaft system troubles. Particularly, the corrosions tend to be concentrated of the stern and bow side, propeller shaft surface of inside of stern tube and the boat having no stern cooling pipe line system. As a solution for those problems, research on the ways to mitigate corrosion on the part of 2nd class stainless steel shaft have been undertaken. In the result, not only clarification for the reason of corrosion of the part of stainless steel shaft used mainly for the small-size FRP fishing boat was done, but also most optimal corrosion protection system was developed by experimenting shaft's protection simulation based of the electrochemical cathodic protection principle. In addition, verification through the field test on the optimal cathodic corrosion protection method by means of aluminum sacrificial anode was carried out. In this study, effective and economical shaft's protection system is suggested to the small-size FRP fishing boat operator by substantiating the results obtained from the research on the optimal cathodic protection.

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FRP 복합재료 방향타 장착 근해어선의 해상시운전시험 결과분석 (Result Analysis of Sea Trial Test for Offshore Fishing Boat Attached FRP Rudder)

  • 박충환;장호윤;박명식;임남균
    • 한국해양공학회지
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    • 제27권6호
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    • pp.112-118
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    • 2013
  • This paper reports the results of a comparative study on rudder performance between the steel rudders that have been used in coastal angling fishing boats in the 20-GT class and the newly developed FRP composite material rudders. In order to compare the rudder performances of these two types, a sea trial test was carried out to investigate the speed performance, fuel consumption, and ship's turning ability. The results showed that the sea trial performance of the FRP composite rudder was better than that of the steel rudder type in terms of the sea speed, fuel consumption rate, and turning ability.

낚시 어선의 U형 어창을 이용한 횡요 감쇠에 관한 연구 (A study for rolling reduction of fishing boat by utilizing u-type fish-hold)

  • 최찬문;안장영
    • 수산해양기술연구
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    • 제44권2호
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    • pp.148-156
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    • 2008
  • In this study it will be discussed how to solve the problem of discomfort from rolling motion on the fishing boats. Most discomfort is caused by the short cycle of rolling due to the light weight of the boats. The light weight is due to the FRP material which dries a boat. A way to improve the feeling of boarding by using fish hold was researched. The experiment was done on experimental fishing boat made by FRP in Jeju. An existing fish hold was designed and manufactured through the rolling test and that was used for a marine experiment. The rolling condition of the U-tank boat ideally designed was compared to that of an existing fishing boat using the same conditions. The experiments were carried out two times on the stop engine in the outward Sehwa fishing port, which the experimental data had analysed for effects of rolling reduction to compare the U - tank with the of exiting fish hold. The results were confirmed that the U-boat tank in the roll period and GoM were more safe than the existing fish hold and the average amplitude and significant of rolling angles were decreased relatively.

FRP 어선 보수에 적용되는 겔코트의 해수 침투 방지 효과 (The Prevention Effect of Seawater Penetration of Gel Coat Applied in Repair of FRP Fishing Vessel)

  • 강대곤;박재학
    • 한국안전학회지
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    • 제33권6호
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    • pp.15-21
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    • 2018
  • Ships may collide with reefs or other objects during operation, when arriving or departing ports. The hull plate may be damaged due to the contact with other ships. The total number of domestic powered fishing vessels has decreased, but that of FRP fishing vessels has increased by 0.7% and the ratio of FRP fishing vessels to the total fishing vessels increased to 96%. Recently, fishing vessels has been used as fishing boats for income of non-fishermen as well as fishermen. Therefore, safety management for repair and maintenance is necessary. The penetration of moisture and moisture in the composite material such as FRP may deteriorate the mechanical properties and the salt (NaCl) component of the damaged portion may cause a relatively high deterioration in material strength. The gel coat painting is the final stage of repairs ans maintenance of FRP fishing vessels. The thickness criteria in the domestic and foreign gel coat is 0.3~0.762 mm. The joint specimens, which was immersed in seawater for 120 days, were compared with those without seawater immersion. As a result, the tensile strength was 83 ~ 121.8% and the flexural strength was 83 ~ 113% compared with the specimens without seawater immersion. According to the previous study the tensile strength decreased by more than 29% and the flexural strength decreased by more than 50% when the composite material was immersed in seawater for 1,083 hours without coating. As a result, it was found that the gel coat with 0.5 mm thickness is very effective in preventing the strength decrease of the composite material.

여러 가지 충돌 상황에 따른 FRP 어선 간의 충돌 해석 (Collision Analysis between FRP Fishing Boats According to Various Configurations)

  • 장인식;김용섭;김일동
    • 한국해양환경ㆍ에너지학회지
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    • 제9권4호
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    • pp.253-262
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    • 2006
  • 경제규모의 증대와 더불어 해상물동량이 많아지고 운행하는 선박의 숫자가 증가함에 따라 해상에서의 해난 사고가 빈번하게 발생하고 있다. 선박의 충돌 사고에 대한 연구는 주로 충돌 사고의 원인 분석에 중점을 두어 왔으나 보다 정확한 분석을 위해서는 역학적인 해석이 더 첨가되어야 한다. 본 연구는 FRP 재질의 어선간의 여러 충돌 상황에서의 시간에 따른 변형 거동에 대한 것이다. 선체에 대한 3차원 기하학적인 모델링을 수행 한 후, 유한요소 모델을 구성하고 역학적인 해석 기법인 유한 요소법을 이용하여 동적 해석을 수행하였다. 7.93톤급의 소형어선과 39톤급의 대형어선을사용하고 두 가지의 충돌각도($90^{\circ},\;135^{\circ}$)와 세 가지의 충돌속력(5, 10, 15 노트)의 조건을 조합하여 해석을 수행하였으며 각각의 경우에 대하여 응력분포와 변형상태를 살펴보았다. 전체적으로 $90^{\circ}$ 충돌 각도에서 $135^{\circ}$ 경우보다 응력이 컸으며, 두 선박이 모두 운항 중에 발생하는 충돌에서 더 큰 최대 응력이 발생하였다. $90^{\circ}$ 충돌각도의 경우 소형어선 간 충돌이나 소형 어선과 대형 어선간의 충돌에서도 충돌하는 전체의 선수부보다 충돌당하는 선체의 측면 부위에서 큰 응력이 발생하였다. $135^{\circ}$ 충돌각도로 정지된 소형 어선과 대형어선이 충돌하는 경우에는 대형 어선에서 치대 응력이 발생하였다. 150 ms의 해석시간인 경우 $90^{\circ}$ 충돌각도에서는 10knot, 15knot 모두 충돌하는 선체나 층돌 당하는 선체에서 파단이 발생하는 것으로 나타났다. 해석 결과는 추후에 부분 별 강도를 고려한 선체의 설계나 충돌사고재구성을 위한 기초 데이터로 사용될 수 있다.

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