• 제목/요약/키워드: NetFlow

검색결과 1,067건 처리시간 0.031초

파동에 의한 모형정치망의 형상변화와 어류대망행동 - 파동에 의한 모형정치망의 형상과 장력변화 - (Shape of the model pound net affected by wave and fish behavior to the net - Shape and tension of the model pound net affected by wave -)

  • 이주희;권병국;윤일부;김삼곤;유제범;김부영;김병수;이혜옥
    • 수산해양기술연구
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    • 제43권2호
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    • pp.101-115
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    • 2007
  • The pound net fishery is very important one in Korean coastal fishery and it need to grasp the characteristics of the net affected by many factors. It is considered that the structure and the shape of the pound net can be changed by the direction and speed of current, wave height, depth and conditions of sea bed. However, most of all, the speed of current and wave height influence more upon the pound net than any other factors to deform and flutter. In this study, author carried out the experiments with a model of double one-side pound net made by the similarity law as 1:100 scales at a real experimental area, and additionally the model net experiments were conducted in the circulating water channel in Pukyong National University. The author analyzed the data of transformation of shape and tension of the model pound net to recognize the characteristics of the current and wave acting on it. Regardless of the direction of flow affecting on the fish court net or bag net, the deformed angle and depth to the side panel and bottom of box nets becomes bigger as the wave gets higher and the period of wave is faster. The tension in both upward or downward tends to be changed by the speed of wave. Those value of changes occurred similarly in either fish court net or bag net. Generally, when bag net is located at upward of flow, the value of tension was bigger 10% than any other location or nets. Regardless of the setting direction, the tension of the pound net is increased in proportion to flow speed, wave height and period of wave, and it becomes bigger about 15-30% at upward to flow than downward. Where the flow is upward in the court net, the tension in the wave increased to 37% compared to the one in the flow only in the condition of flow of 0.1-0.3m/s. Where the flow is upward in the bag net, the tension in the wave increased to 52% in the flow of 0.1m/s, and the tension increased to 48% in the flow of 0.2-0.3m/s.

정치망 어구어법의 개발에 관한 연구-I - 현용어구의 흐름에 대한 형상 변화 - (A Study on Improvement for Fishing Gear and Method of Pound Net - I - Net Shapes of the Commerical Net in the Flow -)

  • 윤일부;이주희;권병국;조영복;유제범;김성훈;김부영
    • 수산해양기술연구
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    • 제40권4호
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    • pp.268-281
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    • 2004
  • 본 연구는 실제 정치망 어장에서의 조류에 따른 어구 형상 변형을 추정하고, 그 변형을 최소화시키며 어구의 기본 기능을 유지시키는데 필요한 수중 현상과 어구 내부용적을 적절하게 유지할 수 있는 설계의 기본 자료를 얻기 위한 목적으로 회류 수조에서 모형실험을 실시하였으며, 흐름에 따른 대뜸의 멍줄에 작용하는 장력, 정치망 내의 유속변화와 그물형상의 변화를 측정하였다. 1. 유속이 0.0m/s에서 0.6m/s로 증가 할 때에 유속 (v)에 따른 장력(R)의 실험식은 운동장 조상의 경우 R=$19.58v^{1.98}$($r^2$=0.98) 원통 조상인 경우, R=$26.90v^{1.72}$($r^2$=0.95)이었다. 2. 유속변화는 흐름이 망내부를 통과함에 따라 감소하여 운동장이 조상인 경우, 제1원통내부에서 0.1m/s일 때 약 70%, 0.2m/s일 때 60%, 0.3m/s일 때 약 50%, 0.4~0.6m/s에서는 약 40%정도로 초기유속에 비해 감소하였다. 원통이 조상측일 경우, 제2원통을 통과한 흐름은 초기 유속의 약 30~60%로 급격히 감소하였고, 제1원통에서는 약 20~30% 비탈그물에서는 약 10~20%정도 감소하였고, 운동장내에서 다시 유속이 증가하였다. 3. 운동장이 흐름의 조상측인 경우, 운동장그물의 기울기 변화량은 0~70$^{\circ}$까지, 비탈그물은 0~63$^{\circ}$까지 변화하였고, 조하측인 제2원통은 0~47$^{\circ}$까지 변화하였다. 유속이 증가함에 따른 까래그물의 깊이 변화는 초기 깊이에 보다 제1원통과 제2원통이 약 0~45%정도, 비탈그물이 약 0~37% 정도로 감소하였다. 4. 원통이 흐름의 조상측인 경우, 제2원통의 기울기 변화량은 약 0~70$^{\circ}$까지, 비탈그물은 약 0~55$^{\circ}$까지, 조하측인 운동장은 0~50$^{\circ}$까지 였다. 까래그물의 깊이 변화는 초기 깊이와 비교해서 제1원통은 약 0~35%, 제2원통은 약 0~20%, 비탈그물은 약 0~35%까지 감소하였으며, 유속이 0.5m/s이상에서 비탈그물이 원통 입구까지 부상하여, 원통 입구를 90%이상 막았다. 5. 어구의 변형을 최소화하고 전개용적을 증가시키기 위해서는 입구 및 운동장 부분에서는 힘출의 저조시 수심 위치에 중량추를 부착하고, 운동장 바깥쪽과 제1원통의 섶장과 까래그물 제2원통의 바깥쪽, 비탈그물의 까래에 부가 중량추를 부착하는 것이 필요할 것으로 판단된다.

저층 트롤어구의 유수저항 특성 및 모형 실험시의 축척비 영향 (Flow resistance of bottom trawl nets and scale effect in their model experiments)

  • 김대진;김대안;김태호;신형호;장덕종;차봉진
    • 수산해양기술연구
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    • 제47권4호
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    • pp.281-289
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    • 2011
  • The purpose of this study is to identify the flow resistance of the bottom trawl net. The bottom trawl net being used in the training ship of Chonnam National University was selected as a full-scale net, and model nets such as 1/10, 1/25 and 1/50 of the actual net were made. Total resistance of the net part, the height of the net mouth and the flow resistance of components of the net such as wing, bag and cod-end part was measured, converted into full-scale and compared. Additionally, the model rule of Tauti (1934), which has been most frequently used in fishing net modeling experiments, was applied to interpret flow resistance and scale effect of model experiment was investigated. Presumed that the flow resistance R is $R=kS{\upsilon}^2$ against the flow velocity of each net ${\upsilon}$, resistance coefficient k was calculated by substituting R, ${\upsilon}$ and S of the net. From the result, it was found that k decreases exponentially when u increases which makes $k=c{\upsilon}^{-m}$. Whereas m of each net is ranged between 0.13-0.16 and there was not significant difference between nets. c does not show big difference in 1/10 and 1/25 model and the value itself was relatively bigger than in 1/50 model. The height of the net mouth of 1/25 and 1/50 model net h decreases exponentially according as ${\upsilon}$ increases to make $h=d{\upsilon}^{-n}$. Whereas d and n values were almost same in two nets. Additionally, when resistance of cod-end, wing and bag part in 1/25 and 1/50 model nets, both nets showed big resistance in bag part when flow is 1m/s as more than 60%. Wing and cod-end part showed almost same value or wing part had little bit larger value. On the other hand, when reviewing the reasons why both models showed difference in 1/50 model while c value against the resistance coefficient k did not show big difference in 1/10 and 1/25 model, it is inferred that the difference occurred not from material difference but from the difference in net size according to scale. It was judged that they are the scale effects concomitant to the model experiments.

심해 저층트롤망의 수중형상에 관한 모형실험 (A model experiment on the underwater shape of deepsea bottom trawl net)

  • 박광제;이주희;김형석;정순범;오택윤;배재현
    • 수산해양기술연구
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    • 제42권3호
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    • pp.134-147
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    • 2006
  • A model experiment using circulation water channel was carried out to investigate the dynamic characteristics of bottom trawl net which can be used in sea mount of North Pacific. Hydrodynamic resistance and shape variation according to the flow velocity and angle of hand rope transformation for net were measured, and experimental value was analyzed as the value of full-scale bottom trawl net. The results summarized are as follows; At the $30^{\circ}$ of angle of hand rope to net, hydrodynamic resistance varied from 0.5kgf to 2.68kgf as the flow velocity increased between 0.31m/s and 0.92m/s, and formula of hydrodynamic resistance for the model net was $F_m=3.04\;{\cdot}\;{\upsilon}^{1.53}$. At the fixed angle of hand rope, Net height was low and Net width was high according to the increase of flow velocity, and in addition, vertical opening was low and Net width was high by the increase of angle of hand rope at the fixed flow velocity. At the $30^{\circ}$ of angle of hand rope to net, net opening area was $0.214m^2$ as flow velocity was 0.61m/s, and formula of net opening area for the model net was $S_m=-0.22{\upsilon}+0.35$. At the $30^{\circ}$ of angle of hand rope to net, catch efficiency seemed to be highest as $0.319m^3/s$ of filtering volume at the 0.76m/s(51kt's) of flow velocity. Shape variation of net showed the gradual laminar transform for the variation of flow velocity but there needed some improvements due to the occurrence of shortening at the ahead of wing net.

Two-phase flow pattern online monitoring system based on convolutional neural network and transfer learning

  • Hong Xu;Tao Tang
    • Nuclear Engineering and Technology
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    • 제54권12호
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    • pp.4751-4758
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    • 2022
  • Two-phase flow may almost exist in every branch of the energy industry. For the corresponding engineering design, it is very essential and crucial to monitor flow patterns and their transitions accurately. With the high-speed development and success of deep learning based on convolutional neural network (CNN), the study of flow pattern identification recently almost focused on this methodology. Additionally, the photographing technique has attractive implementation features as well, since it is normally considerably less expensive than other techniques. The development of such a two-phase flow pattern online monitoring system is the objective of this work, which seldom studied before. The ongoing preliminary engineering design (including hardware and software) of the system are introduced. The flow pattern identification method based on CNNs and transfer learning was discussed in detail. Several potential CNN candidates such as ALexNet, VggNet16 and ResNets were introduced and compared with each other based on a flow pattern dataset. According to the results, ResNet50 is the most promising CNN network for the system owing to its high precision, fast classification and strong robustness. This work can be a reference for the online monitoring system design in the energy system.

로프 트롤 그물의 기본성능에 관한 모형실험 (A Model Experiment on the Basic Efficiency of Midwater Rope Trawl Net)

  • 예영희;이병기
    • 수산해양기술연구
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    • 제29권3호
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    • pp.200-213
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    • 1993
  • A model experiment on a midwater rope trawl net which is used in the North Pacific to catch alaska pollack is carried out in the circulating tank to examine the basic efficiency of the net. The prototype is the net used by M/S Hanil(1, 179GT, 2, 700PS), a Korean trawler. The model net was made according to the Tauti's Similarity Law of Fishing Gear in 1/100 scale by considering the condition of the tank. To measure the basic efficiency of the standard model net, the vertical opening and width between some points marked on the net were measured, and the hydrodynamic resistance were determined. Then the constructive conditions of the net were varied as follows and the factors were measured again to compare the efficiency of those nets with that of the standard net(A-1 type) front weight multiplied 1.5 times: A-2 type. buoyancy and depressing force multiplied 1.7 times: A-3 type. front weight multiplied 1.5 times on A-3 type: A-4 type. depressors rigged at ground rope: B type. cod-end stuffed with cashmylon wad: C type. The results obtained can be summarized as follows: 1. The vertical opening at the center of head rope was steeply decreased with the flow velocity increasing and the vertical opening H(m) can be expressed in H=1.2v super(-1.2)(v : flow velocity in m/sec). The width of the net varied a little when the flow velocity was over 0.4m/sec, and the width of net mouth showed about 37% of the distance between the fore tips of net pendant. The shape of net mouth was almost a circle at 0.2m/sec and then steeply flatted elliptically with the flow velocity increasing and the area of mouth S(m super(2)) can be expressed in S=(1.65-2.3v)$\times$10 super(-2). The hydrodynamic resistance of the net increased almost linearly with the flow velocity increasing and the resistance R(kg) can be expressed in R=3.2$\times$d/l$\times$abv. where d/l denotes the mean of d(diameter of netting twine) and l(length of a leg in a mesh) from wing tip to the end of bag-net except cod-end on the side pannel, and a denotes the strectched circumference of the net at the fore end of a meshed part and b the stretched length of the whole net from wing tip to the end of cod-end. 2. In the condition-varied nets, the vertical opening of head rope showed some increase in every type net except the C type, and the increase showed the greatest in the B type by 30~54%, whereas it showed decrease in the C type by 5~10%. Variation of the area of net mouth showed almost the same tendency as the vertical opening and the increase showed the greatest in the B type by 20%, whereas it showed decrease in the C type by 12%. Hydrodynamic resistance showed some increase in every type compared with the standard net, and the rate of increase indicated 5~10% in the A-2, A-3 and A-4 type, 22% in the B type and 3% in the C type.

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두 대의 펌프가 병렬로 설치되는 계통에서의 유량 특성 (Flow Rate Characteristics of Two Parallel Pumping System)

  • 박용철;지대영;서경우;윤현기;박정근
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2011년 춘계학술대회논문집
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    • pp.579-586
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    • 2011
  • During a reactor normal operation, a primary coolant was designed to remove the fission reaction heat of the reactor. When one pump is failure and the other pump shall supply the cooling water to cool the reduced power, it is necessary to estimate how much flow will be supplied to cool the reactor. We carried a flow net work analysis for two parallel pumping system as based on the piping net work of the primary cooling system in HANARO. As result, it is estimated that the flow of one pump increased than the rated flow of the pump below the cavitation critical flow.

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흐름에 대한 모형 정치망의 형상 변화 (Net Shapes of the Model Set Net in the Flow)

  • 김부영;윤일부;권병국;이주희
    • 수산해양기술연구
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    • 제40권2호
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    • pp.104-114
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    • 2004
  • 본 연구에서는 실제 정치망 어장에서의 조류변화에 따른 어구 변형을 추정하고, 그 변형을 최소화시키며 어구의 기본 기능을 유지시키는 데 필요한 수중형상과 어구 용적을 확보할 수 있는 설계의 기본 자료를 얻기 위해 회류 수조에서 모형실험을 실시하였으며, 흐름에 따른 사개줄의 장력과 그물형상의 변화를 측정하였다. 실험에서 얻은 결과를 요약하면 다음과 같다. 1. 유속이 0.0m/s에서 0.6m/s로 변화할 때에 유속(x)에 따른 장력(y)의 실험식은 y=1814.1x+115.12 이었다. 2. 수중형상에 있어서 운동장이 흐름의 조상측인 경우에 운동장그물의 기울기는 0~79$^{\circ}$까지, 비탈 그물의 기울기는 0~56$^{\circ}$까지 변화하였고, 원통 까레 깊이 비는 제1원통 까래가 1.0~0.42까지, 제2원통 까래가 1.0~0.41까지 감소하였으며, 조하측인 원통그물의 기울기는 0~87$^{\circ}$까지 변화하였다. 3. 원통이 흐름의 조상측인 경우에 원통그물의 기울기는 0~60$^{\circ}$까지, 비탈그물의 기울기는 0~13$^{\circ}$까지 변화하였고, 원통 까래 깊이 비는 제1원통 까래가 1.0~0.27까지, 제2원통 까레가 1.0~0.15까지 감소하였으며, 유속이 0.3m/s일 때 비탈그물이 원통 입구까지 부상하고 0.5m/s일 때 원통 입구를 90% 이상 막았으며, 조하측인 운동장그물의 기울기는 0~58$^{\circ}$까지 변화하였다. 4. 각 부분의 변형을 최소화하기 위해서는 입구 및 운동장 부분에서는 힘줄의 저조시 수심 위치에 중량추를 부착하고, 운동장 바깥쪽에 이동식 부가 중량추를 부착하며, 원통에서는 제1원통의 섶장과 까래그물의 연결부에 중량추 및 이동식 부가 중량추를 부착하고, 비탈그물에 중량추를 부착하며, 제2원통에 이동식 부가 중량추를 부착하는 것이 필요할 것으로 생각된다.

MIH 서비스를 이용한 고속 NetLMM 프로토콜 (Fast Network based Localized Mobility Management protocol using Media Independent Handover Services)

  • 박시헌;김영한
    • 대한전자공학회논문지TC
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    • 제43권11호
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    • pp.35-43
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    • 2006
  • 본 논문에서는 IETF(Internet Engineering Task Force)에서 진행 중인 NetLMM(Network based Localized Mobility Management) WG의 프로토콜을 이용하여 네트워크 기반의 고속 핸드오버 프로토콜을 제안하였다. NetLMM 프로토콜에서 핸드오버 지연을 개선하기 위해 IEEE 802.21 MIHS(Media Independent Handover Services)를 적용하였으며 Fluid Flow Mobility Model을 이용하여 제안하는 Fast NetLMM의 성능을 분석하였다. 분석 결과 Fast NetLMM 프로토콜은 다른 이동성 관리 프로토콜보다 향상된 성능을 보이는 것을 확인하였다.

위상대조도 MRI에서 숙임각에 따른 상행대동맥의 혈류 측정 (Blood Flow Measurement with Phase Contrast MRI According to Flip Angle in the Ascending Aorta)

  • 김문선;권대철
    • 한국자기학회지
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    • 제26권4호
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    • pp.142-148
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    • 2016
  • 자기공명영상에서 위상대조(phase contrast; PC) 기법으로 혈류 속도와 혈류량을 정량적으로 측정하기 위해 VENC(150 cm/s)에서 숙임각의 변화에 따른 혈류 속도와 혈류량을 측정하였다. 1.5T MRI로 지원자 17명(여: 8, 남: 9, 평균연령 $57.9{\pm}15.4$)을 대상으로 non-breath holding 기법을 적용하여 상행대동맥에서 VENC(150 cm/s)로 숙임각을 $20^{\circ}$, $30^{\circ}$, $40^{\circ}$ 변화하여 측정하였다. 혈류는 average velocity, peak velocity, net forward volume, net forward volume/body surface area를 획득하였다. 상행대동맥에서 AV(average velocity)의 평균값은 숙임각 $20^{\circ}$(9.87 cm/s), $30^{\circ}$(9.6 cm/s), $40^{\circ}$(10.05 cm/s)로 측정되었다. 숙임각을 $20^{\circ}$, $30^{\circ}$, $40^{\circ}$에서 peak velocity, average velocity, net forward volume, net forward volume/body surface area는 통계적인 유의한 차이가 없었다(p > .05). 혈류속도와 혈류량 측정은 매개변수를 조정하여 적용하면 심장혈관 질환의 진단 및 치료에 중요한 정보가 되는 혈류량을 정확히 계산하고, 혈류량 측정에 관한 연구에 도움을 줄 수 있다.