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한국연안 해조류 생물량의 연간 변동 양상: 제주도 문섬지역
고영욱,성건희,이창호,김현희,최동문,고용덕,이욱재,고형범,옥정현,정익교,김정하,Ko, Young-Wook,Sung, Gun-Hee,Yi, Chang-Ho,Kim, Hyun-Hee,Choi, Dong-Mun,Ko, Yong-Deok,Lee, Wook-Jae,Koh, Hyoung-Bum,Oak, Jung-Hyun,Chung, Ik-Kyo,Kim, Jeong-H 한국조류학회(藻類) 2008 ALGAE Vol.23 No.4
Seaweed biomass was estimated using a nondestructive method in the rocky subtidal zones in Munseom, Jeju Island, Korea from July 2006 to April 2008. Seasonal samplings were done at the depth of 1, 5, 10 m using 50 x 50 cm quadrat. Mean biomass was comprised of 2,784 g wet wt m$^{-2}$ and the biomass values varied seasonally from 1,176 g wet wt m$^{-2}$ to 4,217 g wet wt m$^{-2}$ with the highest point in April. Biomass reached maximum at 5 m depth in spring, but was shifted to 10 m depth in summer. Common seaweeds appeared year round in Munseom were Codium minus, Ecklonia cava, Sargassum spp., articulated corallines and Plocamium telfairiae. Among them, E. cava showed the highest biomass (average of 1,288 g wet wt m$^{-2}$), comprising 4% of total biomass. Only 12 species’' biomass covered 98% of total value, which indicated the contribution of few common species to algal community. Seaweed biomass in Munseom represented one of the highest values in coastal regions in Korea.
고영욱,성건희,김정하,Ko, Young-Wook,Sung, Gun-Hee,Kim, Jeong-Ha 한국조류학회(藻類) 2008 ALGAE Vol.23 No.4
To estimate seaweed biomass or standing crop, a nondestructive sampling can be beneficial because of not much destroying living plants and saving time in field works. We suggest a methodological procedure to estimate seaweed biomass per unit area in marine benthic habitats by using species-specific regression equations. Percent cover data are required from the field samplings for most species to convert them to weight data. However, for tall macroalgae such as kelps we need density data and their size (e.g., size class for subtidal kelps) of individuals. We propose that the field sampling should be done with 5 replicates of 50 cm x 50 cm quadrat at three zones of intertidals (upper, middle, lower) and three depth points (1, 5, 10 m) in subtidals. To obtain a reliable regression equation for a species, a substantial number of replicate is necessary from destructive samplings. The regression equation of a species can be further specified by different locality and different season, especially for the species with variable morphology temporally and spatially. Example estimation carried out in Onpyung, Jeju Island, Korea is provided to compare estimated values with real weight data.
고영욱(Young-Wook Ko),김환용(Hwan-Yong Kim) 한국산학기술학회 2016 한국산학기술학회논문지 Vol.17 No.8
거리 추정기법은 노드간 글로벌 동기화의 유무에 따라 동기방식과 비동기방식으로 나뉜다. 일반적으로 비동기 측위 기법이 동기 측위 기법에 비해 글로벌 동기와 고가의 정밀한 오실레이터를 요구하지 않기 때문에 선호되고 있다. 그러나 기존의 비동기 추정기법은 대규모의 인프라로 구성되는 위치 인식시스템에서 각 노드마다 발생되는 패킷에 의해 각 기준 노드들은 위치 파악을 위한 상당한 패킷을 전송해야 하며, 이것은 노드의 수가 증가될수록 네트워크 내의 트래픽의 양이 상당히 증가하게 된다. 이러한 네트워크 트래픽의 증가는 전체 네트워크의 처리량의 감소로 이어지며, 이로 인해 상당한 에너 지 손실이 발생된다. 따라서 본 논문에서는 기존의 문제를 해결하기 위하여 다수의 노드들이 분산적으로 랜덤하게 선택한 가상 슬롯을 사용하여 전송함으로써 노드간의 동기를 맞추는데 필요한 오버헤드를 줄이고, 가상슬롯을 기반으로 비동기로 거리를 추정함으로써 네트워크 트래픽을 낮출 수 있는 기법을 제안하였다. 또한 성능 평가를 통해 매우 낮은 트래픽의 강도 에도 불구하고 제안된 거리추정 기법은 TWR과 SDS-TWR보다 오차 범위에 대해 더 강력하다는 것을 입증하였다. Ranging is divided into a synchronous scheme and an asynchronous scheme according to the presence of global synchronization between nodes. In general, the asynchronous ranging is preferred over synchronous ranging because it does not require an expensive high-precision oscillator for the global synchronization. On the other hand, in a conventional asynchronous ranging scheme, the packets, which are generated by all nodes in a positioning system of a large-scale infrastructure and need to be sent for localization by reference nodes, are considerable, which cause an increase in network traffic as the number of nodes increases. The traffic congestion lowers the throughput of the network leading to a considerable loss of energy. To solve this problem, this paper proposes a ranging scheme, in which virtual transmission slots randomly and discretely selected by a plurality of nodes are used to reduce the overheads needed in synchronizing the nodes, and the ranging is performed asynchronously based on the virtual transmission slots, thereby decreasing the network traffic. In addition, a performance test proved that the proposed ranging scheme was stronger than the TWR and SDS-TWR on an error range, even though the intensity of traffic was very low.
계절별 수송 온도가 MA 포장한 어린잎 비트의 저장성에 미치는 영향
최인이,한수정,김주영,고영욱,김용득,황명근,유왕건,강호민,Choi, In-Lee,Han, Su Jung,Kim, Ju Young,Ko, Young-Wook,Kim, Yongduk,Hwang, Myung-Keun,Yu, Wanggun,Kang, Ho-Min 한국포장학회 2018 한국포장학회지 Vol.24 No.2
The effects of distribution temperature due to season all changes on quality and storability of baby leaf beet (Beta vulgaris L.) was examined in modified atmosphere (MA) packages. The beet leaf had been harvested at the 10 cm leaf length stage and packaged with an oxygen transmission rate (OTR) film of $1,300cc{\cdot}m^{-2}{\cdot}day^{-1}{\cdot}atm^{-1}$ and then held at 4 different distribution temperatures which were $-2^{\circ}C$, $4^{\circ}C$, $20^{\circ}C$, or $30^{\circ}C$ for 5 hrs and then stored for 18 days at $8^{\circ}C$. The loss of fresh weight of packged baby leaf beet was lowest at the $4^{\circ}C$ treatment, and below 0.6% in all distribution temperature treatments. The atmosphere composition in packages did not show any significant differences among treatments. The oxygen conc. was the highest at 18.0% after the $4^{\circ}C$ treatment, carbon dioxide conc. showed the maximum value of 4% at the $30^{\circ}C$ and $-2^{\circ}C$ treatments, and ethylene conc. was highest at the $10^{\circ}C$ treatment after 10 days in storage. The hardness was the highest at the $4^{\circ}C$ treatment on the final storage day. The $4^{\circ}C$ treatment showed the highest visual quality and the lowest off-odor and aerobic plate count. Therefore, it is necessary to establish a low-temperature distribution system which is controlled under $4^{\circ}C$, because the baby leaf beet's storability and microbial growth are effected even during a short time of 5 hrs during the distribution process. 계절에 따라 달라지는 수송 온도에 따른 어린잎 비트의 저장성을 알아보기 위해 어린잎 크기에서 수확한 비트잎을 $1,300cc{\cdot}m^{-2}{\cdot}day^{-1}{\cdot}atm^{-1}$의 OTR(oxygen transmission rate) 필름으로 포장하여 4가지 수송 온도 조건에서 18일간 저장하였다. 어린잎 비트를 계절별로 달라지는 수송 온도($-2^{\circ}C$, $4^{\circ}C$, $20^{\circ}C$, or $30^{\circ}C$)에서 5시간동안 보관한 후 $8^{\circ}C$에서 저장하면서 생체중 감소, 포장내 산소, 이산화탄소, 에틸렌 가스, 외관 품질, 이취, 그리고 총균수를 조사하였다. 생체중 감소는 모든 처리구가 MAP 포장상태였기 때문에 0.6% 이하였으며, 처리중에는 $4^{\circ}C$ 처리에서 가장 낮았다. 포장내 가스 조성은 수송 온도별 차이에 통계적 유의성은 없었으나, 산소는 $4^{\circ}C$ 처리구에서 18%로 가장 높았고 이산화탄소는 $30^{\circ}C$와 $-2^{\circ}C$에서 4% 수준으로 높았으며, 에틸렌는 저장 10일 이후 $-2^{\circ}C$에서 가장 높았다. 또한 저장 종료일의 경도와 외관은 $4^{\circ}C$ 처리구에서 가장 양호하였으며, 특히 이취와 총균수는 매우 낮았다. 따라서 어린잎 비트는 짧은 기간이지만 수송 온도가 균 발생과 저장성에 영향을 미치기 때문에 $4^{\circ}C$ 내외의 저온 유통체계 확립이 필요하다고 판단된다.