• 제목/요약/키워드: Deep water formation

검색결과 100건 처리시간 0.026초

튀김유의 재사용에 의한 품질 특성: 전통 튀김기와 수유식 개량 튀김기의 비교 (Physicochemical Analysis in the Reuse of Deep-Frying Oil: Comparison of Traditional Fryer and Modified Fryer)

  • 최일숙;이영순;최수근
    • 동아시아식생활학회지
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    • 제23권4호
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    • pp.470-476
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    • 2013
  • The property of deep frying oil is one of the important factors in fried food quality. The purpose of this study is to identify the quality of deep frying oil in continuous usages for 4 days by two types of fryers: traditional deep-fat fryer and modified oil-water fryer. After frying pork cutlets, the frying oil was kept not only for several physical analyses such as color, viscosity, and water content but also for the quality analyses of frying oil, such as free fatty acid, double bond changes and oxidative rancidity formation. The oil fried in a traditional deep-fat fryer was significantly increased in terms of physical values including moisture content, viscosity, and color, compared to those of the modified fryer, continuously for 4 days. The oil fried by a traditional deep-fat fryer exhibited a significant increase in its free fatty acid content compared to that fried by a modified oil-water fryer, while the iodine value was significantly decreased in the oil fried by a traditional deep-fat fryer when compared to control oil and oil fried by the modified oil-water fryer. In the peroxide value as an indicator of primary oxidation products, the oil fried by both fryers was significantly increased till the second day but decreased in value after the third day because of unstable hydroperoxide decomposition. The p-anicidine value is used as an indicator of secondary oxidation products, the oil fried in a traditional deep-fat fryer was significantly increased in value compared to that of a modified oil-water fryer.

A Conceptual Two-Layer Model of Thermohaline Circulation in a Pie-Shaped $\beta$-Plane Basin

  • Park, Young-Gyu
    • Journal of the korean society of oceanography
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    • 제38권1호
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    • pp.11-16
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    • 2003
  • The three dimensional structure of thermohaline circulation in a D-plane is investigated using a conceptual two layer model and a scaling argument. In this simple model, the water mass formation region is excluded. The upper layer represents the oceans above the main thermocline. The lower layer represents the deep ocean below the thermocline and is much thicker than the upper layer. In each layer, geostrophy and the linear vorticity balance are assumed. The cross interfacial velocity that compensates for the deep water mass formation balances downward heat diffusion from the top. From the above relations, we can determine the thickness of the upper layer, which is the same as thermocline depth. The results we get is basically the same as that we get for an f-plane ocean or the classical thermocline theory. Mass budget using the velocity scales from the scaling argument shows that western boundary and interior transports are much larger than the net meridional transport. Therefore in the thermohaline circulation, horizontal circulation is much stronger than the vertical circulation occuring on a meridional plane.

기후변화에 따른 동해 심층 해수의 물리적 특성 및 순환 변화 연구 : 현황과 전망 (Studies on Changes in the Hydrography and Circulation of the Deep East Sea (Japan Sea) in a Changing Climate: Status and Prospectus)

  • 이호준;남성현
    • 한국해양학회지:바다
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    • 제28권1호
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    • pp.1-18
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    • 2023
  • 동해는 전 세계적으로 가장 빠른 수준의 온난화를 경험하는 해역 중 하나로서, 기후변화에 민감하게 반응할 뿐 아니라 대양에 비해 월등히 짧은 순환 주기를 가지고 있기 때문에 미래의 대양 환경 변화에도 중요한 시사점을 주는 것으로 알려져 있다. 그러나 동해 심층 해수의 특성과 순환의 변화 과정에 대한 연구는 동해 전역의 심층을 정밀하게 조사하기 위한 국제협력 프로그램이 자리잡고, 측정 장비의 분해능을 포함하는 관측기술과 수치모델 모의 능력이 크게 향상된 최근(1990년대 이후)에서야 본격화되고 있다. 여기서는 동해 심층 해수의 물리적 특성과 순환의 변화 과정에 대한 그간의 연구 결과를 요약하고, 향후 남은 과제를 제시하고자 한다. 동해는 내부에서 자체적으로 심층 해수가 생성되며 대양과 분리된 독특한 심층 순환 구조를 가진다. 동해의 수백 m 수심 아래에는 수온이 낮고(<1℃) 염분이 거의 일정(34.0-34.1)한 해수가 분포하기 때문에 오랜 기간 이 해수를 일본해고유수(동해고유수)로 명명된 단일 해수로 여겨 왔다. 그러나 1990년대 이후 정밀한 관측이 이루어지며, 동해 심층을 채우고 있는 해수가 적어도 3개의 서로 다른 물리적 특성을 가진 해수(중앙수, 심층수, 저층수)로 구성됨이 밝혀졌다. 이들 3개 해수의 물리적 특성과 해수 사이의 경계 수심은 항상 일정한 것이 아니라, 지난 수십 년 동안 유의한 수준의 변화를 겪어왔다. 동해 북부 해역의 대마난류 재순환, 해양-대기 열과 담수의 교환량, 해빙 형성에 영향을 받는 대류(심층사면대류 및 심층외양대류) 과정에 따라 심층 해수 생성에 뚜렷한 차이가 발생했기 때문이다. 생성된 심층 해수는 수심이 얕은 곳을 오른쪽에 두고 일본 분지에서부터 반시계 방향으로 울릉 분지, 야마토 분지를 차례로 거쳐 다시 일본 분지로 수송되며, 이 수평적인 심층 순환도 변화를 겪어 왔다. 수평적인 심층 순환은 동시에 남북 및 연직 방향의 순환(자오면 순환) 경로와 강도의 변화를 동반한다. 동해는 수천 년 규모의 순환 주기를 가지는 대양에 비해 훨씬 짧은 수백 년 혹은 그 이내의 순환 시간 규모를 가지기 때문에 동해 심층 해수의 물리적 특성과 자오면 순환의 급격한 변화를 더 뚜렷하게 볼 수 있을 것으로 기대 가능하다. 심층 및 자오면 순환 사이의 연계성, 대양과 동해의 유출입 해수 수송을 포함하는 동해 상층 순환과 심층 순환 사이의 연계성은 아직까지 잘 밝혀지지 않았다. 동해 심층 해수 수송의 경로와 강도를 지배하는 다양한 과정들에 대한 후속 연구들이 요구된다.

동부 심해 울릉분지의 천연가스 하이드레이트 (Natural gas hydrates in the eastern deep-water Ulleung Basin)

  • 류병재;김지훈;정부흥;이영주
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2008년도 춘계학술대회 논문집
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    • pp.610-612
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    • 2008
  • Piston cores retrieved from the eastern part of the deep-water Ulleung Basin were analyzed to access the potential of hydrocarbon gas generation and natural gas hydrate (NGH) formation. Seismic data acquired in the study area were also analyzed to determine the presence of hydrocarbon gas and/or NGH, and to map their distribution. Core analyses revealed high total organic carbon (TOC) contents which favor hydrocarbon generation. The cores recovered from the southern study area showed the sufficient residual hydrocarbon gas concentrations for the formation of significant NGH. These cores also showed the cracks developed parallel to the bedding that suggest significant gas content in situ. A number of seismic blanking zones were observed on seismic data. They are identified as vertical to sub-vertical chimneys caused by the upward migration of pore fluid or gas, and containing of free gas and/or NGH. Often, they are associated with velocity pull-up structures that are interpreted to be the result of high-velocity NGH. The seismic data also showed several bottom-simulating reflectors (BSRs) that are associated with overlying NGH and underlying free gas. The distribution of blanking zones and BSRs would be impacted by the lateral differences of upward methane fluxes.

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저수지 수질개선을 위한 저수지 내 침전지 조성 (Formation of Sedimentation Pool within Irrigation Reserviors for Water Quality Improvement)

  • 박병흔
    • 한국농공학회지
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    • 제42권1호
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    • pp.73-82
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    • 2000
  • Large quantitive of polllutants are washed into reservoirs during storm events. These polllutants contribute to eutrophication, such as algal blooms and fish kills. This study was conducted for the purpose of assessing the pollutant removal possibilities of sedimentation pool formed by deep dredging of a reservoir inlet. Water quality data were collected in the Masan reservoir, whose inlet has been dredged deep like sedimentation pool. The average concentration of chemical oxygen demand(COD) , toatal nitrogen(T-N) and total phosphrous(T-P) in the deep dredged area were 8.7 ~20.5mg/ι (T-N), 0.17~0.84mg/ι(T-P), which were 4.9%(COD), 29.0%(T-N) and 44.8%(T-P) higher than those of middle part of the reservior. The texture of sediment in the dredged area was silty loam, while that of the middle part was sandy clay loam. Organic matter contents, T-N and T-P of the bottom soil in the dredge area showed higher values than the middle part of the reservoirs. From these results, it was considered thedeep dredged area in the inlet of reservoir might play a key role to settle pollutant particulate. Based on the result of water quality analysis, deep dredging of the reservoir inlet could be assessed to reduce T-N and T-P of the reservoir about 6.5% , 8.3%, respectively. However, the effect of the sedimentation pool would be raised if the settled particles were taken into account in assessing water quality improvement for the reservoir. Accordingly, dredging of a reservoir inlet to make a shape of sedimentation pool is recommended for water quality improvement of reservoir in the stage of dredging plan.

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천연 제올라이트와 합성 제올라이트 5A를 이용한 메탄 하이드레이트의 생성에 대한 비교 연구 (A Comparative Study on the Formation of Methane Hydrate Using Natural Zeolite and Synthetic Zeolite 5A)

  • 박성식;박윤범;김남진
    • 신재생에너지
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    • 제8권2호
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    • pp.24-32
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    • 2012
  • Natural gas hydrates have a high potential as the 21st century new energy resource, because it have a large amount of deposits in many deep-water and permafrost regions of the world widely. Natural gas hydrate is formed by physical binding between water molecule and gas mainly composed of methane, which is captured in the cavities of water molecules under the specific temperature and pressure. $1m^3$ methane hydrate can be decomposed to the methane gas of $172m^3$ and water of $0.8m^3$ at standard condition. Therefore, there are a lot of practical applications such as separation processes, natural gas storage transportation and carbon dioxide sequestration. For the industrial utilization of methane hydrate, it is very important to rapidly manufacture hydrate. However, when methane hydrate is artificially formed, its reaction time may be too long and the gas consumption in water becomes relatively low, because the reaction rate between water and gas is low. So in this study, hydrate formation was experimented by adding natural zeolite and Synthetic zeolite 5A in distilled water, respectively. The results show that when the Synthetic zeolite 5A of 0.01 wt% was, the amount of gas consumed during the formation of methane hydrate was higher than that in the natural zeolite. Also, the natural zeolite and Synthetic zeolite 5A decreased the hydrate formation time to a greater extent than the distilled water at the same subcooling temperature.

탁월파랑에 의한 동해안선 분류의 조사연구 (Astudy on the classification of Eastern Coastal line of korea from the view point of Prevailing Wave Direction)

  • 이원환;이정태
    • 물과 미래
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    • 제11권1호
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    • pp.39-46
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    • 1978
  • The approaching deep water wave heights and directions affect the wave energy which is carried to the coast. By studing the relations between the longshore wave energy theory and the evolution of coastline, writer can arrive following conclusion. The longshore lottoral drifting affects to a great deal the formation of the coast, and by investigating on the eastern coastal geomophorogy of korea, the theory was proued as a true and made it possible to an approaching to the subdivided classification of eastern coast of lorea. That is to asy that angle taken by the level between the wave crest line of prevailing wave(NE) and the coastline was measured as less than 15#, and in the area neighboring the river which served as source of Sand parrticles, there are grand scale formation of sand beach expectable, in the other hand the formation of sand beach in case of $35^{\circ}{\leq}{\alpha }o{\leq}55^{\circ}$ which represents the vivid phenomena of longshore littoral drifting was proved not influencial but rather transformed into a rocky coast. Depending on the above facts the writer classified general shape of the coast affected by the vivid wave action into the following three, (1) The equilibrium beach. (2) Erosinal beach. (3) Geomophorogical beach, and made the sandy and rocky coast are subdivided as S-A.B.C. and R-DEF.

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열응답 시험과 변수 평가 모델을 이용한 그라우트/토양 혼합층의 열전도도 산정 (Evaluation of Thermal Conductivity for Grout/Soil Formation Using Thermal Response Test and Parameter Estimation Models)

  • 손병후;신현준;안형준
    • 설비공학논문집
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    • 제17권2호
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    • pp.173-182
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    • 2005
  • The Performance of U-tube ground heat exchanger for geothermal heat Pump systems depends on the thermal properties of the soil, as well as grout or backfill materials in the borehole. In-situ tests provide a means of estimating some of these properties. In this study, in-situ thermal response tests were completed on two vertical boreholes, 130 m deep with 62 mm diameter high density polyethylene U-tubes. The tests were conducted by adding a monitored amount of heat to water over a $17\~18$ hour period for each vertical boreholes. By monitoring the water temperatures entering and exiting the loop and heat load, overall thermal conductivity values of grout/soil formation were determined. Two parameter estimation models for evaluation of thermal response test data were compared when applied on the same temperature response data. One model is based on line-source theory and the other is a numerical one-dimensional finite difference model. The average thermal conductivity deviation between measured data and these models is of the magnitude $1\%$ to $5\%$.

북동 태평양 KR1 광구의 망간단괴 산출특성 (Control of Manganese Nodule Characteristics by Volcanic Activity in the NE Equatorial Pacific)

  • 김원년;양승진;지상범;이현복
    • Ocean and Polar Research
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    • 제36권4호
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    • pp.373-381
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    • 2014
  • Korea contract Mn-nodule field in the NE equatorial Pacific is composed of seven sectors with average water depths of 4,513-5,025 m. Of the various factors controlling the properties of Mn-nodule, it seems that water depth is likely connected to the chemical composition and occurrence of nodules. To test whether such an assumption held in each sector, we reviewed previous research data accumulated since 1994 for one of the northern sectors (hereafter KR1) where there are stark contrasts in water depth. High-resolution seabed mapping clearly separates a northern part (KR1N) from a deeper southern part (KR1S), cutting across in the middle of the KR1. In addition, significant volcanic activities forming numerous seamounts are distinctive especially in KR1N. In terms of nodule occurrence, manganese nodules in KR1S are comparatively larger (2-4 cm) with a discoidal shape, while those in KR1N are generally small (<2 cm) with poly-lobate and irregular shapes. Nodules in KR1N also have lower Co, Cu, Mn and Ni, and higher Fe contents. The spatial separation in nodule characteristics might be caused by volcanic activities in KR1N rather than water depth contrast. During the formation of the seamounts in KR1N, rock fragments and volcanic ashes as new nuclei of the nodules would have been continuously generated. As a result, the nodules could not grow larger than 2 cm and display the shapes of a newbie (i.e., irregular and poly-lobate shapes). Moreover, significant Fe supply from volcanic activities probably decreases the Mn/Fe ratio, which may lead to the KR1 nodules being misinterpreted as a hydrogenic in origin compared to other sectors where a high Mn/Fe ratio is present.

Effects of Aluminium Alloy on the Oxidative Stability of Frying Oil

  • Jong-Youn Son;Soo
    • 한국식품영양학회지
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    • 제7권4호
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    • pp.318-322
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    • 1994
  • Aluminium alloy, comprising water, silicone manganese and porous aluminium carrier added into soybean oil in order to investigated its effect on polar lipid content, polymer content, conjugated dienoic acid and free fatty acid value during deep-fat frying at 185$^{\circ}C$. Increase rates of polar lipid and polymer content of the frying ell were reduced about one thirds of the oil without aluminium alloy during deep-fat frying. The aluminium alloy, however, have no significantly effect to inhibit the increase of conjugated dienoic acid and free fatty acid value. Treatment of the frying oil with aluminium alloy was found to be able to inhibit polymer and polar lipid formation.

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