• 제목/요약/키워드: Energy extraction efficiency

검색결과 143건 처리시간 0.02초

밀집 배열 부이시스템의 파랑에너지 추출 효율 추정 (Estimation of Wave Energy Extraction Efficiency for a Compact Array System of Small Buoys)

  • 최윤락
    • 한국해양공학회지
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    • 제25권1호
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    • pp.8-13
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    • 2011
  • A compact array system of small buoys is used for wave energy extraction. To evaluate the performance of this system, hydrodynamic analysis is carried out in regular waves using the higher order boundary element method. The motion response of each buoy is calculated considering hydrodynamic interactions caused by other buoys. The effect of energy extraction device is modeled as a linear damping load. The efficiencies of energy conversion are compared using the various sizes and arrangements of the array system and the damping coefficients for energy extraction. The increase in size or the packing ratio of the system gives better efficiency. However, the wave condition and the cost for the system should be considered to optimize performance from the perspective of engineering and economics. The proposed nondimensionalized damping coefficient for energy extraction is 0.1~0.5.

축열시스템의 온수이용 예측에 관한 연구 (The Study on Prediction of Hot Water Extraction in a Thermal Energy Storage System)

  • 조운;박이동
    • 태양에너지
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    • 제18권3호
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    • pp.71-80
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    • 1998
  • In thermal energy storage system, energy collected from many types of heat source is stored in a storage tank and then supply to load for demand. Lately, practical use of thermal energy storage system and attention to essential use of energy have been increased. From this point of view, especially, a study about the energy extraction process from a storage tank is necessary. So in this study, useful rate of hot water and hot water extraction efficiency was analysed respect to dynamic and geometric parameters dominating the hot water extraction process.

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Numerical Investigation of Multi-body Wave Energy Converters' Configuration

  • Heo, Kyeonguk;Choi, Yoon-Rak
    • 한국해양공학회지
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    • 제36권2호
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    • pp.132-142
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    • 2022
  • We investigate the performance of multi-body wave energy converters (WECs). This investigation considers multiple scattering of water waves by the buoys of a WEC under the generalized mode approach. Predominantly, the effect of a WEC's configuration on its energy extraction is studied in this research. First, single-row terminator and single-column attenuator arrays of vertical cylinders have been studied. The performance of these attenuator arrays shows that the wall effect induced by the periodic buoys influences the wave propagation and energy extraction in these WECs. Further studies show that a single-row terminator array of vertical cylinders performs better than the corresponding single-column attenuator array. Subsequently, multi-row terminator arrays of vertical cylinders are investigated by conducting a parametric study. This parametric study shows that the hydrodynamic property of three resonance phenomena makes energy extraction efficiency drop down, and the magnitude of energy extracted oscillates between the resonance points in these WECs. Finally, a 4×8 terminator array of vertical cylinders is studied to determine the effect of various dx (x-directional distance between adjacent rows) within this WEC on its performance. In particular, this study enforces at least two equal dx values within the 4×8 terminator array of vertical cylinders. It shows that a small value of this dx leads to better energy extraction efficiency in some of these various dx arrays than that of a corresponding regular array with the same dx.

스트립 배열된 다수 부이에 의한 파력에너지 추출 (Wave Power Extraction by Strip Array of Multiple Buoys)

  • 조일형
    • 한국해양공학회지
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    • 제28권5호
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    • pp.474-483
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    • 2014
  • The majority of existing WECs (wave energy converters) are designed to achieve maximum power at a resonance condition. In the case of a single WEC, its size must be large enough for tuning, and it has high efficiency only within a limited frequency band. Recently, wave power extraction by deploying many small buoys in a compact array has been studied under the assumption that the buoy's size and separation distance are much smaller than the water depth, wave length, and size of the array. A boundary value problem involving the macro-scale boundary condition on the mean surface covered by an infinite strip of buoys is solved using the eigenfunction expansion method. The energy extraction efficiency (${\varepsilon}=1-R^2_f-T^2_r$), where $R_f$ and $T_r$ are the reflection and transmission coefficients for a strip array of buoys, is assessed for various combinations of packing ratio, strip width, and PTO damping coefficient.

아임계수를 이용한 토양 내 벤조[a]피렌 정화 (Remediation of benzo[a]pyrene Contaminated Soil using Subcritical Water)

  • 신문수;;조영태;박정훈
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권6호
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    • pp.13-17
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    • 2014
  • Subcritical water acts like an organic solvent at elevated temperature in terms of its physicochemical properties. Taking into account this advantage, the remediation experiments of benzo[a]pyrene contaminated soil (8.45 mg/kg of initial concentration) were conducted using subcritical water extraction apparatus. The effect of operating factors on the removal efficiency was studied at the varying the conditions of the water temperature ranging $200{\sim}300^{\circ}C$, extraction time 30~90 min, and flow rate 0.3~2.0 mL/min. 12 g of benzo[a]pyrene contaminated soil was inserted into the extraction cell and placed into the reactor and then the subcritical water was driven through the cell. In this study, the removal efficiency of benzo[a]pyrene was increased from 55.1 to 98.1% when the temperature increased from 200 to $300^{\circ}C$. The removal efficiency was decreased from 97.0 to 77.0% when the flow rate increased from 0.3 to 2.0 mL/min, suggesting that the extraction is limited by intra-particle diffusion. The 30 min reaction time was determined as an effective treatment time at $250^{\circ}C$. Based on the results, the optimum condition for the remediation of benzo[a]pyrene contaminated soil was suggested to be $250^{\circ}C$, 30 min, and 0.3 mL/min.

Nannochloropsis oceanica로부터 용매추출법을 이용한 미세조류 오일 회수 (Microalgal Oil Recovery by Solvent Extraction from Nannochloropsis oceanica)

  • 박지연;이계안;김근용;김기용;최선아;정민지;오유관
    • Korean Chemical Engineering Research
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    • 제52권1호
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    • pp.88-91
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    • 2014
  • 본 연구에서는 Nannochloropsis oceanica로부터 바이오디젤 원료유로 활용하기 위한 미세조류 오일을 추출하였다. 용매추출법을 이용하여 오일을 추출하였으며, 미세조류의 건식 및 습식 조건에서 오일 추출률(yield) 및 오일 추출 효율(efficiency)을 비교하였다. N. oceanica는 지방산 함량이 317.8 mg/g cell으로 건조중량 대비 30% 이상의 높은 오일함량을 나타내었으며, 미세조류의 건식 조건에서 습식 조건보다 높은 오일 추출률을 나타내었다. 사용된 용매에 대해서 헥산 < 헥산-메탄올 < 클로로포름-메탄올 순으로 오일 추출률이 증가하였다. 그러나 추출된 오일의 지방산 함량을 분석한 결과, 오일 추출률이 증가할수록 지방산 함량은 감소하여 엽록소와 같은 불순물을 포함하고 있는 것으로 나타났다. 따라서 오일 추출률과 지방산 함량을 고려한 오일 추출 효율은 건식 조건에서 헥산-메탄올 이용 추출에서 82.6%의 가장 높은 효율을 나타내었고, 습식 조건에서는 클로로포름-메탄올 이용 추출에서 88.0%로 가장 높은 효율을 나타내었다. 따라서 경제적으로 미세조류의 건조가 가능한 경우에는 헥산-메탄올을 사용하고, 건조 비용이 높은 경우에는 습식 조건에서 클로로포름-메탄올을 사용한 용매추출법이 바람직하다.

전기히터식 및 지열원 히트펌프식 농산물 열풍건조기의 에너지 성능 비교 (Energy Performance Comparison of Electric Heater and Geothermal Source Heat Pump type Agricultural Hot Air Dryers)

  • 양원석;김영일;박승태
    • 한국지열·수열에너지학회논문집
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    • 제14권4호
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    • pp.7-12
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    • 2018
  • Energy performance of electric heater and geothermal source heat pump type hot air dryers are compared in this study. For set temperatures of $30^{\circ}C$, $35^{\circ}C$ and $40^{\circ}C$, radish is dried from initial mass 60 kg until it gets 5 kg, where the difference equals the amount of water removed. As set temperature is increased, drying time is shortened for both electric heater and heat pump types, however energy efficiency is decreased due to increasing electricity consumption. Moisture extraction rate(MER) of electric heater is 2.58~2.84 kg/h, and for heat pump type 2.56~2.71 kg/h, showing little difference between the two types. Specific moisture extraction rate (SMER) of electric heater is 0.94~0.96 kg/kWh, and for heat pump type 1.72~2.21 kg/kWh. SMER of heat pump type is greater by 0.78~1.25 kg/kWh than the electric heater hot air dryer, which is 1.8~2.3 times better in terms of energy efficiency.

Microwave Energy를 이용한 오염토양에서 Phenol의 추출 (Extraction of Phenol from the Contaminated Soil Using Microwave Energy)

  • 이기환;이태호;김윤아
    • 한국환경과학회지
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    • 제12권4호
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    • pp.447-459
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    • 2003
  • This study was carried out to develop an efficient process far the elimination of phenol pollutant from soils. An microwave-assisted process (MAP) and a conventional Soxhlet extraction method (SEM) were employed to extract phenol from two types of soils. The effects of extraction methods, aged time of the spiked soil samples, extraction solvent and extraction time on the extraction performance were compared. Our results demonstrate that the recoveries from standard soil spiked were at least 10% higher fer MAP than these f3r the conventional Soxhlet. The extraction time by MAP requires significantly shelter time (1 min) than 15 h of the conventional Soxhlet. The recoveries from non-contaminated soil spiked with phenol were also almost identical f3r above results. The reduction of the extraction times with efficiency higher than that afforded by the conventional Soxhlet technique supports the suitability of the MAP method.

공간정보를 중심으로 재구성한 BIM 기반 형상정보의 자동추출 및 데이터베이스 구축 모듈 개발 (The development of module for automatic extraction and database construction of BIM based shape-information reconstructed on spatial information)

  • 최준우;김신;송영학;박경순
    • 대한건축학회연합논문집
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    • 제20권6호
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    • pp.81-87
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    • 2018
  • In this paper, in order to maximize the input process efficiency of the building energy simulation field, the authors developed the automatic extraction module of spatial information based BIM geometry information. Existing research or software extracts geometry information based on object information, but it can not be used in the field of energy simulation because it is inconsistent with the geometry information of the object constituting the thermal zone of the actual building model. Especially, IFC-based geometry information extraction module is needed to link with other architectural fields from the viewpoint of reuse of building information. The study method is as follows. (1) Grasp the category and attribute information to be extracted for energy simulation and Analyze the IFC structure based on spatial information (2) Design the algorithm for extracting and reprocessing information for energy simulation from IFC file (use programming language Phython) (3) Develop the module that generates a geometry information database based on spatial information using reprocessed information (4) Verify the accuracy of the development module. In this paper, the reprocessed information can be directly used for energy simulation and it can be widely used regardless of the kind of energy simulation software because it is provided in database format. Therefore, it is expected that the energy simulation process efficiency in actual practice can be maximized.

태양열 온수 저장조의 성층 온수 추출에 관한 연구 (Thermally Stratified Hot Water Extraction)

  • 박이동;정운철;성상우
    • 태양에너지
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    • 제11권2호
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    • pp.34-40
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    • 1991
  • Thermal stratification enhancement for the higher extraction efficiency of hot water storage tank was experimentally studied with transparent fiber glass cylindical tank($350{\ell}$, D=516mm, H=1680mm). Height to diameter ratio (H/D =1,2,3), flow rate(Q= 8,10,12LPM), inlet-outlet temperature differences(${\Delta}T=20,25,30^{\circ}C$), and geometry of inlet-outlet port were the parameters. In particular, three kind of distributors were used for geometry of inlet-outlet port. As a result, it was possible to get extraction efficiency of 95% by using the distributor having variable diameter but keeping a constant diameter of perforation. So it is recommendable to design the distributor so that the main pipe decrease in diameter toward the dead end.

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