• 제목/요약/키워드: Air/Ground Temperatures

검색결과 76건 처리시간 0.027초

시추공 온도자료를 이용한 고기후 연구에 대한 개관 (A Review on the Paleoclimate Change Inferred from Borehole Temperatures)

  • 이영민;김형찬;송윤호
    • 자원환경지질
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    • 제39권1호
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    • pp.95-102
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    • 2006
  • 19세기말부터 진행된 지구온난화를 규정하기 위해서는 기상관측목적의 지표대기온도(Surface air temperature; SAT) 측정이 시작된 19세기말 이전의 온도 자료가 필요하다. 다행히 과거의 지표온도(Ground surface temperature; GST)가 지중으로 전파되어 기록된 시추공 온도자료로 일반적으로 과거 약 1,000년 전까지의 기온변화에 대한 정보를 얻을 수 있다. 시추공 온도자료로부터 복원된 과거의 기온변화의 정보는 19세기말부터 시작된 지구온난화를 규정하고 또한 그 이전에 있었던 소빙하기(Little Ice Age)와 중세온난기(Medieval Warm Period) 같은 기후변화를 알아내는데 유용하게 사용될 수 있다.

내부 열용량을 고려한 수직 지중열교환기의 3차원 수치 모델 개발 (Development of a Three-Dimensional Numerical Model of the Vertical Ground-Coupled Heat Exchanger Considering the Effects of the Thermal Capacity)

  • 김의종
    • 설비공학논문집
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    • 제28권7호
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    • pp.293-298
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    • 2016
  • A three-dimensional (3D) numerical model of the vertical ground-coupled heat exchanger is useful for analyzing the modern ground source heat pump system. Furthermore, a detailed description of the inner side of the exchanger allows to account for the effects of the thermal capacity. Thus, both methods are included in the proposed numerical model. For the ground portion, a FDM (Finite Difference Method) scheme has been applied using the Cartesian coordinate system. Cylindrical grids are applied for the borehole portion, and the U-tube configuration is adjusted at the grid, keeping the area and distance unchanged. Two sub-models are numerically coupled at each time-step using an iterative method for convergence. The model is validated by a reference 3D model under a continuous heat injection case. The results from a periodic heat injection input show that the proposed thermal capacity model reacts more slowly to the changes, resulting in lower borehole wall temperatures, when compared with a thermal resistance model. This implies that thermal capacity effects may be important factors for system controls.

Influences of Climate Factors and Water Temperature in Squid Spawning Grounds on Japanese Common Squid (Todarodes pacificus) Catches in the East (Japan) Sea

  • Lee, Chung-Il
    • Fisheries and Aquatic Sciences
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    • 제10권3호
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    • pp.150-158
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    • 2007
  • Data on squid catches, water temperature, and climatic factors collected for the Northwest and subtropical North Pacific were analyzed to examine the influence of oceanic and climatic conditions in spawning grounds on catches of Japanese common squid, Todarodes pacificus, in the East (Japan) Sea. The main spawning ground was divided into four sub-areas: the South Sea of Korea (R1), the southern waters off Jeju, Korea (R2), the southwestern part of Kyushu, Japan (R3), and the northern part of Okinawa, Japan (R4). Interannual and decadal fluctuations in water temperatures correlated well with squid catches in the East/Japan Sea. In particular, water temperatures at a depth of 50 to 100 m in sub-areas R3 and R4 showed higher correlation coefficients (0.54 to 0.59, p<0.01) in relation to squid catches in the East/Japan Sea than for R1 and R2, which had correlation coefficients of 0.40 or less (p>0.05). Air temperature and wind velocity fluctuations in each sub-area are correlated with water temperature fluctuations and were closely connected with variations in the surface mixed layers. Water, air temperatures and wind velocities at the main spawning grounds are linked to the Southern Oscillation Index (SOI) with higher signals in the ca. 2-4-year band. Strong changes in a specific band and phase occurred around 1976/77 and 1986/87, coincident with changes in squid catches.

에너지플러스 시뮬레이션을 통한 하천수 열원 히트펌프 시스템의 적용 가능성 분석 (An Applicability Analysis of River Water Source Heat Pump System using EnergyPlus Simulation)

  • 손병후
    • 한국지열·수열에너지학회논문집
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    • 제18권2호
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    • pp.10-21
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    • 2022
  • A water source heat pump (WSHP) system is regarded as an energy-efficiency heating and cooling supply system for buildings due to its high energy efficiency and low greenhouse gas emissions. Recently, water sources such as river water, lake water, and raw water are attracting attention as heat sources for a heat pump system in Korea. This paper analyzed the applicability of a river water source heat pump system (RSHP). The river water temperature level was compared with the outdoor air and ground temperature levels to present applicability. In addition, the cooling and heating performance were compared through a simulation approach for the RSHP and a ground source heat pump (GSHP) applied to a large-scale office building. To compare the temperature level, the actual data were applied to the river water and the outdoor air, while the simulation results were applied to the ground circulation water. The results showed that the change in river water temperature throughout the year was similar to the change in outdoor air temperature. However, unlike the outdoor air temperature, the difference between the hourly and daily average river water temperatures was not large. The temperature level of river water was lower during the heating season and somewhat higher during the cooling season than that of the ground circulation water. Finally, the performance of the RSHP system was 13.4% lower than that of the GSHP system on an annual-based.

현장 타설 에너지파일을 적용한 지열 히트펌프 시스템의 성능 예측 (Performance Prediction of Geothermal Heat Pump(GHP) System Using Cast-in-Place Energy Piles)

  • 손병후;정경식;최항석
    • 설비공학논문집
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    • 제25권1호
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    • pp.28-36
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    • 2013
  • The aim of this study is to evaluate the performance of the GHP system with 45 cast-in-place energy piles(CEP) for a commercial building. In order to demonstrate the feasibility of a sustainable performance of the system, transient simulations were conducted over 1-year and 20-year periods, respectively. The 1-year simulation results showed that the maximum and minimum temperatures of brine returning from the CEPs were $23.91^{\circ}C$ and $6.66^{\circ}C$, which were in a range of design target temperatures. In addition, after 20 years' operation, these returning temperatures decreased to $21.24^{\circ}C$ and $3.68^{\circ}C$, and finally reached to stable state. Annual average extraction heat of cast-in-place energy piles was 94.3 MWh and injection heat was 65.7 MWh from the 20 years of simulation results. Finally, it is expected this GHP system can operate with average heating SPF of more than 3.45 for long-term.

PRELAUNCH THERMAL ANALYSIS OF KSLV-I PAYLOAD FAIRING

  • Choi Sang-Ho;Kim Seong-Lyong;Kim Insun
    • 한국우주과학회:학술대회논문집(한국우주과학회보)
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    • 한국우주과학회 2004년도 한국우주과학회보 제13권2호
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    • pp.356-359
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    • 2004
  • Prelaunch thermal analysis of the KSLV (Korea Space Launch Vehicle)-I PLF (Payload Fairing) was performed to predict maximum/minimum liftoff temperatures and to evaluate of air conditioning performance. Prelaunch thermal analysis includes internal air conditioning effect, external convective heating/cooling, radiation exchange with the ground and sky, radiation between spacecraft and PLF, and solar radiation incident on PLF. Analysis was performed at two extreme conditions, hot day condition and cold day condition. The results showed that the maximum liftoff temperature was $53^{\circ}C$ and the minimum liftoff temperature was $-3.8^{\circ}C$. It was also found that conditioned air supplying, in $20{\pm}2^{\circ}C\;and\;1200\;m^3/hr$, is sufficient to keep the internal air in required temperature range.

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항공기내 연료 및 오일온도 변화에 대한 수치해석적 연구 (A Numerical Analysis on Transient Temperatures of Fuel and Oil in a Military Aircraft)

  • 김영준;김창녕;김철인
    • 대한기계학회논문집B
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    • 제26권8호
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    • pp.1153-1163
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    • 2002
  • A transient analysis on temperatures of fuel and oil in hydraulic and lubrication systems in an aircraft was studied using the finite difference method. Numerical calculation was performed by an explicit method with modified Dufort-Frankel scheme. Among various missions, air superiority mission was considered as a mission model with 20% hot day ambient condition in subsonic region. The ambience of the aircraft was assumed as turbulent flow. Convective heat transfer coefficient were used in calculating heat transfer between the aircraft surface and the ambience. For an aircraft on the ground, an empirical equation represented as a function of free-stream air velocity was used. And the heat transfer coefficient for flat plate turbulent flow suggested by Eckert was employed for in-flight phases. The governing equations used in this analysis are the mass and energy conservation equations on fuel and oils. Here, analysis of fuel and oil temperature in the engine was not carried out. As a result of this analysis, the ground operation phase has shown the highest temperature and the largest rate of temperature increase among overall mission phases. Also, it is shown that fuel flow rate through fuel/oil heat exchanger plays an important role in temperature change of fuel and oil. This analysis could be an important part of studies to ensure thermal stability of the aircraft and can be applicable to thermal design of the aircraft fuel system.

당광체에 관한 연구 (Studies on the Preparation of Phosphorescent Materials)

  • 한관섭
    • 약학회지
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    • 제7권1호
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    • pp.26-29
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    • 1963
  • Three systems such as CaS, BaS and ZnS are used as ground materials and transition elements such as Bi, Cu, Ag and Ni are used as activators to preared phosphorescent materials of strong after-grow intensity. These three systems in which we have 31 kinds of different composition samples are heated at given temperatures in the electrical furnace and are cooled in the air in order to crystallize them. In the case of BaS system, the mixture of CaO and purified S is better than the other kinds of calcium compound as the ground materials to crystallize phosphors. In BaS system, the mixture of BaCO$_{3}$ and purified S, in ZnS system ZnS respectively is the most proper ground material to prepare such a strong after-grow intensified phosphors. In a given range, the higher in temperature and the longer time of heating, the better phosphors we obtain.

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아파트 단지내의 열섬효과가 대기오염물질 확산에 미치는 영향 해석을 위한 열유동장 수치모의 (A Numerical Simulation of Heat Flow Field for Heat Island Effect Analysis to Air Pollutants Dispersion in Apartment Complex)

  • 장은숙
    • 한국환경과학회지
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    • 제14권6호
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    • pp.577-582
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    • 2005
  • Enormous apartment complexes in urban areas, temporary inversion state and heat island effect occur due to the strong sunshine and weak wind speeds which hinders the dispersion of air pollutants that are emitted from neighboring areas of apartment complexes. In this study, analysis were conducted by using the Fluent code based on the CFD(Computation Fluid Dynamics), including building layout, material, building height from the ground surface, the heat, analysis of flow field in the apartment complex. It was estimated that the temporal radiation inversion phenomenon during the daytime, which was caused by the weak wind speed and higher temperatures in the upper level, contributed to the stagnation of the air pollutants in the lower layer of the apartment complex.

시설내 대기 온도와 방울토마토 잎 온도가 온실가루이(Trialeurodes vaporariorum)개체군 발달에 미치는 영향 비교 (Evaluation and Comparison of Effects of Air and Tomato Leaf Temperatures on the Population Dynamics of Greenhouse Whitefly (Trialeurodes vaporariorum) in Cherry Tomato Grown in Greenhouses)

  • 박정준;박권우;신기일;조기종
    • 원예과학기술지
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    • 제29권5호
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    • pp.420-432
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    • 2011
  • 방울토마토(Lycopersicon esculentum cv. Koko) 재배 온실에 피해를 주는 온실가루이 개체군(Trialeurodes vaporariorum (Westwood))의 온도 발육 모형과 암컷 성충 산란 모형을 작성하여 시설 내 대기 중 온도와 미기상 온도인 잎 뒷면 온도를 적용한 DYMEX 프로그램(호주 CSIRO에서 개발한 미리 탑재된 모듈들을 사용하는 모의 실험 프로그램)으로 밀도 변동을 모의 실험하였다. 온도에 따라 상이한 발육 기간과 산란수를 각각 표준화시킨 발육 완료 분포 모형과 연령 특이적 산란수와 생존율을 비선형 회귀 모형에 적합시켜 밀도 변동 모의 실험을 하였다. 실제 줄내림 방식의 방울 토마토에서 토마토 식물체를 3위치(상단: 지상 1.6m 이상, 중단: 지상 0.9-1.2m 사이, 하단: 지상 0.3-0.5m 사이)로 나누어 각 위치별로 온실 내 대기 중 온도와 잎 뒷면 온도를 기록하였다. 온실 내 대기 중 온도와 잎 뒷면 온도간의 상관 관계를 비선형 회귀로 적합하여, 온실 내 미기상 온도 자료를 만들었다. 온실 내 미기상 온도 자료인 잎 뒷면 최대 온도는 대기 중 최대 온도보다 항상 낮게 유지되고 있었으며, 하단, 상단, 중단의 순으로 온도가 낮아지는 현상을 보였다. 모의 실험을 위한 시기와 초기 이입 밀도의 설정은 황색 점착 트랩을 이용하여 실제 온실에서 이입되는 시기(6월초)에 유인된 암컷 성충 10마리를 사용하였다. 온실 내 대기 중 온도 자료와 잎 뒷면 온도 자료를 각각 이용하여 온실가루이 유충의 발육 모형과 성충의 산란 모형을 DYMEX 프로그램으로 모의 실험하였다. 모의 실험 결과 검증을 위해 대기 중 온도와 잎뒷면 온도를 조사한 온실에서 토마토 식물체 3위치별, 각태별 온실가루이 밀도의 육안 조사도 실시하였다. 알의 경우 크기로 인해 육안 조사 대상에서 제외되었다. 육안 조사 결과와 육안 조사 시기의 DYMEX 모의 실험 결과값을 상관 분석하였다. 육안 조사 온실가루이 밀도와 잎 뒷면 온도를 이용한 모의 실험 결과 밀도가 모든 발육태에서 항상 양의 상관 관계를 보였다. 육안 조사 결과 밀도 변동 패턴도 방울토마토 잎 뒷면 온도를 이용한 모의 실험 결과 밀도 변동 패턴과 유사하였다. 본 연구 결과 방울토마토 온실에서 온실가루이 개체군 밀도 변동의 적절한 예측을 위해서는 잎 뒷면 온도를 고려해야 하는 것으로 나타났다.