• 제목/요약/키워드: Vertical pump

검색결과 195건 처리시간 0.029초

지중 열교환기의 순환수에 의한 열응력 및 열전달 거동 분석 (Analysis of thermal stress and heat transfer due to circulating fluid in ground heat exchanger)

  • 길후정;이강자;이철호;최항석;최효범
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.385-395
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    • 2009
  • In this study, a series of numerical analysis has been accomplished on the thermal performance and sectional efficiency of a closed-loop vertical ground heat exchanger (U-loop) in a geothermal heat pump system (GHP) considering the circulating fluid, pipe, grout and soil formation. A finite element analysis program, ABAQUS, was employed to evaluate the temperature distribution on the cross section of the U-loop system involving HDPE pipe/grout/formation and to compare sectional efficiency between the conventional U-loop and a new latticed HDPE pipe system. Especially, the latticed pipe is equipped with a thermal insulation zone in order to reduce thermal interference between the inflow pipe and the outflow pipe. Also, a thermal stress analysis was performed with the aid of ABAQUS. 3-D finite volume analysis program, FLUENT, was adapted to analyze a coupled system between fluid circulation in the pipe and heat transfer and simulate an operating process of the closed-loop vertical ground heat exchanger. In this analysis, the effect of the thermal properties of grout, rate of circulation pump, distance between the inflow pipe and the outflow pipe, and the effectiveness of the latticed HDPE pipe system are taken into account.

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Vertical PIP 커패시터를 이용한 MTP 메모리 IP 설계 (Design of MTP memory IP using vertical PIP capacitor)

  • 김영희;차재한;김홍주;이도규;하판봉;박무훈
    • 한국정보전자통신기술학회논문지
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    • 제13권1호
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    • pp.48-57
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    • 2020
  • Wireless charger, USB type-C 등의 응용에서 사용되는 MCU는 추가 공정 마스크가 작으면서 셀 사이즈가 작은 MTP 메모리가 요구된다. 기존의 double poly EEPROM 셀은 사이즈가 작지만 3~5 장 정도의 추가 공정 마스크가 요구되고, FN 터널링 방식의 single poly EEPROM 셀은 셀 사이즈가 큰 단점이 있다. 본 논문에서는 vertical PIP 커패시터를 사용한 110nm MTP 셀을 제안하였다. 제안된 MTP 셀의 erase 동작은 FG와 EG 사이의 FN 터널링을 이용하였고 프로그램 동작은 CHEI 주입 방식을 사용하므로 MTP 셀 어레이의 PW을 공유하여 MTP 셀 사이즈를 1.09㎛2으로 줄였다. 한편 USB type-C 등의 응용에서 요구되는 MTP 메모리 IP는 2.5V ~ 5.5V의 넓은 전압 범위에서 동작하는 것이 필요하다. 그런데 VPP 전하펌프의 펌핑 전류는 VCC 전압이 최소인 2.5V일 때 가장 낮은 반면, 리플전압은 VCC 전압이 5.5V일 때 크게 나타난다. 그래서 본 논문에서는 VCC detector 회로를 사용하여 ON되는 전하펌프의 개수를 제어하여 VCC가 높아지더라도 펌핑 전류를 최대 474.6㎂로 억제하므로 SPICE 모의실험을 통해 VPP 리플 전압을 0.19V 이내로 줄였다.

수평형 지중열교환기의 열전달 성능에 관한 연구 (A Study on Heat Transfer Performance of Horizontal Ground Heat Exchanger)

  • 정민호;박성룡;나호상;백영진;윤형기;장기창
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.684-687
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    • 2005
  • Ground source heat pump systems are used for heating, ventilating and air-conditioning systems in commercial buildings, schools, and factories because of low operating and maintenance costs. These systems use the earth as a heat source in heating mode and a heat sink in cooling mode. Ground heat exchangers are classified by a horizontal type and vertical type according to the installation method. A horizontal type means that a heat exchanger is laid in the trench bored in 1.2 to 1.8 m depth. The solar heat and the rainwater are affected by the performance of heat exchanger and causes mutual influence among heat exchangers. In this study, to evaluate the performance of straight type, slinky type, and spiral type of horizontal ground heat exchangers designed on 1 RT scale, test sections are buried on the earth and experimental apparatus is installed. Therefore the performance of these is estimated.

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Feasibility Study of High-Efficiency Ground Heat Exchanger using Double U-tube through a Real-Scale Experiment

  • Bae, Sangmu;Kim, Jaemin;Nam, Yujin
    • KIEAE Journal
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    • 제17권4호
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    • pp.33-39
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    • 2017
  • Purpose: The use of renewable energy system is essential for building energy independence and saving energy consumption in the building sector. Among renewable energy technologies, ground source heat pump(GSHP) system is more energy-efficient and environmental-friendly than other heat source systems due to utilize stable ground heat source. However, the GSHP system requires a high initial installation cost and installation space in limited urban area, so it is difficult to have superiority in the market of heat source system. Therefore, it is necessary to develop the installation method of low-cost and improve system performance. This paper aims to evaluate the performance of double u-tube ground heat exchanger(GHX) and verify system feasibility through real-scale experiment. Method: In this study, the real-scale experiment of vertical closed-type GSHP system was conducted using double u-tube GHX and high-efficiency grout. Through the verification experiment, heat source temperature, heat exchange rate(HER) and seasonal performance factor(SPF) were measured according to the long-term operation. In addition, the feasibility analysis was conducted comparing to the single u-tube system. Result: In the results of experiment, average HER was 136.27 W/m and average SPF was 5.41. Furthermore, compared to the single u-tube, the installation cost of the developed system could be reduced about 70% in the same heating load condition.

그라우트 재료에 따른 지중 열교환기의 열전도도에 관한 실험적 연구 (Thermal Conductivity Measurement of Grouting Materials for Geothermal Heat Exchanger)

  • 임효재;공형진;송윤석;박성구
    • 설비공학논문집
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    • 제17권4호
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    • pp.364-369
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    • 2005
  • An experimental study was conducted on the thermal conductivity of various grouting materials for geothermal heat exchanger which is used as a heat sink or source in the heat pump system. The grouting of the vertical heat exchanger is important for environmental and heat transfer reasons and is generally accomplished by the placement of a low permeability material into the annular space between the borehole wall and the pipes suspended in the borehole. In this study, a lab scale test apparatus was made and measured the thermal conductivity of four grouting materials. As a result, the temperature rising tendency was similar among them, but the increasing rate was different. Thus the thermal conductivity showed a maximum difference of $27\%$ among grouting materials.

공기 저항과 바람의 영향을 고려한 대기에서의 유체입자의 3차원 궤적 (Three-Dimensional Trajectory of a Fluid Particle in Air with Wind Effects and Air Resistance)

  • 이동렬
    • Journal of Advanced Marine Engineering and Technology
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    • 제25권4호
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    • pp.797-808
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    • 2001
  • Three-dimensional trajectory of fluid particle is simulated by a particle motion, which is able to examine the influences of changes in the several parameters. To calculate the trajectory of a particle, the Runge-Kutta method was utilized. The use of a projectile of particles for the trajectory of liquid jet has been shown to be useful to estimate the influence of different operating parameters such as best particle diameter, density of liquid body, initial take-off velocity, wind velocity, cross wind velocity, take-off angle, and base angle for a released flow from the nozzle. The results give the trajectories of various types of particle of body and at different elevations, base angles, wind velocities and densities of liquid body. The trajectories in a vacuum show that air resistances decreases both the distance and the maximum height of a projectile, and also explain that the termination time is also reduced in air. In addition, the maximum distance in the x direction was obtained with take-off angles from 30 degrees to 45 degrees in still air and the projectile of particles was highly effected by wind and cross wind. Clearly, a particle has to be so positioned as to take the optimum possible advantage of the wind if the maximum distances is requested. The wind astern increased the maximum distances of x direction compared with the wind ahead. Finally, it is possible to optimize the design of pump by using these results.

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흡착 캐터필러 시스템을 이용한 수직평면 등반로봇 기구부의 개발 (Development of a wall climbing robot with vacuum caterpillar wheel system)

  • 김황;김동목;양호준;이규희;서근찬;장도영;김종원
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.55-56
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    • 2006
  • This paper describes a new concept of the robot that can climb on the vertical plane. The engineering design problem of the main structure is presented and the experimental results regarding a new mechanism of climbing on the vertical wall are discussed. The locomotive motion of the robot is realized by using a series chain of two caterpillar wheels on which 24-suction pads are installed. White each caterpillar wheel rotates on the vertical plane surface, the vacuum pads are activated in sequence based on the sequential opening by specially designed mechanical valves. The detail design feature of the valve is also described in this paper. The overall size of the robot is around 460 mm in width and length, respectively, and 200 mm in height. Its mass is slightly over 14 kg. The main mechanical structure of the robot consists of driving motors, vacuum caterpillar system, steering part, vacuum pump and battery. The performance of the robot is verified on the vertical wall.

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저비속도 원심 회전차 외경가공에 따른 축추력 불균형을 감쇄시키기 위한 평형 피스톤 수정방안에 관한 고찰 (Modification of Balancing Piston for Trimming of Impeller Diameter for Maintaining Axial-Thrust Balance in Low-Specific-Speed Multistage Centrifugal Pumps)

  • 유일수;박무룡;윤의수
    • 대한기계학회논문집B
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    • 제35권9호
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    • pp.875-882
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    • 2011
  • 회전차 외경 가공에 따른 축추력 평형 및 체적 효율 변화에 대하여 고찰하였다. 평형장치로 평형피스톤이 장착된 저비속도 다단 원심 펌프를 연구 대상으로 해석을 수행하였다. 수평축 다단 펌프와 2종의 수직축 다단 펌프에 대해 해석 수행을 한 결과, 회전차 외경 가공에 의해 펌프 전방으로 추가적인 축추력이 발생하였다. 이러한 축추력 불균형은 수평축 펌프보다 수직축 펌프에서 크게 발생하였다. 축추력 불균형을 방지하기 위해 평형피스톤의 외경을 증가시키는 방안을 제시하였고, 이를 위해 필요한 평형피스톤의 직경 변화율을 산출하였다. 피스톤의 직경 변화량은 회전차 외경 가공률에 비례하여 증가하였다. 피스톤 직경 변화량이 클수록 틈새 면적 증가로 인해 체적효율이 감소하므로, 피스톤의 길이를 함께 증가시켜 체적 효율의 감소를 방지하는 것이 효과적이다.

수직형 U자 관 지중 열교환기를 갖는 지열원 열펌프의 동적 시뮬레이션 (Dynamic Simulation of Ground Source Heat Pump with a Vertical U-tube Ground Heat Exchanger)

  • 이명택;김영일;강병하
    • 설비공학논문집
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    • 제19권5호
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    • pp.372-378
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    • 2007
  • GHX (Geothermal Heat Exchanger) design which determines the performance and initial cost is the most important factor in ground source heat pump system. Performance of GHX is strongly dependent on the thermal resistance of soil, grout and pipe. In general, GHX design is based on the static simulation program. In this study, dynamic simulation has been peformed to analyze the variation of system performance for various GHX parameters. Line-source theory has been applied to calculate the variation of ground temperature. The averaged weather data measured during a 10-year period $(1991\sim2000)$ in Seoul is used to calculate cooling and heating loads of a building with a floor area of $100m^2$. The simulation results indicate that thermal properties of borehole play significant effect on the overall performance. Change of grout thermal conductivity from 0.4 to $3.0W/(m^{\circ}C)$ increases COP of heating by 9.4% and cooling by 17%. Change of soil thermal conductivity from 1.5 to $4.0W/(m^{\circ}C)$ increases COP of heating by 13.3% and cooling by 4.4%. Change of GHX(length from 100 to 200 m increases COP of heating by 10.6% and cooling by 10.2%. To study long term performance, dynamic simulation has been conducted for a 20-year period and the result showed that soil temperature decreases by $1^{\circ}C$, heating COP decreases by 2.7% and cooling COP decreases by 1.4%.

수직형 지열히트펌프 시스템의 육묘 온실 냉방 효과 분석 (Analysis on Cooling Effects of the Vertical Type Geothermal Heat Pump System Installed in a Greenhouse for Raising Seedling)

  • 강연구;유영선;김종구;김영화;장재경
    • 생물환경조절학회지
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    • 제22권1호
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    • pp.19-25
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    • 2013
  • 본 연구에서는 농가현장에 보급되어 있는 350kW (175kW ${\times}$ 2대)급 수직형 지열히트펌프시스템으로 $1,650m^2$ 면적의 육묘온실에 2011년 6월 7일부터 9월 18일까지 냉방실험을 수행하여 냉방성능을 분석하고, 농가현장에서 지열히트펌프를 가동함에 있어 보다 효과적인 운용방법을 고려해보고자 하였다. 증발기측 물 온도차는 증발기 입구 물온도가 $26.4^{\circ}C$에서 $17.1^{\circ}C$로 변할 때 최대 $1.7^{\circ}C$, 최소 $0.9^{\circ}C$ 차이(평균 $1.3^{\circ}C$)를 보였으며, 증발기 입구 물온도가 $16.6^{\circ}C$에서 $13.1^{\circ}C$로 변할 때 최대 $1.1^{\circ}C$, 최소 $0.8^{\circ}C$($0.9^{\circ}C$) 차이를 보였다. 히트펌프를 1대(175kW ${\times}$ 1대) 가동하는 경우, 증발기 입구에 유입되는 물온도 $13.0{\sim}15.5^{\circ}C$(응축기 입구에 유입되는 물온도 $19.4{\sim}21.2^{\circ}C$) 범위에서 냉방성능계수는 1.1~1.8, 발생한 냉방열량은 68.2~106.8kW, 소비전력은 61.0kW, 히트펌프를 2대(175kW ${\times}$ 2대) 가동하는 경우, 증발기 입구 물온도 $10.0{\sim}13.0^{\circ}C$(응축기 입구에 유입되는 물온도 $18.5{\sim}22.2^{\circ}C$) 범위에서 냉방성능계수는 2.0~2.7, 냉방열량은 203.9~262.0kW, 소비전력은 95~98kW 이었다. 6월의 누적 냉방열량은 14,718.6kWh(12,657,996kcal), 누적소비전력은 6,352.0kWh이었으며, 7월은 각각 26,765.1, 11,600.0kWh, 8월은 각각 28,437.2, 12,508.0kWh, 9월은 10,065.0, 5,125.0kWh로 8월이 가장 큰 냉방열량을 나타내었다.