• 제목/요약/키워드: Expansion Pipe

검색결과 162건 처리시간 0.02초

인공동결공법 적용 후 융해에 따른 해성 점토지반의 역학적 특성 평가 (Evaluation of mechanical characteristics of marine clay by thawing after artificial ground freezing method)

  • 최현준;이동섭;이효범;손영진;최항석
    • 한국터널지하공간학회 논문집
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    • 제21권1호
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    • pp.31-48
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    • 2019
  • 인공동결공법(artificial ground freezing method)은 연약지반 및 도심지에서의 지하구조물 시공에 적합한 차수 및 지반보강 공법이다. 인공동결공법은 동결관(freezing pipe)을 지중에 매설한 후 냉매(refregerant)를 순환시켜 대상 지반에 차수벽 및 지지체의 역할을 수행하는 동결벽체(frozen wall)를 형성한다. 그러나 간극수의 동결에 따른 간극수의 부피팽창은 지반의 변형을 야기시킬 수 있고, 시공완료 후 동결토의 융해에 따른 지반의 소성변형 및 입자의 재배치 등은 지반의 역학적 특성을 변화시킨다. 본 논문에서는 인공동결공법에 따른 해성 점토지반(marine clay)의 동결속도를 평가하기 위하여 인공동결공법 현장실증시험을 수행하였다. 현장실증시험은 지중에 3.2 m 깊이로 매설된 동결관 1공 내로 초저온 냉매인 액화질소를 순환시키는 방법으로 수행되었다. 또한, 원지반과 인공동결공법에 의해 동결/융해된 지반에 대한 피에조 콘 관입시험(piezo cone penetration test, CPTu) 및 공내재하시험(lateral load test, LLT)을 수행함으로써 동결/융해(freezing-thawing)에 따른 해성 점토지반의 강도 및 강성 특성의 변화를 평가하였다. 시험결과, 부피가 약 $2.12m^3$인 원기둥 모양의 동결체를 형성하는데 총 3.5일이 동안 약 11.9 ton의 액화질소가 소요되었다. 동결/융해에 따른 지반의 강도 및 강성 저하는 각각 48.5%, 22.7%로 산정되었다.

설비공학 분야의 최근 연구 동향 : 2012년 학회지 논문에 대한 종합적 고찰 (Recent Progress in Air-Conditioning and Refrigeration Research : A Review of Papers Published in the Korean Journal of Air-Conditioning and Refrigeration Engineering in 2012)

  • 한화택;이대영;김사량;김현정;최종민;박준석;김수민
    • 설비공학논문집
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    • 제25권6호
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    • pp.346-361
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    • 2013
  • This article reviews the papers published in the Korean Journal of Air-Conditioning and Refrigeration Engineering during 2012. It is intended to understand the status of current research in the areas of heating, cooling, ventilation, sanitation, and indoor environments of buildings and plant facilities. The conclusions are as follows : (1) The research works on thermal and fluid engineering have been reviewed as groups of fluid machinery, pipes and valves, fuel cells and power plants, ground-coupled heat pumps, and general heat and mass transfer systems. Research issues are mainly focused on new and renewable energy systems, such as fuel cells, ocean thermal energy conversion power plants, and ground-coupled heat pump systems. (2) Research works on the heat transfer area have been reviewed in the categories of heat transfer characteristics, pool boiling and condensing heat transfer, and industrial heat exchangers. Researches on heat transfer characteristics included the results for natural convection in a square enclosure with two hot circular cylinders, non-uniform grooved tube considering tube expansion, single-tube annular baffle system, broadcasting LED light with ion wind generator, mechanical property and microstructure of SA213 P92 boiler pipe steel, and flat plate using multiple tripping wires. In the area of pool boiling and condensing heat transfer, researches on the design of a micro-channel heat exchanger for a heat pump, numerical simulation of a heat pump evaporator considering the pressure drop in the distributor and capillary tubes, critical heat flux on a thermoexcel-E enhanced surface, and the performance of a fin-and-tube condenser with non-uniform air distribution and different tube types were actively carried out. In the area of industrial heat exchangers, researches on a plate heat exchanger type dehumidifier, fin-tube heat exchanger, an electric circuit transient analogy model in a vertical closed loop ground heat exchanger, heat transfer characteristics of a double skin window for plant factory, a regenerative heat exchanger depending on its porous structure, and various types of plate heat exchangers were performed. (3) In the field of refrigeration, various studies were executed to improve refrigeration system performance, and to evaluate the applicability of alternative refrigerants and new components. Various topics were presented in the area of refrigeration cycle. Research issues mainly focused on the enhancement of the system performance. In the alternative refrigerant area, studies on CO2, R32/R152a mixture, and R1234yf were performed. Studies on the design and performance analysis of various compressors and evaporator were executed. (4) In building mechanical system research fields, twenty-nine studies were conducted to achieve effective design of mechanical systems, and also to maximize the energy efficiency of buildings. The topics of the studies included heating and cooling, HVAC system, ventilation, renewable energy systems, and lighting systems in buildings. New designs and performance tests using numerical methods and experiments provide useful information and key data, which can improve the energy efficiency of buildings. (5) In the fields of the architectural environment, studies for various purposes, such as indoor environment, building energy, and renewable energy were performed. In particular, building energy-related researches and renewable energy systems have been mainly studied, reflecting interests in global climate change, and efforts to reduce building energy consumption by government and architectural specialists. In addition, many researches have been conducted regarding indoor environments.