• Title/Summary/Keyword: 고압공기분사

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Applicability of Washing Techniques Coupled with High-Pressure Air Jet for Petroleum-contaminated Soils (고압공기분사를 이용한 유류오염토양 세척기법의 적용성 연구)

  • Choi, Sang-Il;Kim, Kang-Hong
    • Journal of Soil and Groundwater Environment
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    • v.11 no.6
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    • pp.61-68
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    • 2006
  • Soil washing techniques coupled with high pressure air jet were applied for diesel-contaminated soils sampled by an underground oil reservoir of which the initial total petroleum hydrocarbon (TPH) ($2,828{\pm}206\;mg/kg$) exceeded 5 times of current standard level (500 mg/kg) regulated by the Soil-Environment Conservation Law. Through several tests, we found that the position of impeller has a critical impact for washing efficiencies. The highest washing efficiency was obtained at an oblique angle (30 degree) for the impeller and optimized mixing speed (300 rpm) that could have high shearing forces. Considered economical and feasible aspects, the optimum mixing time was 10 min. Rate constants of TPH removal derived from the first-order equation were not linearly increased as mixing speed increased, indicating that mechanical mixing has some limits to enhance the washing efficiencies. Application of high-pressure air jet in washing process increased the washing efficiency. This increase might be caused by the fact that the surface of micro-air bubbles strongly attached hydrophobic matters of soil particles. As the pressure of air jet increased, the separation efficiencies of TPH-contaminated soil particles increased. In the combined process of high-pressure air jet and mixing by impeller, the optimum mixing speed and air flow-rate were determined to be 60 rpm and $2\;kg/cm^2$, respectively. Consequently, the washing technique coupled with high-pressure air jet could be considered as a feasible application for remediating petroleum-contaminated soils.

Development of An Onion Peeler (I) - Air Injection Type Peeling Equipment - (양파박피기 개발 (I) - 공기분사식 박피장치 -)

  • 민영봉;김성태;강동현;최선웅;유준현
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2002.02a
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    • pp.323-328
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    • 2002
  • 양파의 껍질에 칼금을 내고 꼭지와 뿌리를 절단한 후 회전하는 두 개의 롤러 위에 양파를 낙하시켜 구르게 하면서 그 위에 고압공기를 분사시켜 양파의 외각 껍질을 제거하는 공기분사식 박피장치의 최적 작동조건을 구명하기 위하여 수행한 시험결과를 요약하면 다음과 같다. 1, 박피장치에 고압공기를 분사하지 않았을 때, 롤러의 원주속도가 빠를수록, 양파의 무게가 가벼울수록 구름소요시간은 줄어들었고 직경방향 구름율이 가장 높았는데, 직경방향 구름소요시간이 가장 짧게 나타나는 주롤러의 원주속도는 2.4 m/s이었다. 2. 주롤러의 원주속도 2.4 m/s일 때 양파의 무게, 분사공기압 및 칼금수가 증가할수록 박피율은 증가하였으며, 박피율이 가장 높은 조건은 칼금수 4개, 분사공기압 3.5 kg/$cm^2$이상이었다. 3. 박피소요시간은 칼금수가 많을수록, 분사공기압이 높을수록 짧아지는 것으로 나타났고, 칼금수를 4개로 하고 분사공기압을 4.0 kg/$cm^2$이상으로 하면 박피소요시간을 2초 이하로 유지할 수 었다. 4. 양파의 껍질강도는 저장기일과 조건에 따라 다르므로 모든 양파의 박피를 위해서는 분사 공기압을 4.0 kg/$cm^2$이상으로 하고 공기분사시간을 2초에서 5초가지 조절할 수 있는 장치를 부착하는 것이 좋을 것으로 판단된다. 5. 시험에 사용된 양파는 무게는 150~350$\pm$30 g, 직경 60~120 mm의 크기로 우리나라에서 생산되는 양파의 98%에 적용이 가능할 것으로 생각된다.

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식품가공에서 Impingement 기술의 응용

  • Lee, Bu-Yong
    • Bulletin of Food Technology
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    • v.11 no.2
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    • pp.70-78
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    • 1998
  • 공기와 같은 유체를 식품의 표면에 직접 고압으로 분사하는 것은 그 식품을 가열하거나, 건조, 냉각, 냉동시키는데 큰 도움을 주고 있다. Impingement-분사(공기, 스팀), 조사(방사선, 레이저), 침투(당액, 냉매) 등의 식품가공기술 기술은 우리가 생활하고 있는 주변에서 일상적으로 나타는 현상이다. 지표면에 태양빛이 전달되는 것이나 상점에서 물건구입시 포장지에 붙은 바코드(barcode)에 레이저빔을 쏘는 것도 모두 Impingement현상이다. 레이더도 전자파를 발사하는것(Impinging)이며, 배나 잠수함도 음파를 발사하여 장애물을 탐지하면서 운항한다. 세차장에서 차를 세차하는 것도 고압의 물을 분사(Impinging)하는 기술이 동원 되는 것이다. Impingement 방식에 의해 식품을 가열하거나 냉각하는 것은 기존의 방법들보다 속도는 느리지만 그만한 값어치가 있는 유용한 식품가공 기법이다.

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Comparison of Overall Characteristics between an Air-Assisited Fuel Injector and a High-Pressure Swirl Injector-Part I: Flow rate and Macroscopic Spray Characteristics (공기보조 분사기와 고압 선회식 분사기의 특성 비교- Part 1:유량 및 거시적 분무특성)

  • 장창수;최상민
    • Transactions of the Korean Society of Automotive Engineers
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    • v.8 no.5
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    • pp.20-27
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    • 2000
  • Characteristics of two favorite injection tools for gasoline direct injection application were compared. An air-assisted fuel injector (AAFI) and a high-pressure swirl injector (HPSI) were designed and fabricated for prototype development, and the characterization strategies and processes for both injection tool have been arranged in parallel. Characterization works were carried out mainly through measurements, and in some cases, computational fluid dynamic analysis was utilized. In this paper, overall characteristics defined as flow rate, spray pattern, penetration, internal spray structure and drop size distribution, was discussed. The AAFI was found to be advantageous in flexibility of fuel flow rate, and the HPSI in stability and precision. Spray shape factor was introduced to describe the development of intermittent sprays from both injectors. Axial penetration appeared to be almost linear in the case of the AAFI while its speed continuously decreased with time in the HPSI.

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Comparison of Overall Characteristics between an Air-Assisted Fuel Injector and a High-Pressure Swirl Injector- Part II: Microscopic Spray Characteristics (공기보조 분사기와 고압 선회식 분사기의 특성 비교 - Part II: 미시적 분무특성)

  • 장창수;최상민
    • Transactions of the Korean Society of Automotive Engineers
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    • v.8 no.5
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    • pp.28-35
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    • 2000
  • As a second part of the comparison study, microscopic features of an air-assisted fuel injector(AAFI) and a high-pressure swirl injector (HPSI) were characterized. They consist of the internal spray structure in terms of fuel mass and drop diameter, the overall atomization performance with respect to operating parameters and the drop size distribution. Large droplets are concentrated in around the head part of a spray field of the HPSI, while in the case of the AAFI, they were distributed in the tail part. Although the AAFI showed the better atomization performance, the feasible ranges of operating parameters such as injection and ambient pressure were found to be wider in the HPSI. Drop size distribution of the AAFI sprays was more dispersed than that of the HPSI. Drop size distribution of the AAFI sprays was more dispersed than that of the HPSI. However, at the well-atomized condition, it appeared to be very uniform.

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The Improvement of Form Accuracy by High Pressure Air Jet in Slot Grinding (미세홈 가공시 고압공기분사에 의한 형상정밀도의 향상)

  • Lee, Seok-U;Lee, Yong-Chan;Jeong, Hae-Do;Choe, Heon-Jong
    • Journal of the Korean Society for Precision Engineering
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    • v.16 no.1 s.94
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    • pp.68-74
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    • 1999
  • One of the recent changes in machining technology is rapid application of micro- and high precision grinding processes. A fine groove generation is necessary for the fabrication of optic, electronic and semiconductor parts, and achieved by chemical or mechanical processes. Slot grinding is very efficient for the generation of micro ordered groove with hard and brittle materials. As slot grinding is continuous, the ground depth become gradually shallow because of wheel wear. The form accuracy become worse from the increase of ground slot width by the loading phenomena at wheel side, results on chipping damage of the workpiece. The experiments achieve to the enhancement of the form accuracy and chipping free of the brittle materials using V shaped cast iron bonded diamond wheels. In this study we focused on the investigation of the effect of the high pressure air jet on the grinding characteristics. As a results, we found that the high pressure air jet is very effective on the reductions of the wheel wear, enhancement of the form accuracy.

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Experimental Study on the Performance Characteristics of Air Hybrid Engine (Air hybrid 엔진의 구동 특성에 관한 실험적 연구)

  • Lee, Yong-Gyu;Kim, Yong-Rae;Kim, Young-Min;Park, Chul-Woong;Choi, Kyo-Nam;Jeong, Dong-Soo
    • Journal of the Korean Institute of Gas
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    • v.15 no.5
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    • pp.50-56
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    • 2011
  • A preliminary experimental study of new concept air hybrid engine, which stores compressed air in the tank during braking and re-use it to propel vehicle during crusing or acceleration, was carried out in this study. A single cylinder engine was modified to realize the concept of air hybrid engine. Independent variable valve lift system was adopted in one of the exhaust valves to store the compressed air into the air tank during compression period. An air injector module was installed in the place of spark plug, and the stored compressed air was supplied during the expansion period to realize air motoring mode. For air compression mode, the tank with volume of 30 liter could be charged up to more than 13 bar. By utilizing this stored compressed air, motoring work of 0.41 bar of IMEP(Indicated mean effective pressure) at maximum can be generated at the 800rpm conditions, which is higher than the case of normal idle condition by 1.1 bar of IMEP.

Experimental Study on the Spray Characteristics for Sludge Removal Nozzle with High Pressure (슬러지 제거용 고압분사 노즐특성에 관한 실험적 연구)

  • Lee, Sam-Goo
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.40 no.2
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    • pp.155-160
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    • 2004
  • Water jet trajectories and velocity deficits from a high pressurize nozzles were experimentally observed. In this article, several parameters affecting plugging and erosion onto the steam generator tube were quantitatively analyzed. Visualization, velocity distribution, and spray growth rate with different nozzle configurations have been mainly focused using a 2-D PDPA (Phase Doppler Particle Analyzer) system. The results indicated that trajectories along the centerline regardless of their momentum has its potential core region. However, the phenomena from the peripheral part need to be meticulosly considered. Accordingly, it is evident that quantitative velocity deficits at the outer region are outstanding due to the aerodynamical drag and entrainment.

Experimental Investigation of the Effect of Partial Admission Ratio on the Performance of Supersonic Impulse Turbine (초음속 충동형 축류터빈의 부분분사비 효과에 대한 실험적 연구)

  • Jeong, Eun-Hwan;Park, Pyun-Goo;Kim, Jin-Han
    • Journal of the Korean Society of Propulsion Engineers
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    • v.11 no.4
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    • pp.59-66
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    • 2007
  • In this paper, experimental investigation results of the effect of partial admission ratio on the performance of axial turbine was presented. A supersonic impulse turbine of gas generator cycle liquid rocket engine turbopump was used for the test. for experimental purpose, a nozzle block, in which total 14 number of axi-symmetric convergent-divergent nozzles are arranged circumferentially, was designed and manufactured. Partial admission ratio was controlled by changing the number of active nozzles. High pressure air was used as working medium for the test. The experimental result revealed that the performance of the supersonic impulse turbine does not much affected by the partial admission ratio for supersonic impulse turbine.

Evaluation on Strengthening Capacities and Rebound Rate of Structures with Sprayed FRP (분사식 FRP에 의한 구조물의 보강 성능 및 반발률 평가)

  • Han, Seung-Chul;Yang, Jun-Mo;Yoon, Young-Soo
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.12 no.1
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    • pp.193-202
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    • 2008
  • This paper investigates experimentally the confining effect, strengthening capacity and rebound rate of sprayed Fiber-Reinforced-Polymer (SFRP). From the method, resin and chopped fibers are sprayed separately from the nozzle with high pressure, and then they are attached to the concrete surface, so structure could be repaired. To evaluate the strengthening effect of sprayed FRP, cylindrical specimens and beam specimens were strengthening with SFRP. As main material of FRP, glass fiber and polyester resin are used. To investigate the optimum condition of sprayed FRP, the effects of fiber length, coating thickness, fiber volume ratio and concrete strength were examined. Capacities of sprayed FRP method were also compared to the FRP sheet method. In case of the sprayed FRP, rebound rate is important parameter considering economical efficiency and constructibility, so rebound rate of was discussed. From the test results, optimum conditions of sprayed FRP were determined. SFRP method showed superior strengthening capacities than FRP sheet method.