• Title/Summary/Keyword: 공동현상

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GC/MS Analysis of Ethylene Glycol in the Contaminated Lubricant Oil Through Solvent Extraction Followed by Derivatization using Bistrimethylsilyltrifluoroacetamide (BSTFA) (엔진윤활유 중 Ethylene Glycol의 용제추출후 bistrimethylsilyltrifluoroacetamide(BSTFA)를 이용한 GC/MS 분석에 관한 연구)

  • Lee, Joon-Bae;Kwon, O-Seong;You, Jae-Hoon;Shon, Shungkun;Sung, Tae-Myung;Paeng, Ki-Jung
    • Tribology and Lubricants
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    • v.28 no.6
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    • pp.315-320
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    • 2012
  • For proper functioning, general machines usually need lubricant oil as a cooling, cleaning, and sealing agent at points of mechanical contact. The quality of lubricant oil can deteriorate during operation owing to various causes such as high temperature, combustion products and extraneous impurities. In this study, a heavy load stopped during operation, and the oil was analyzed to check whether any impurities were added. Extraction using acetonitrile followed by reaction with BSTFA(bistrimethylsilyl trifluoroacetamide) showed that, trimethylsilylated ethylene glycol was present in the lubricant oil. To quantify the ethylene glycol in the oil, deuterium-substituted ethylene glycol, which acted as an internal standard, was added to the sample and then extracted with the solvent. Next, the extract was reacted with the derivatizing agent(BSTFA) and then analyzed with GC/MS. The detection limit of this method was found to be $0.5{\mu}g/g$ and the recovery of oil containing $20,000{\mu}g/g$ of ethylene glycol was measured to be 94.8%. A damaged O-ring and eroded cylinder liner were found during the overhaul, which implied the leakage of coolant containing ethylene glycol into the lubricating system. The erosion of the cylinder liner was assumed to be due to cavitation of the coolant in the cooling system.

Evaluation of Pressure History due to Steam Explosion (증기폭발에 의한 압력이력 평가)

  • Kim, Seung Hyun;Chang, Yoon-Suk;Song, Sungchu;Hwang, Taesuk
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.38 no.4
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    • pp.355-361
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    • 2014
  • Steam explosions can be caused by fuel-coolant interactions resulting from failure of the external vessel cooling system in a new nuclear power plant. This can threaten the integrity of structures, including the nuclear reactor and the containment building. In the present study, an improved technique for analyzing the steam explosion phenomenon was proposed on the basis of previous research and was verified by simulations involving alumina experiments. Also, the improved analysis technique was applied to determine the pressure history of the reactor cavity in accordance with postulated failure locations. The results of the analysis revealed that the effects of vessel side failure are more serious than those of vessel bottom failure, with approximately 70% higher maximum pressure.

Design Sensitivity Estimation of Injector Nozzle Hole Considering Cavitation (캐비테이션에 관한 인젝터 노즐 홀의 설계민감도 평가)

  • Yeom, Jeong Kuk;Ha, Hyeong Soo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.11
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    • pp.1361-1369
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    • 2013
  • This study performs a computational fluid dynamics (CFD) analysis of the inner flow of a multihole injector nozzle by using ANSYS CFX 13.0. Based on the obtained results, a design of experiment (DOE) was performed and applied to investigate the effects of injector nozzle design parameters on cavitation. To analyze the design sensitivity and signal-to-noise ratio (S/N ratio), the hole diameter, hole length, hole angle, and K-factor of the nozzle hole were selected as design parameters, and the effect of these parameters was investigated at 16 experimental points. Consequently, it was found that the effect of the K-factor on the cavitation and inner flow of the injector nozzle is the greatest. Thus, the selection of a suitable K-factor is important in nozzle design considering cavitation flow.

Polymerization of Polystyrene Latex using Ultrasound Energy Effect (초음파 에너지를 이용한 Polystyrene Latex의 중합 특성)

  • Kim, Hyung Jin;Kim, Won II;Lee, Seung Bum;Hong, In Kwon
    • Applied Chemistry for Engineering
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    • v.8 no.6
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    • pp.886-892
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    • 1997
  • There are many methods to synthesize polystyrene latex. Emulsion polymerization technique is commonly used commercially, but it requires a new technology to replace a traditional polymerization method because of the disadvantage of chemical initiator for environmental pollution. Since free radicals can be produced by ultrasound energy effect, polystyrene latex was synthesized using ultrasound energy instead of chemical initiator. As the ultrasonic irradiation time was increased, average molecular weight was increased and polydispersity was decreased. The degree of polymerization was increased with the concentration of SDS and maximum degree of polymerization was shown at 2wt.% SDS concentration and the reaction temperature of $40^{\circ}C$. During the course of polymerization, molecular weight was repeatedly fluctuated because of occurrence of depolymerization. Narrow molecular weight distribution polystyrene latex having controlled molecular weight was synthesized by controlling ultrasonic irradiation time and the concentration of SDS.

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Modeling Dynamic Behavior and Injection Characteristic of a GDI Injector (GDI 인젝터의 동적 거동과 분사 특성에 대한 모델링)

  • Lee, Kye Eun;Kim, Na Young;Cho, Young Jun;Lee, Dong Ryul;Park, Sungwook
    • Journal of ILASS-Korea
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    • v.22 no.4
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    • pp.210-217
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    • 2017
  • A gasoline direct injection engine has an intake air temperature can be lowered by the fuel vaporization in the combustion chamber increase the volume efficiency is high compression ratio. Therefore, study for injection rate and characteristics which influence mixture formation in combustion chamber is important. Movement of the injector needle has a direct effect on the injection of the fuel, such as formation of cavitation, the fuel injection rate, etc. Therefore, recent studies on the dynamic characteristics of the injector considering the movement of the needle have been reported, but it takes a lot of time and cost to experimentally confirm the movement of the needle inside the injector. In this study, AMESim, a commercial 1-D code, and Star-CCM+, a 3-D CFD code, were used to predict the dynamic performance of the injector with needle motion. In order to predict the movement of the needle under the high pressure, the result of the surface pressure distribution according to the movement of the needle was derived by using the morphing technique of flow analysis. In addition, we predicted the injection rate of the injector considering the movement of the needle in conjunction with the 1-D code. The injection rate of the injector was measured by the BOSCH's method and the results were similar to those of the simulation results. This method can predict the injection rate and injection characteristics and this result is expected to be used to predict the performance of gasoline direct injection engines with low cost and time in the future.

A Numerical Study on the Influence of the Horizontal Gap upon the Cavitation Behavior of a Horn Type Rudder (혼-타의 수평틈새가 캐비테이션에 미치는 영향에 관한 수치적 연구)

  • Seo, Dae-Won;Lee, Seung-Hee;Kim, Hyo-Chul;Oh, Jung-Keun
    • Journal of the Society of Naval Architects of Korea
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    • v.47 no.2
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    • pp.113-121
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    • 2010
  • Recently, as container ships become larger and faster, rudder cavitations are more frequently observed near the gap between the horn and rudder plates of the ships to cause serious damages to the rudder surface of the ship. The authors already have suggested through a series of model experiments and numerical computations that employment of an appropriate blocking device for gap flow may retard the gap cavitation. For examples, a cam device installed near the outer edges of the vertical gap or a water-injection device combined with a pair of half-round bars installed inside the gap can considerably reduce the gap cavitation. However, it is also found that effective blocking of the flow through the vertical gap results in growth of the cavitation near the horizontal gap instead. In the present study, effectiveness of the simultaneous blocking of the flow through the horizontal and vertical gaps of a horn type rudder in minimizing the damage by gap cavitation is studied. Additional blocking disks are inserted inside the horizontal gaps on the top and bottom of the pintle block and numerical computations are carried out to confirm the combined effect of the blocking devices.

Prediction and Reduction of Alarm Sound Propagated through Elevator Shaft (엘리베이터 샤프트를 통한 경보음 전달 예측과 개선)

  • Jeong, Jeong-Ho
    • Fire Science and Engineering
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    • v.33 no.4
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    • pp.89-96
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    • 2019
  • In this study, alarm sound generated as a priority alert system propagation through an elevator shaft in apartment buildings were simulated using room acoustic simulation software. The simulations were conducted on three kinds of elevator hall plan with a different number of elevators and placement. First, the elevator shaft without sound absorption material was simulated as a condition of the present. When the distance from the alarm sound generating floor became farther, alarm sound level was decreased. However, the alarm sound level three-floor distance was about 54 dB(A)~56 dB(A) which were louder than a background sound level of typical apartment buildings. Sound absorption material placement proposed by previous studies were simulated and the alarm sound levels were decreased about 12 dB~16 dB. These levels were similar or lower than the background level of apartment buildings. From these results, it can be concluded that placing sound absorption material on the surface of the elevator shaft wall can be one of the methods to control the alarm sound as regulated in NFSC.

Analysis of Flow Characteristics in Pump Sump by Floor Cone Anti-Vortex Device Installation (원뿔 형태의 와류발생저감장치 설치로 인한 펌프 흡수조 내 흐름특성 변화 분석)

  • Byeon, Hyunhyuk;Kim, Heejung;Kim, Seojun;Yoon, Byumgman
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.73-73
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    • 2017
  • 최근 기후변화에 따른 집중호우로 도시홍수의 피해가 급격히 증가하고 있다. 특히 인구가 밀집하고 교통량이 많은 대도시의 경우 동일한 호우에 대하여 녹지나 농경지 등에 비해 그 피해가 더 심각하다. 일반적으로 홍수 피해의 직접원인은 외수로 인한 피해와 내수로 인한 피해로 크게 구분할 수 있다. 외수피해는 주로 소하천 및 지천의 범람, 제방의 붕괴 등으로 발생한 것이며 내수피해는 배수로, 하수도 및 펌프장의 내수배제능력 부족이 주된 원인이다. 따라서 도시홍수를 효과적으로 방어하기 위해서는 우선적으로 내배수시설의 성능개선이 선행되어야 할 필요가 있다. 이러한 내배수 시설 중 빗물펌프장은 흡수조로 우수를 유도한 후 펌프를 이용하여 하천으로 배수하고 있다. 우수를 원활히 하천으로 배수하기 위해서는 흡수조 내 흐름이 안정적으로 형성되어야 한다. 하지만 갑작스런 폭우 등으로 인하여 우수가 짧은 시간에 집중될 경우 흡수조 내에서 빠른 유속과 불규칙한 흐름이 발생하여 와류가 생성된다. 이러한 와류는 펌프 입구로 공기를 유입시켜 효율 저하의 원인이 되며, 공동현상을 발생시켜 펌프의 손상을 초래하기도 한다. 따라서 와류발생 저감장치(Anti-Vortex Device)를 설치하여 와류의 생성을 억제하고자 하는 연구들이 수행되었으며, 그 결과 다양한 형태의 와류발생 저감장치가 소개되었다. 하지만 와류발생 저감장치의 명확한 설계기준이 제시되어 있지 않으며, 와류발생 저감장치를 설치하였을 때 효율이 얼마만큼 증가하는가에 대한 실험적인 자료가 제시되어 있지 않다. 따라서 본 연구에서는 원뿔 형태의 와류발생 저감장치 설치 전 후의 흐름특성을 분석하여 원뿔형태의 와류발생 저감장치가 흐름안정에 얼마나 효과가 있는지를 확인하기 위하여 PIV(Particle Image Velocimetry) 기법을 이용한 유속분포와 와도를 분석하여 흐름 안정 효과를 정량적으로 검토하였다. 그 결과 와류 발생을 저감할 수 있었으며, 정량적으로 와도가 감소하여 펌프 흡입량이 증가됨을 확인하였다. 향후 추가적으로 다양한 형태의 와류발생 저감장치에 대한 효과를 검토한다면 최적의 펌프 흡수조 설계에 도움이 될 것으로 기대한다.

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Policy Directions and Challenges for Revitalizing of Small School in Local Community (지역사회 소규모학교 살리기 정책 방향과 해결 과제)

  • Cho, Kum-Ju
    • The Journal of the Korea Contents Association
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    • v.19 no.2
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    • pp.99-111
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    • 2019
  • With the low birth rate and the inner city decline, the number of small schools is expected to increase. In this trend, the Ministry of Education has consistently used the number of students as a standard for the merger and abolition of schools since 1982, but it seems that has generated a vicious circle of education in rural areas and also it did not reflect realistic requirements and changes in the times although it is efficiency of local education finances. With the number of students constantly decreasing, it has a high probability to make villages without schools in urban areas if decisions are made by the number of students. In this sense, it is suggested that regional contexts and socioeconomic environment should be taken into account rather than to conduct the merger and abolition of small schools with economic logic. It is necessary to change the direction of improving the quality of education through the operation of small schools for coexistence of schools and villages and a cultivating the manpower needed in the 21st century knowledge information society and the 4th industrial revolution era. Therefore, we tried to find tasks for expanding small schools of the local community and developing small schools suitable for future social change.

Enhancement of a Secure Remote Working Environment using CloudHSM and edge-DRM Proxy (Cloud HSM와 edge-DRM Proxy를 활용한 안전한 원격근무 환경 강화 연구)

  • Kim, Hyunwoo;Lee, Junhyeok;Park, Wonhyung
    • Convergence Security Journal
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    • v.21 no.3
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    • pp.25-30
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    • 2021
  • Due to the current COVID-19 pandemic, companies and institutions are introducing virtual desktop technology, one of the logical network separation technologies, to establish a safe working environment in a situation where remote work is provided. With the introduction of virtual desktop technology, companies and institutions can operate the network separation environment more safely and effectively, and can access the business network quickly and safely to increase work efficiency and productivity. However, when introducing virtual desktop technology, there is a cost problem of high-spec server, storage, and license, and it is necessary to supplement in terms of operation and management. As a countermeasure to this, companies and institutions are shifting to cloud computing-based technology, virtual desktop service (DaaS, Desktop as a Service). However, in the virtual desktop service, which is a cloud computing-based technology, the shared responsibility model is responsible for user access control and data security. In this paper, based on the shared responsibility model in the virtual desktop service environment, we propose a cloud-based hardware security module (Cloud HSM) and edge-DRM proxy as an improvement method for user access control and data security.