http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
송충현,김경석,김성식 한국공작기계학회 2001 한국공작기계학회 춘계학술대회논문집 Vol.2001 No.-
Control system for cutting piston used in vehicle that is one of the 3D shape cutting using CNC lathe is presented. In order to cut the hybrid piston shape using CNC lathe, defined piston shape and change into machine code. The control software was developed for the high speed piston shape cutting. In this paper, the performance of this software was evaluated practically. As a result, the evaluated cutting precision was quantitatively compared with theoretical precision. Also the productivity and the quality by using CNC lathe with control software were evaluated those by using profiling.
토양 탱크에서 흡수 알코올과 비흡수 알코올을 이용한 벤젠-비수용상액체 제거 연구
송충현,정승우 유기성자원학회 2009 유기물자원화 Vol.17 No.3
Coinjection of alcohol and air or alcohol flooding only were evaluated with 3-D soil tank for removal of nonaqueous phase liquid (NAPL) contaminant from soil. 70%-ethanol and 40%-isopropanol were used for non-NAPL-swelling alcohol and NAPL-swelling alcohol, respectively. 729 ml-benzene was placed in the 37 liter soil tank. Alcohols were respectively injected from the injection well placed near the bottom of the tank and mobilized free phase NAPL and aqueous phases were then recovered from the extraction well placed in the upper part of the soil tank. Approximately 50% of removed NAPLs were free-phase in all experiments. The results were completely different to the previous soil column experiment results and also implied that alcohol properties did not affect the NAPL removal efficiency in the 3-D soil tank experiment. Air was also co-injected with alcohol to evaluate co-injection effects on NAPL removal. Enhanced NAPL removal effect of co-injection of 70%-ethanol and air was also found even in the 3-D soil tank evaluation. However, co-injection effect of 40%-iso-propanol and air was less apparent. This study determined that the most important parameter governing alcohol flooding for NAPL removal would be extraction capacity to recover NAPL and aqueous phase flowing in the soil. More researches are required for improving recovery efficiency of extraction well in real soil contamination conditions. 토양으로 유출된 비수용상액체(nonaqueous phase liquid; NAPL)의 제거를 위한 알코올 희석 세정공 정의 기술개발을 위하여 3-D 토양탱크에서 NAPL 흡수 및 비흡수 알코올 단독 또는 공기 동시 주입공정 에 의한 벤젠 NAPL 제거 효과를 평가하였다. 37L 규모의 토양탱크에 729mL의 벤젠을 주입하고 70%에 탄올 (NAPL 비흡수 알콜)과 40%이소 프로판올(NAPL 흡수 알콜)을 탱크 하부에 설치된 주입정에 주입 하고 상부의 추출정으로부터 자유상 NAPL 및 수용액을 추출하였다. 그리고 알코올 주입과 공기를 동시 주 입하여 기존 토양칼럼실험에서 확인된 공기 동시주입시 화학세정 증대 효과를 아울러 평가하였다. 70% 에 탄올 및 40% 이소-프로판올에 의한 토양탱크 세정공정 결과 전체 벤젠 제거율의 과반수는 자유상 NAPL 형태로 제거되었다. 알코올의 NAPL 흡수 특성에 따라 벤젠 제거 특성이 현저히 다르게 나타난 토양칼럼결 과와 달리 3-D공정에서는 알코올 NAPL 흡수특성의 영향이 매우 적게 나타났다. 70%에탄올과 공기 동시 주입에 의한 벤젠 제거 증대 효과는 3-D 토양탱크 실험결과에서도 여전히 확인되었다. 그러나 NAPL 흡수 알코올인 40% 이소-프로판올은 공기 동시 주입에 의한 벤젠 제거 증대효과가 여전히 미미하게 나타났다. 3-D 토양탱크 실험결과 화학세정공정에 의한 NAPL제거에 있어 가장 중요한 인자는 추출정의 NAPL 및 유출수 추출능력이었다. 즉 토양내 효과적인 NAPL 정화를 위해서는 화학적인 작용에 의하여 이동된 자유 상 NAPL 및 수용액을 밖으로 효율적으로 추출할 수 있는 공정이 필요하다.
Cosolvent에 의한 토양 내 Benzene-NAPL 세정 연구
송충현,정승우,이병진,고성환,Song, Chung-Hyun,Jeong, Seung-Woo,Lee, Byung-Jin,Go, Sung-Hwan 한국지하수토양환경학회 2008 지하수토양환경 Vol.13 No.3
토양공극에 위치한 벤젠-NAPL(Non-Aqueous Phase Liquid)에 대한 cosolvent 세정기술을 연구하였다. 토양칼럼을 이용하여 cosolvent 내 알코올 특성 및 농도 변화에 따른 NAPL 제거 변화를 실험하였다. NAPL에 흡수되어 부피를 증가시키는 NAPL swelling 알코올(1-프로판올, TBA)과 Non-swelling 알코올(에탄올) 특성에 따른 NAPL 제거 효과를 평가한 결과, 에탄올 cosolvent의 NAPL 제거 메커니즘은 용해이며, swelling 알코올의 주요 NAPL 제거 메커니즘은 이동임이 확인되었다. 토양 내 NAPL 제거에 있어 용해보다는 NAPL 이동에 의한 제거가 훨씬 효과적이었다. 알코올 농도 변화 실험에서, cosolvent 내 알코올 함유량이 40% 이상 되어야 토양 내 NAPL의 이동이 현저히 증가하는 것으로 나타났다. Removal of nonaqueous phase liquid present in the soil column by using cosolvent floods was investigated. The first objective of the study was to elucidate the removal mechanism of cosolvent flooding for benzene-NAPL. The second objective of the study was to evaluate the effects of the alchohol partitioning type (NAPL swelling and non-swelling) and concentration on NAPL removal efficiency from the soil column. The main NAPL removal mechanism of swelling alcohol was mobilization, while that of non-swelling alcohol was NAPL dissolution. The NAPL removal efficiency of swelling alcohol was more effective than that of non-swelling alcohol. Removal of Benzene NAPL entrapped in the soil would be effective under the cosolvent flood condition of alcohol content greater than 40% in volume.
송충현,최은철,박용걸 한국철도학회 2019 한국철도학회논문집 Vol.22 No.11
This paper uses the static and dynamic responses of track components to compare and analyze the track performance and dynamic stability of railroad structures with different characteristics. Through field measurements, the static and dynamic responses of each track component were measured on four structures: earthwork, bridge, tunnel and turnout. Using the data under these vehicle and track conditions, track performance and dynamic stability, such as track support stiffness, derailment coefficient, and wheel load fluctuation are analyzed and evaluated for four structures. Based on the results, this paper provides basic data of maintenance contents and sets terms of track components for each structure.