• 제목/요약/키워드: Fixed Effects

검색결과 1,996건 처리시간 0.028초

연속경간 하중을 받는 I형 스텝보의 비탄성 횡-비틀림 좌굴강도산정을 위한 모멘트 구배계수 연구 (A Study on Moment Gradient Factor for Inelastic Lateral-Torsional Buckling of Stepped I-Beam Subjected to Uniformly Distributed Load and End Moment)

  • 손지민;박종섭
    • 한국방재학회 논문집
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    • 제9권4호
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    • pp.1-9
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    • 2009
  • 본 논문은 등분포하중과 양끝단에 모멘트가 작용하는 계단식 변단면보(스텝보)의 비선형 횡-비틀림 좌굴에 대해 연구이다. 3차원 유한요소해석 프로그램인 ABAQUS(2007)와 회귀분석 프로그램 MINITAB(2006)이 단순보 경계조건을 가지고 있는 일단 또는 양단 변단면보의 설계 좌굴강도 산정식 개발에 적용되었다. 해석모델의 비지지길이 내 중앙부분의 플랜지는 폭 30.48cm, 두께 2.54cm로 고정되었으며, 양단 또는 일단 플랜지의 크기는 해석매개변수로 고려되었다. 양단 스텝보는 플랜지 해석매개변수를 고려하여 27개, 일단 스텝보는 36개의 해석모델이 하나의 하중조건에 적용되었다. 본 연구는 잔류응력과 초기변형을 고려하여 비탄성 구간 내 3가지 비지지길이와 5가지 하중조건이 고려된 총 945개의 해석모델을 고려하였다. 잔류응력의 분포는 Pi와 Trahair(1995)가 적용한 분포도를 사용하였으며, 초기변형은 현대제철의 제작기준인 형강길이의 0.1%조건을 적용하였다. 본 논문에 제안된 식과 유한요소해석결과를 비교분석한 결과 양단 스텝보에서는 최대 13%, 일단 스텝보에서는 최대 10%의 차이를 보이고 있다. 본 연구를 통해 개발된 식은 경제적이고 합리적인 설계에 적극활용 가능하며, 변단면 부재의 비탄성 좌굴강도 연구에 크게 기여할 것이다.

유사계의 역동성 감소가 지석천 충적하도의 지형변화에 미치는 영향 (Effects of Reduced Sediment Dynamics on Fluvial Channel Geomorphology in the Jiseok River)

  • 옥기영;이삼희
    • 한국수자원학회논문집
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    • 제45권5호
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    • pp.445-454
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    • 2012
  • 본 연구는 상류역에 댐이 존재하지 않는 충적하천에서 과거 이치수 위주의 하천정비사업이 하도지형의 장기적인 변화에 미치는 영향과 그원인을 유사계의 관점에서 파악하는 것을 목적으로 하였다. 영산강 유역의 지석천 중하류역을 대상으로 하도선형, 사주형태와 식생활착율 등의 하도의 평면형상 변화를 분석하고, 하상재료 및 하상변동 조사를 실시하였다. 자연적인 충적하천 당시(1966년)와 제방과 저수로, 취수보 건설 등의 하천정비사업으로 변모된 최근(2002년)의 항공사진의 비교분석결과, 유로형태의 변화(단일사행에서 다지형화), 하도선형의 만곡도 감소(9.2%), 지천사주의 확장, 그리고 사주의 식생활착(97%) 현상이 발견되었다. 이와 같은 하도의 주수로 고정화와 사주내 식생이입은 댐하류 조절하천에서 나타나는 대표적인 평면 하도특성으로, 대상구간에서도 댐하류역과 유사한 유황의 변화 또는 유사량 감소가 영향을 미치고 있음을 추정할 수 있다. 유황변동 조사결과, 비록 댐하류 하천에서 나타나는 연간 수위변동의 균일성은 보이지 않았지만, 과거에 비해 홍수빈도와 규모가 감소하였다. 하상재료의 입경은 4~5배정도 조립화 되었고, 하상변동 조사결과 전체적으로 하상저하가 발생하였으나 지천합류부에서 국부적인 하상상승을 보였다. 이러한 결과들은 비록 댐으로 조절되지 않는 충적하천에서도, 하도내의 하천정비사업으로 인하여 유사 공급량의 감소, 지천과 본류간의 유사이동능력의 불균형, 그리고 하도내 지형형성 과정의 저하 등과 같은 유사계의 인위적인 교란이, 장기적으로 댐하류 조절하천과 유사한 하도의 평면하도 형상의 변화를 유발하고 있음을 의미한다.

다채널 세라믹 정밀여과막으로 호소수 처리시 질소 역세척 시간 및 막간 압력차의 영향 (Effect of $N_2$-back-flushing Time and TMP in Lake Water Treatment Using Multichannel Ceramic Microfiltration Membranes)

  • 박진용;박보름
    • 멤브레인
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    • 제17권2호
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    • pp.124-133
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    • 2007
  • 본 연구에서는 2종류의 다채널 알루미나 세라믹 정밀여과막으로 호소수를 처리할 경우, 질소 역세척 시간(BT) 및 막간압력차(TMP) 영향과 최적운전조건을 규명하였다. 정상여과시간(FT)은 8분, 유량 2.0 L/min, 역세척 압력 2.0 bar로 고정하였고, BT는 $10{\sim}60$초, TMP는 $0.6{\sim}2.0$ bar로 변화시켰다. 또한, 최적운전조건은 막오염에 의한 저항 $(R_f)$, 무차원한 투과선속 $(J/J_o)$, 투과선속 (J), 총여과부피$(V_T)$의 측면에서 고찰하였다. 그 결과, $0.4{\mu}m$의 평균기공 크기를 갖고 있는 HC04 분리막의 최적 역세척 조건은 BT=10초, $1.0{\mu}m$의 평균기공인 HC10 분리막에서는 20초임을 알 수 있었다. 한편, TMP가 증가할수록 구동력의 증가로 보다 많은 $V_T$를 얻을 수 있었다. 오염물질 제거율은 탁도(Turbidity) 95.4% 이상, 화학적 산소 요구량 $(COD_{Mn})\;12.7{\sim}20.1%$, 암모니아성 질소 $(NH_3-N)\;0.0{\sim}6.4%$, 총질소 (T-N) $1.9{\sim}4.6%$, 총인 (T-P) $34.9{\sim}88.4%$의 제거 율을 보였다.

생석회 제조 공정에서의 풍촌층 고품위 석회석의 소성 특성 (Calcination Characteristics of High-purity Limestone from the Pungchon Limestone in the Quicklime Manufacture)

  • 노진환;이현철
    • 한국광물학회지
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    • 제21권2호
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    • pp.209-224
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    • 2008
  • 풍촌층에서 산출되는 다양한 유형의 고품위 석회석을 대상으로 하여 이들의 하소 특성을 규제하는 원광의 응용광물학적 영향 요인들을 파악하고자 하였다. 이를 위해서 원광의 특징과 동일한 소성 조건 하에서 제조된 생석회의 응용광물학적 특성을 체계적으로 분석 및 계측하였고 그 결과를 원광의 광물 특성과 연계하여 비교 검토하였다. 석회석의 가열처리 단계에서 생석회로의 전이 과정은 입자의 경계부나 방해석 결정 내의 벽개 및 쌍정면 등과 같은 물성적 취약대에서 선택적으로 진행되며, 이 과정에서 원암의 모든 조직적 사항이 그대로 잔존된다. 또한 소성 시간이 길어짐에 따라 생석회 결정들의 결정 입도와 결정형의 발달이 심화되는 경향을 보인다. 풍촌층 고품위 석회석의 소성 특성에 영향을 주는 주된 규제 요인으로서 결정 입도, 벽개 및 쌍정의 발달 정도 및 조직적 사항이 중요한 역할을 하는 것으로 밝혀졌다. 특히 원암의 낮은 결정 입도와 치밀한 입간 조직 양상은 모든 소성특성에 있어서 유리한 것으로 판단된다. 그러나 벽개 및 쌍정면의 발달은 가열 과정 중 균열대를 형성시키기 때문에 생석회 공정에 있어서 부정적인 역할을 하는 것으로 평가된다. 따라서 생석회 용도로 사용되는 석회석으로는 가급적 낮은 결정 입도와 대리암의 조직을 보이는 광석이 상대적으로 유리할 것으로 여겨진다.

The Influence of the Nucleotide Sequences of Random Shine-Dalgarno and Spacer Region on Bovine Growth Hormone Gene Expression

  • Paik Soon-Young;Ra Kyung Soo;Cho Hoon Sik;Koo Kwang Bon;Baik Hyung Suk;Lee Myung Chul;Yun Jong Won;Choi Jang Won
    • Journal of Microbiology
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    • 제44권1호
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    • pp.64-71
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    • 2006
  • To investigate the effects of the nucleotide sequences in Shine-Dalgarno (SD) and the spacer region (SD-ATG) on bovine growth hormone (bGH) gene expression, the expression vectors under the control of the T7 promoter (pT7-7 vector) were constructed using bGH derivatives (bGH1 & bGH14) which have different 5'-coding regions and were induced in E. coli BL21 (DE3). Oligonucleotides containing random SD sequences and a spacer region were chemically synthesized and the distance between the SD region and the initiation codon were fixed to nine bases in length. The oligonucleotides were annealed and fused to the bGH1 and bGH14 cDNA, respectively. When the bGH gene was induced with IPTG in E. coli BL21(DE3), some clones containing only bGH14 cDNA produced considerable levels of bGH in the range of $6.9\%\;to\;8.5\%$ of total cell proteins by SDS-PAGE and Western blot. Otherwise, the bGH was not detected in any clones with bGH1 cDNA. Accordingly, the nucleotide sequences of SD and the spacer region affect on bGH expression indicates that the sequences sufficiently destabilize the mRNA secondary structure of the bGH14 gene. When the free energy was calculated from the transcription initiation site to the +51 nucleotide of bGH cDNA using a program of nucleic acid folding and hybridization prediction, the constructs with values below -26.3 kcal/mole (toward minus direction) were not expressed. The constructs with the original sequence of bGH cDNA also did not show any expression, regardless of the free energy values. Thus, the disruption of the mRNA secondary structure may be a major factor regulating bGH expression in the translation initiation process. Accordingly, the first stem-loop among two secondary structures present in the 5'-end region of the bGH gene should be disrupted for the effective expression of bGH.

점적관개에서 관개율이 Sandy Loam토양의 습윤양상에 미치는 영향 (Effects of the irrigation Rate on Wetted Patterns in Sandy Loam Soil Under Trickle irrigation Condition)

  • 김철수;이근후
    • 한국농공학회지
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    • 제31권2호
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    • pp.104-115
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    • 1989
  • In an effort to clarify the wetted patterns of sandy loam soil under trickle irrigation conditions, the distance of wetted zone, infiltration capacity and soil wetted patterns, etc. were measured by gypsum block as soil moisture sensor located every 5 cm vertically and horizontaly in the soil bin under the such conditions as a). irrigation rates set to 2, 4, 6, 8 liters per hour b). total amount of water applied fixed to 14.62 liters per soil bin c) the hearing force of soil measured by plate penetrometer ranging from 1.04 to 1.22kg/cm$_2$ The results can be summarized as follows ; 1. The wetted distance in horizontal direction(H), the wetted distance in vertical direction(D), the horizontal infiltration capacity (iH) and the vertical infiltration capacity(in)could by explained as a function of time t. 2. The horizontal wetted distance (H) is explained by an exponetial function H= a$.$ t where b was found ranging from 021 to 026 under surface trickle irrigation, which was considered a lotlower than the classical value of 0.5 and these measurements were indifferent to the increasing irrigation rates. 3. As for the surface trickle irrigation where horizontal infiltration capacity(iH) is explained as iH = A $.$ t h, the coefficient A increases with respect to irrigation rates within the limits of 0.89~1.34. 4. In terms of surface trickle irrigation of the ratio of Dm Which is maximum vertical wetted distance to Hm, which is maximum horizontal wetted distance, found to be within range of 1.0 to 1.21. It was also noted that the value of Dm decreses when irrigation rates increases while the value of Hm changes the opposite direction. 5. The optimum location of sensors from emitter for surface trickle irrigation should he inside of hemisphere whose lateral radius is 28~30cm long and vertical radius is 10~12cm long. The distance between emitters should be within 60cm long. 6. In the study of vertical wetted distance( D) where D= a $.$ tb, the exponential coefficient b ranged from 0.61 to 0.75 in surface trickle irrigation, and from 0A9 to 0.68 for subsurface trickle irrigation. These measurements showed an increasing tendency to with respect to irrigation rates. 7. In case of vertical infiltration capacity( in), where iD= A $.$ t 1-h, the coefficient A for surface trickle irrigation found to be within range of 0.16 to 0.19 and did not show any relationships with varying degree of irrigation rates. However, the coefficient was varying from 0.09 to 0.22 and showed a tendency to increase vis-a-vis irrigation rates for subsurface trickle irrigation, in contrast. 8. In the observation of subsurface trickle irrigation, it was found that Dm/Hm ratio was within 1.52 to 1.91 and showed a decreasing tendency with respect to increasing rates of irrigation. 9. The location of sensors for subsurface trickle irrigation follows same pattern as above, with vertical distance from emitter being 10~17cm long and horizontal 22~25cm long. The location of emitter should be 50 cm. 10.The relationship between VS which is the volume of wetted soil and Q which is the total amount of water when soil is reached field capacity could be explained as VS= 2.914Q0.91and the irrigation rates showed no impacts on the above relationship.

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혼합 유기용제 포집시 습도가 활성탄관의 파과에 미치는 영향 (Effect of Relative Humidity on the Breakthrough of Charcoal Tubes during Mixed Organic Vapor Sampling)

  • 양혁승;김현욱
    • 한국산업보건학회지
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    • 제6권1호
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    • pp.125-137
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    • 1996
  • This study was designed to investigate effects of relative humidity on the breakthrough of charcoal tubes at a fixed vapor concentration and sampling time during mixed organic vapor sampling. A vapor generator was used to generate three different concentrations of mixed organic vapor and a stainless steel chamber was fabricated and utilized to maintain three different percentages of relative humidity while maintaining a constant temperature. The results were as follows; 1. At high relative humidity, breakthrough of mixed organic vapor occurred quickly at low vapor concentration than at high vapor concentration because of the reduced adsorption volume of charcoal tube due to humidity. 2. Breakthrough by competitive adsorption of vapors onto charcoal tube was observed at first from n-hexane having the lowest boiling point and highest vapor pressure among the three organic vapors investigated, followed by TCE. No breakthrough was observed from toluene under all experimental conditions. 3. For n-hexane, breakthrough was observed after 2 hours of sampling and breakthrough rates were increased as relative humidity increased. For TCE, breakthrough was found after 3 hours of sampling and breakthrough rates by sampling time were increased as vapor concentration increased. 4. The adsorbed amount of mixed organic vapor at breakthrough was shown to have statistically significant correlations with sampling time, relative humidity, and vapor concentration in descending order of correlation. Relative humidity and sampling time for n-hexane and sampling time and concentration for TCE were both statistically significantly correlated. 5. Relative humidity was found to affect the amount of breakthrough of mixed organic vapor and n-hexane. Among three percentages of relative humidity investigated, the amount of breakthrough at 85 % relative humidity was significantly larger than those of at lower percentages of relative humidity. No statistically significant difference was found between 25 % and 55 % relative humidity. 6. The results of multiple regression analysis between breakthrough and relative humidity, vapor concentrations showed that the coefficient of determination of mixed organic vapor was 0.263 and those of n-hexane and TCE were 0.275 and 0.189, respectively. 7. Flow rates of sampling pumps used were found to be affected by relative humidity present. At 25 %, 55 %, and 85 % relative humidity, the relative errors of sampling pump were 1.4 %, 13.4 %, and 18.6 %, respectively. In conclusion, the results of this study showed that high relative humidity could reduce the adsorption volume of charcoal tubes and subsequently increase breakthrough rates. Therefore, to prevent breakthrough when sampling mixed organic vapors, it is suggested that either sampling volume be reduced on the flow rate be lowered so as to minimize breakthrough of the most volatile organic vapor in the mixture. In addition, since the flow rates of a sampling pump can be adversely affected by high relative humidity, it is recommended to use a constant flow mode pump when sampling in the highly humid environment.

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코끝과 코기둥의 교정을 위한 변형된 코중격 연장 이식술 (Modified Septal Extension Graft for the Correction of Nasal Tip and Columella)

  • 김준식;최재훈;최태현;김남균;이경석;한기환;손대구
    • Archives of Plastic Surgery
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    • 제33권6호
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    • pp.681-687
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    • 2006
  • Purpose: The nose of most Koreans is characterized as a low nasal dorsum, retracted columella, and an acute columella-labial angle. For the surgical correction of the tip and columella, a modified septal extension graft, along with augmentation rhinoplasty has been developed. Methods: With this technique, a septal extension graft is fixed on the entire caudal margin of the septum (the cephalic-caudal axis) and at the same time, it is placed above the anterior nasal spine, in the membranous portion of the septum and at the base of the columella(the anterior-posterior axis). The present report describes the results obtained in 13 patients and offers an analysis of the results as judged by the columella-labial angle and 4 proportional indices(nose height index, nasal bridge length index, nasal tip projection index, columella length index), measured by photogrammetry. Results: The postoperative values obtained in these 5 categories increased significantly compared to the preoperative ones, thus confirming that the projection of tip was augmented, the nose was lengthened, and the columella was advanced caudally and lengthened. Moreover, these positive outcomes were still maintained during the follow-up period, and no side effects, such as saddle nose deformity, were reported. Conclusion: A modified septal extension graft can be considered as an effective method for the surgical correction of the nasal tip and columella in Koreans.

ZnO/SiO2 가지형 나노계층구조의 제작 및 광학적 특성 연구 (Fabrication and Optical Property of ZnO/SiO2 Branch Hierarchical Nanostructures)

  • 고영환;김명섭;유재수
    • 한국진공학회지
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    • 제20권5호
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    • pp.381-386
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    • 2011
  • 실리콘(silicon) 기판위에 전기화학증착법(electrochemical deposition)을 이용하여 성장된 ZnO (zinc oxide) 나노로드 표면에 $SiO_2$ (silicon dioxide)를 전자빔증발법(e-beam evaporation)을 이용하여 증착하였으며, 이는 자연적으로 경사입사(oblique angle) 증착이 이루어져 $SiO_2$ 나노로드가 자발 형성되어, ZnO/$SiO_2$ 가지형 나노계층구조형태가 제작될 수 있음을 확인하였다. 실험을 위해서 $SiO_2$ 증착률을 0.5 nm/s로 고정하고 $SiO_2$ 증착시간을 변화시켰으며, 각각 나노구조의 형태와 광학적 특성을 분석하였다. 실리콘 기판위에 전기화학증착법으로 성장된 ZnO 나노로드는 수직으로 정렬된 1차원의 나노구조의 기하학적 형태를 갖고 있어, 입사되는 빛의 파장이 300 nm에서 535 nm인 영역에서 10% 미만의 반사방지(antireflection) 특성을 보였으며, $SiO_2$ 증착시간이 100 s일 때의 ZnO/$SiO_2$ 가지형 나노계층구조에서는 점차적 변화를 갖는 유효 굴절률 분포로 인해 개선된 반사 방지 특성을 확인하였다. 이러한 반사방지 특성과 branch 계층형태의 나노구조형태는 광전소자 및 태양광 소자 응용에 있어서 유용한 소재로 사용될 수 있다.

서울시 PM2.5 공간 샘플링을 위한 Deployable Particulate Impact Sampler의 성능 검증 연구 (Reliability and Accuracy of the Deployable Particulate Impact Sampler for Application to Spatial PM2.5 Sampling in Seoul, Korea)

  • 오규림;허종배;이승묵;김선영
    • 한국대기환경학회지
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    • 제33권3호
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    • pp.277-288
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    • 2017
  • Previous studies of health effects of $PM_{2.5}$ performed spatial monitoring campaigns to assess spatial variability of $PM_{2.5}$ across people's residences. Highly reliable portable and cost-effective samplers will be useful for such campaigns. This study aimed to investigate applicability of the Deployable Particulate Impact Sampler(DPIS), one of the compact impact samplers, to spatial monitoring campaigns of $PM_{2.5}$ in Seoul, Korea. The investigation focused on the consistency of $PM_{2.5}$ concentrations measured by DPISs compared to those by the Low-volume Cyclone sampler (LCS). LCS has operated at a fixed site in the Seoul National University Yeongeon campus, Seoul, Korea since 2003 and provided qualified $PM_{2.5}$ data. $PM_{2.5}$ sampling of DPISs was carried out at the same site from November 17, 2015 through February 3, 2016. $PM_{2.5}$ concentrations were quantified by the gravimetric method. Using a duplicated DPIS, we confirmed the reliability of DPIS by computing relative precision and mean square error-based R squared value ($R^2$). Relative precision was one minus the difference of measurements between two samplers relative to the sum. For accuracy, we compared $PM_{2.5}$ concentrations from four DPISs (DPIS_Tg, DPIS_To, DPIS_Qg, and DPIS_Qo) to those of LCS. Four samplers included two types of collection filters(Teflon, T; quartz, Q) and impaction discs(glass fiber filter, g; pre-oiled porous plastic disc, o). We assessed accuracy using accuracy value which is one minus the difference between DPIS and LCS $PM_{2.5}$ relative to LCS $PM_{2.5}$ in addition to $R^2$. DPIS showed high reliability (average precision=97.28%, $R^2=0.98$). Accuracy was generally high for all DPISs (average accuracy=83.78~88.88%, $R^2=0.89{\sim}0.93$) except for DPIS_Qg (77.35~78.35%, 0.82~0.84). Our results of high accuracy of DPIS compared to LCS suggested that DPIS will help the assessment of people's individual exposure to $PM_{2.5}$ in extensive spatial monitoring campaigns.