• Title/Summary/Keyword: 초과변동

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Behavior of 550MPa 43mm Hooked Bars Embedded in Beam-Column Joints (보-기둥 접합부에 정착된 550 MPa 43 mm 갈고리철근의 거동)

  • Bae, Min-Seo;Chun, Sung-chul;Kim, Mun-Gil
    • Journal of the Korea Concrete Institute
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    • v.28 no.5
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    • pp.611-620
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    • 2016
  • In the construction of nuclear power plants, only 420 MPa reinforcing bars are allowed and, therefore, so many large-diameter bars are placed, which results in steel congestion. Consequently, re-bar works are difficult and the quality of RC structures may be deteriorated. To solve the steel congestion, 550 MPa bars are necessary. Among many items for verifying structural performance of reinforced concrete with 550 MPa bars, the 43 mm hooked bars are examined in this study. All specimens failed by side-face blowout and the side cover explosively spalled at maximum loads. The bar force was initially transferred to the concrete primarily by bond along a straight portion. At the one third of maximum load, the bond reached a peak capacity and began to decline, while the hook bearing component rose rapidly. At failure, most load was resisted by the hook bearing. For confined specimens with hoops, the average value of test-to-prediction ratios by KCI code is 1.45. The modification factor of confining reinforcement which was not allowed for larger than 35 mm bars can be applied to 43 mm hooked bars. For specimens with 70 MPa concrete, the average value of test-to-prediction ratios by KCI code is 1.0 which is less than the values of the other specimens. The effects of concrete compressive strength should be reduced. An equation to predict anchorage capacity of hooked bars was developed from regression analysis including the effects of compressive strength of concrete, embedment length, side cover thickness, and transverse reinforcement index.

A Study on the Design Load of Artificial Soil Ground (인공지반의 설계하중 산정에 관한 연구)

  • Youn, Seong-Cheol;Kim, Tae-Gyun
    • Journal of the Korean Institute of Landscape Architecture
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    • v.37 no.2
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    • pp.36-46
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    • 2009
  • The objective of this study is to analyze the effect of artificial soil ground on a structure. When the artificial soil ground is planted, the technical factors to be considered will be the load for buildings and the growth of plants. There are no current studies of the effect of artificial soil ground on a structure and this study will analyze the load effects of artificial soil ground, which mixes both pearlite and natural soil on structures. The load affecting the structures due to artificial soil ground will be maximized when the artificial soil ground becomes saturated, and which would occur when the rainfall intensity exceeds the infiltration capacity of the artificial soil ground. In order to determine whether the artificial soil ground has reached saturation or not, a 10 years frequency and 10 minutes rainfall intensity which is used for in urban drain design, is utilized. The hydraulic conductivity of artificial soil and mixed soil has been changed depending on the proportion of the mix, It has a range of fluctuation in the degree of hardening, in particular, but does not exceed the 10 minutes rainfall intensity over 10 years frequency in the most cases. Therefore, it would be efficient to apply the saturated unit weight of artificial soil ground as the design load of a structure.

The Removal of Styrene using Immobilized Microorganisms in Hydrogel Beads (미생물 고정화 복합고분자담체를 이용한 Styrene 제거)

  • Song, Ji-Hyeon;Ham, Eun-Yi
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.6
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    • pp.648-653
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    • 2006
  • As an alternative for the traditional materials packed in biofilters treating gaseous VOCs, a novel packing material has been developed and tested. In the packing material(named as Hydrogel Bead, HB), pollutant-degrading microorganisms were immobilized in hydrogel consisted of alginate, polyvinyl alcohol(PVA), and powdered activated carbon. A closed-bottle study showed that the HB rapidly removed gaseous styrene without the losses of adsorption and biodegradation capacity. Biofilter column experiments using the HBs also demonstrated that greater than 95% of removal efficiencies were found at an inlet styrene loading rate of $245g/m^3/hr$, which was higher biofilter performance than other elimination capacity reported earlier. Furthermore, when the inlet styrene concentration increased stepwise, the adsorption played an important role in overall styrene removals. The absorbed styrene was found to be biodegraded in the following low inlet loading condition. Consequently, the new HB material is able to successfully minimize the drawbacks of activated carbon(necessity of regeneration) and biological processes(low removal capacity at dynamic loading conditions), and maximize the overall performance of biofilter systems treating VOCs.

A Study on the Improvement of the Shift Pattern for Field Employees in Busan Container Terminal (부산항 컨테이너터미널 현장인력의 교대근무제 현황 및 개선방안에 관한 연구)

  • Nam, Do-Gi;Kim, Jong-Tae;Shin, Yong-John
    • Journal of Korea Port Economic Association
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    • v.26 no.1
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    • pp.144-171
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    • 2010
  • The purpose of this study is to propose the effective method to improve the competitive power in the Busan container terminal. To achieve this, we analyzed the present of the shift pattern in the container terminal, and identified the problems in the pattern. This study shows the issues of shift pattern for field employee in Busan container terminal and also improvement plan to solve them. We suggested two approaches as an effective approach; the flexible use of employees through overtime, use of workers pool among terminals, and outsourcing; the promotion of welfare by leisure, fitness, and community service.

Evaluation of Dynamic Stability of Precast Floating Slab Track with Vehicle-Track Interaction Analysis (차량-궤도 상호작용 해석을 통한 사전 제작형 플로팅 슬래브 궤도의 동적 안정성 검토)

  • Jang, Dongdoo;Kim, Jin-Ho;Kwon, Se-Gon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.3
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    • pp.562-568
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    • 2017
  • A precast floating slab track with a 5m slab panel and installed with isolators is proposed to solve the noise and vibration problem at existing elevated railway stations. Thus, the construction can be carried out rapidly without interrupting the train operation. However, dynamic instability problems may be caused by repeated discontinuities in track due to the short slab panel length and excessive rail displacement due to the inherent operation mechanism of a floating system in reducing the vibration. Furthermore, the difference of the supporting stiffness at the transition between the floating track and ballast track may raise problems. In this study, the assessment factors to evaluate the dynamic stability of the precast floating slab track are presented and assessed with the vehicle-track interaction analysis. Through the analysis, all values relevant to the stability at the floating track section are found to be acceptable, and the slab panels at the transition section are designed to satisfy the stability.

An Analysis of the down stream impact of dam Characteristics of Dam Using Indicators of Hydrologic Alterations (수문변화지표법을 이용한 댐 특성요소별 하류하천에 미치는 영향분석)

  • Kang, Ki-Ho;Park, Bong-Jin;Jung, Kwan-Sue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1948-1952
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    • 2008
  • 본 연구에서는 수문변화 지표법을 적용하여 광동댐 등 12개 용수 전용댐의 연 최소 최대유량 크기와 지속기간, 고 저맥파 빈도와 주기, 수문곡선 변화 비율과 빈도, 유량변화정도 등을 분석하여 댐이 하류하천에 미치는 영향을 수치로 제시 하였다. 광동댐 등 12개 댐의 월 유량변화를 산정한 결과, 갈수기에 해당하는 10월부터 다음해 6월까지 8개월간의 댐건설전 월평균 방류량은 $0.64\;m^3/sec{\sim}3.05\;m^3/sec$이었으나, 댐건설후 월평균 방류량은 $0.33\;m^3/sec{\sim}2.99\;m^3/sec$$-69.7%{\sim}167.8%$의 분포를 나타내고 있으며, 12월과 1월을 제외하면 댐건설 이후 오히려 $6.8%{\sim}69.7%$가 감소하였다. 우기철인 7월부터 9월까지 3개월간은 댐건설전 월평균 방류량이 $6.82\;m^3/sec{\sim}7.67\;m^3/sec$이었으나, 댐건설후 월평균 방류량은 $4.12\;m^3/sec{\sim}4.35\;m^3/sec$$51.0%{\sim}55.1%$가 감소하여 저수지 공용량을 이용한 저류효과가 다소 있었던 것으로 분석되었다. 연 최소 최대유량 크기와 지속기간 분석결과 1일, 3일, 7일, 30일, 90일 최소유량은 광동댐 등 10개 댐이 댐건설 전후 모두 $0.0\;m^3/sec$로 증감이 없었으며, 달방댐의 경우 30일 최소유량이 $0.026\;m^3/sec$에서 $0.000\;m^3/sec$로 99.11%가 감소하였다. 영천댐의 경우도 30일 최소유량이 $0.101\;m^3/sec$에서 $0.067\;m^3/sec$로 33.73%가 감소 하였으며, 90일 최소유량의 경우 달방댐은 $0.067\;m^3/sec$에서 $0.031\;m^3/sec$로 53.48%가 영천댐은 $0.219\;m^3/sec$에서 $0.150\;m^3/sec$로 31.29%가 감소하였다. 12개 용수 전용댐중 유지용수공급이 계획되어 있는 영천댐과 달방댐을 제외하고는 댐하류 방류량이 없이 건천화 되었다는 사실을 알 수 있다. 고 저맥파의 빈도와 주기 분석결과 댐건설 이후 수문곡선이 25% 이하로 떨어지는 저맥파는 $72.99%{\sim}98.52%$가 감소하였으며, 저맥파의 기간은 $-80.0%{\sim}4,423.3%$까지 분포하여 상당히 증가하였다. 수문곡선이 75%를 초과하는 고맥파의 발생 횟수는 댐건설 이후 $34.28%{\sim}91.67%$가 감소하였으며, 고맥파의 기간은 $-64.31%{\sim}135.62%$로 증가 또는 감소하였다.

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Evaluation of Stream Depletion from Groundwater Pumping in Deep Aquifer Using An Analytical Model (해석적 모형을 이용한 심부대수층 지하수 양수로 인한 하천수 감소량 분석)

  • Lee, Jeongwoo;Chung, Il-Moon;Kim, Nam Won
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.36 no.5
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    • pp.769-777
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    • 2016
  • The objective of this study was to evaluate the stream depletion from groundwater pumping in deep aquifer using the Ward and Lough's analytical solution (2011) which considers a two-layer leaky aquifer system. The calculated results for each pumping from the 110 wells beside streams showed a wide range of non-dimensional stream depletion, that is the streamflow depletion rate divided by the groundwater pumping rate, from lower than 0.1 to more than 0.9 on average for 5 years depending on the specific properties of well location. From the comparison with Hunt's solution (1999) of a single layer aquifer, the Ward and Lough's solution showed about 50% lower than the Hunt's solution due to the difference of hydraulic properties between the first and second layers as well as the lagged effect of vertical leakance. It was also found that the groundwater pumping has a minor effect on the stream depletion if the stream depletion factor (SDF) of the 1st layer is higher than about 1,000 or the SDF of the 2nd layer is higher than about 100, or the vertical leakance is smaller than $10^{-5}s^{-1}$. Furthermore, in the present study, the variations of the stream depletion were assessed according to the magnitude of unmeasured hydraulic properties such as transmissivity and storage coefficient of the 1st layer, vertical hydraulic conductivity of the 2nd layer, the streambed hydraulic conductance.

Operation analysis and application of modified slope-area method for the estimation of discharge in multi-function weir (다기능보의 방류량 산정 개선을 위한 운영 분석 및 수정 경사-면적법의 적용)

  • Oh, Ji-Hwan;Jang, Suk-Hwan;Oh, Kyoung-Doo
    • Journal of Korea Water Resources Association
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    • v.51 no.8
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    • pp.687-701
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    • 2018
  • A multi-function weir is representative control structure in the stream flow. Estimation of accurate flood discharge according to gate operations and prediction of floodwave travel times at the downstream are very important in terms of water use and river management. This study analyzed the limitation and improvement through the current gate operation data on the Young-san river. in addition, flood discharge was calculated considering lower and upper water level condition and gate operating using the modified slope-area method in the Seoung-chon weir. As a result, the current state was required improvement because exceed the theoretical range and rapidly fluctuation of discharge coefficient, can not be considered difference between the upper and lower water level and the estimation by the regression equation. As a result of applying the proposed method in this study, the above mentioned limitations can be compensated, compared with the current discharge data. Also it was analyzed as more physically valid because using the evaluated hydraulic equation and estimate the slope and friction loss of natural stream by iteration and to reduce the error. In conclusion, the process carried out serves as a representative flow control point of the water system through reliable discharge estimation, it is expected that it will be possible to properly river management.

Application of Algal Growth Potential Test (AGPT) on the Water Quality of the Chinyang Reservoir and the Nam River (진양호와 남강의 수질에 대한 Algal Growth Potential Test (AGPT) 적용)

  • Lee, Ok-Hee;Cho, Kyung-Je;Shin, Jae-Ki
    • Korean Journal of Ecology and Environment
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    • v.36 no.1 s.102
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    • pp.57-65
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    • 2003
  • The algal growth potential test (AGPT) bioassay were conducted to assess the water quality and fertility in the Chinyang Reservoir and the lower part of the Nam River from August 2000 to July 2001, The AGPT value of the Chinyang Reservoir ranged from 0 to 23.4 mg dw $1^{-1}$, while 79% of the algae cultivation have not grown. The AGPT value was in proportion to phosphorus concentration of the water, and it was less when chlorophyll-a was high. This value was higher in the middle and lower layers than in the upper layer, and in the inflow part where the water is shallower than in the lacustrine. The AGPT value has increased in the whole reservoir in August${\sim}$September when the water volume is high. In contrast, the AGPT value in the Nam River varied greatly compared to that of the reservoir, and ranged from 0 to 252.0 mg dw $1^{-1}$ and 65% of the algae cultivation have grown. The value was less than 10 mg dw $1^{-1}$ in the upstream, over the point where the treated wastewater discharged. It was 57 mg dw $1^{-1}$ on the average in the downstream, except in March and July when the discharged water influenced greatly, exceeding the hypertrophic condition. The result of AGPT shows the differences in the time and space on the reservoir and the streams. The AGPT value has increased in July${\sim}$September, and in December in the inflow part of the reservoir; in March and August${\sim}$December in the lower part; and in January, May, and November in the streams. AGPT is useful not only in defining the influence of the limiting nutrients on the algal growth, but also in evaluating the nutrients fertility in the inland water.

Analysis of Sheath Temperatures and Load Currents Dependent on Conductor Temperatures in Live 6kV CV Cables Operating at a Power Station (발전소에서 운전 중인 활선 6 kV CV 단심 cable의 도체온도에 따른 피복 표면온도 및 부하전류 특성 분석)

  • Um, Kee-Hong
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.17 no.3
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    • pp.189-195
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    • 2017
  • The only method used in the power stations in order to deliver generated electric power is 6 kV XLPE (or CV) single core cables. Among many kinds of accidents happening in the power stations, the outbreak of fire due to the deterioration of live cables causes enormous socioeconomic losses. From the installation of the cables, the management and diagnose should be thoroughly made. Even though it differs depending on the installations and usage conditions, the cross-sectional area of cables is in shortage. The excessive allowable temperature caused from the current causes the deterioration of cables. In order to prevent an unexpected breakdown of live cables, we have invented a device to monitor and diagnose the status of cables. We have installed our device in the Korea Western Power Co., Ltd.. In this paper, we present our research results in situ that we have obtained by measuring the temperature of sheath, changing with the surrounding circumstances, especially ambient temperatures. We also show our study results of characteristics for temperature of sheath surface and load current at the ambient temperatures of $40^{\circ}C-10^{\circ}C$.