• 제목/요약/키워드: Dam height

검색결과 154건 처리시간 0.025초

만 45세 이상 성인을 대상으로 한 안면형상진단의 담체(膽體)·방광체(膀胱體)와 체질량지수의 연관성 연구 (The Study of the Relation Between the Body Mass Index and the Dam-Bangkwang Body of Hyung-Sang Medicine in Patients over 45 Years of Age)

  • 장영우;윤영주;권정남
    • 대한한의학회지
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    • 제36권3호
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    • pp.65-72
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    • 2015
  • Objectives: Shape of face has relations with body shape and body weight in the Korean medicine. We investigated a correlation between a body mass index (BMI) and Dam-Bangkwang Body of Hyung-Sang medicine. Methods: The subjects were 244 adults aged from 45 to 64. A facial shape diagnostic equipment was used to classify Bangkwang Body or Dam Body. Statistical analyses were performed with the SPSS program to compare the correlation of BMI in each group. Results: We measured BMIs of the subjects who have Dam Body or Bangkwang Body which ranges were $22.53{\pm}2.83$ and $24.43{\pm}2.90$, respectively. The BMIs of Dam body subjects were significantly higher than those of Bangkwang Body subjects statistically (P<0.001). In order to verify our hypothesis, we also speculated BMIs of the obese with a BMI over 25. The BMIs of Bangkwang Body subjects were also higher than those of Dam Body subjects (P=0.001). With the width of the face of all subjects, we found that Bangkwang Body subjects whose the width of the face was relatively long had higher levels of BMI and obesity than Dam Body subjects whose height of the face was relatively long. Conclusions: The BMI of the Bangkwang Body is statistically higher than the Dam Body.

댐체 비탈면 녹화지역의 수목 생장 및 토양환경 특성에 관한 연구 (Studies on the Tree Growth and Soil Environmental Characteristics in the Planting Zone on the Back Slope of Dam)

  • 반권수
    • 한국환경복원기술학회지
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    • 제24권3호
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    • pp.85-98
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    • 2021
  • In this study, the characteristics of tree growth and soil environment were analyzed at 5 sites that had been planted on the back slope of dam for more than 15 years in Korea. First, as a result of investigating the growth of 15 trees planted on the back slope of the dam, the average height was 10.6m, diameter at roots was 27.3cm, and DBH was 22.9cm, showing good growth status of most of the trees. In particular, the growth levels of pine, hackberry, and oak were similar or better than those of general forests and artificial ground. As a result of excavating and investigating the roots of trees, horizontal roots grew well in the left and right directions of the back slope of the dam, and the growth of vertical roots was insufficient. Currently, the roots of trees do not directly affect dam safety, but they may continue to grow in the long term and interfere with dam management. Second, the physicochemical characteristics of the soil on the back slope of dam were generally above the intermediate level in terms of landscape design standards, and were similar to those of the domestic forest soil. Therefore, although it was judged to be suitable for plant growth, isolation of the site, soil acidification, and nutrient imbalance may affect tree growth and forest health in the long term. Through this study, it was possible to confirm the potential and applicability of planting area on the back slope of dam as an ecological base. Continuous monitoring is required for safety management and ecological value of dams in the future, and through this, it will be possible to secure the feasibility of planting trees on the slopes of new or existing dams and improving management.

공정시간 및 온도에 따른 웨이퍼레벨 패키지 접합 최적설계에 관한 연구 (Wafer Level Package Design Optimization Using FEM)

  • 고현준;임승용;김희태;김종형;김옥래
    • 한국생산제조학회지
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    • 제23권3호
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    • pp.230-236
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    • 2014
  • Wafer level package technology is added to the surface of wafer circuit packages to create a semiconductor technology that can minimize the size of the package. However, in conventional packaging, warpage and fracture are major concerns for semiconductor manufacturing. We optimized the wafer dam design using a finite element method according to the dam height and heat distribution thermal properties. The dam design influences the uniform deposition of the image sensor and prevents the filling material from overflowing. In this study, finite element analysis was employed to determine the key factors that may affect the reliability performance of the dam package. Three-dimensional finite element models were constructed using the simulation software ANSYS to perform the dam thermo-mechanical simulation and analysis.

Dam-reservoir-foundation interaction effects on the modal characteristic of concrete gravity dams

  • Shariatmadar, H.;Mirhaj, A.
    • Structural Engineering and Mechanics
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    • 제38권1호
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    • pp.65-79
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    • 2011
  • Concrete hydraulic structures such as: Dams, Intake Towers, Piers and dock are usually recognized as" Vital and Special Structures" that must have sufficient safety margin at critical conditions like when earthquake occurred as same as normal servicing time. Hence, to evaluate hydrodynamic pressures generated due to seismic forces and Fluid-Structure Interaction (FSI); introduction to fluid-structure domains and interaction between them are inevitable. For this purpose, first step is exact modeling of water-structure and their interaction conditions. In this paper, the basic equation involved the water-structure-foundation interaction and the effective factors are explained briefly for concrete hydraulic structure types. The finite element modeling of two concrete gravity dams with 5 m, 150 m height, reservoir water and foundation bed rock is idealized and then the effects of fluid domain and bed rock have been investigated on modal characteristic of dams. The analytical results obtained from numerical studies and modal analysis show that the accurate modeling of dam-reservoir-foundation and their interaction considerably affects the modal periods, mode shapes and modal hydrodynamic pressure distribution. The results show that the foundation bed rock modeling increases modal periods about 80%, where reservoir modeling changes modal shapes and increases the period of all modes up to 30%. Reservoir-dam-foundation interaction increases modal period from 30% to 100% for different cases.

Structural response of concrete gravity dams under blast loads

  • Sevim, Baris;Toy, Ahmet Tugrul
    • Advances in concrete construction
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    • 제9권5호
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    • pp.503-510
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    • 2020
  • Concrete dams are important structures due to retaining amount of water on their reservoir. So such kind of structures have to be designed against static and dynamic loads. Especially considering on critical importance against blasting threats and environmental safety, dams have to be examined according to the blast loads. This paper aims to investigate structural response of concrete gravity dams under blast loads. For the purpose Sarıyar Concrete Gravity Dam in Turkey is selected for numerical application with its 85 m of reservoir height (H), 255 m of reservoir length (3H), 72 m of bottom and 7 m of top widths. In the study, firstly 3D finite element model of the dam is constituted using ANSYS Workbench software considering dam-reservoir-foundation interaction and a hydrostatic analysis is performed without blast loads. Then, nearly 13 tons TNT explosive are considered 20 m away from downstream of the dam and this is modeled using ANSYS AUTODYN software. After that explicit analyses are performed through 40 milliseconds. Lastly peak pressures obtained from analyses are compared to empirical equations in the literature and UFC 3-340-02 standard which provide unified facilities criteria for structures to resist the effects of accidental explosions. Also analyses' results such as displacements, stresses and strains obtained from both hydrostatic and blasting analysis models are compared to each other. It is highlighted from the study that blasting analysis model has more effective than the only hydrostatic analysis model. So it is highlighted from the study that the design of dams should be included the blast loads.

EARTH DAM의 비탈면 기울기 결정에 관한 연구 (A Study on Side Slope Determination of Earth Dam)

  • 이원희;김시원
    • 한국농공학회지
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    • 제23권1호
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    • pp.86-102
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    • 1981
  • The soil test data of 28 earth dams, scheduled to be constructed in Kore3, were selected for this study. The safety factors of their side slops were computed using Fellenius' "slice Method" by computer. The results summarized in this study are as follows; 1. Dam sections can be easily determined by fig.10 without a time consuming trial and error calculations of assumed sections. 2. For the economical design of earth dam sections, it was found that more cohesive soil was suitable for lower dams(dam height less than 25m) and soils with a higher friction angle was better for higher dams 3. In the case that used soil materials have the same Internal friction angle, side slope increase was almost same. 4. The relationship between side slope and friction angle was found as log.S=a tan ø+b (Fig. 7) 5. The relationship between side slope and cohesion (c) was also found as log. S=a c+b (Fig. 8) 6. The change of safety factors due to the change of central core materials was very little (Table-2) 7. The decrease of safety factors according to the unit weight increase of embankment materials was negligible. 8. In general the relationship between the wet unit weight and the saturated unit weight was r sat = (rt)$^2$+0. 140. This study will contribute to the determination of economic and safe planning and designing of earth dams, embankments and cutting side slopes.

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지형공간정보체계와 경제성분석을 활용한 유역단위 홍수저감시설 규모결정 방안 연구 - 댐증고사업을 중심으로 - (Optimal Size Determination of Flood Mitigation Facilities in a Watershed Using Geo-Spatial Information System and Economic Analysis: Focused on Dam Height Raise Project)

  • 최천규;김길호;여규동;심명필;최윤석
    • 한국지리정보학회지
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    • 제16권4호
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    • pp.64-78
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    • 2013
  • 다양한 단위사업안이 고려되는 유역치수계획에서 경제적 효율성이 높고 최적규모를 나타내는 최적 투자대안의 결정은 사업의 시행여부를 판단하는 매우 중요한 절차이다. 치수계획 수립시 투자대안은 다수의 단위사업간 관계를 고려하여 1개 이상의 단위사업으로 조합된 의사결정안을 의미하며, 이때 홍수저감시설의 종류와 규모별로 구성되는 단위사업의 수가 많아 최적 투자대안을 결정하는 것은 어려운 것이 현실이다. 따라서 본 연구는 경제적인 측면에서 최적 투자대안을 결정하기 위하여 홍수저감시설 중 댐증고사업을 대상으로 경제성 분석을 통해 최적규모를 결정하는 방안을 제시하고자 한다. 영산강 유역의 4개 댐의 증고높이를 결정하기 위해 단위사업별 홍수저감량을 산정하는 '시나리오1'과 단위사업의 조합에 의해 구성된 투자대안별 홍수저감량을 산정하는 '시나리오2'를 비교하였다. 연구결과 '시나리오2'에 의해 최적 규모를 결정하는 것이 '시나리오1'을 이용하는 것에 비해 유역 전체의 상황이 종합적으로 고려된 경제적인 규모결정에 적합한 것으로 나타났다.

호내 부유물질 거동 분석을 통한 도암댐 운영 방안에 관한 연구 (Study on the Management of Doam Dam Operation by the Analysis of Suspended Solids Behavior in the lake)

  • 염보민;이혜원;문희일;윤동구;최정현
    • 한국물환경학회지
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    • 제35권6호
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    • pp.470-480
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    • 2019
  • The Doam lake watershed was designated as a non-point pollution management area in 2007 to improve water quality based on watershed management implementation. There have been studies of non-point source reduction with respect to the watershed management impacting the pollutant transport of the reservoir. However, a little attention has been focused on the impact of water quality improvement by the management of the dam operation or the guidelines on the dam operation. In this study, the impact of in-lake management practices combined with watershed management is analyzed, and the appropriate guidelines on the operation of the dam are suggested. The integrated modeling system by coupling with the watershed model (HSPF) and reservoir water quality model (CE-QUAL-W2) was applied for analyzing the impact of water quality management practices. A scenario implemented with sedimentation basin and suspended matter barrier showed decrease in SS concentration up to 4.6%. The SS concentration increased in the scenarios adjusting withdrawal location from EL.673 m to the upper direction(EL.683 m and EL.688 m). The water quality was comparably high when the scenario implemented all in-lake practices with water intake at EL.673 m. However, there was improvement in water quality when the height of the water intake was moved to EL.688 m during the summer by preventing sediments inflow after the rainfall. Therefore, to manage water quality of the Doam lake, it is essential to control the water quality by modulating the height of water intake through consistent turbidity monitoring during rainfall.

여유고만으로 추정된 국내 재해위험 저수지의 지진시 파괴확률 (Seismic Failure Probability of the Korean Disaster Risk Fill Dams Estimated by Considering Freeboard Only)

  • 하익수;이수권;임정열;정영훈
    • 대한토목학회논문집
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    • 제36권3호
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    • pp.451-461
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    • 2016
  • 본 연구의 목적은 소규모 필댐의 지진시 파괴확률을 산정하는 방법과 절차를 예시하고, 지반공학적 정보가 부족한 국내 재해위험 저수지의 지진시 파괴확률을 추정하는 것이다. 이를 위하여, 국내 재해위험 저수지로 지정된 저수지 중 지반공학적인 정보를 얻을 수 있는 7개 저수지에 대해 사건수 분석 기법을 적용하여 지진에 대한 파괴확률을 평가하였으며, 그 방법 및 절차를 예시하였다. 안전진단보고서를 확보한 84개 재해위험 저수지의 댐높이와 여유고와의 관계를 검토하였고, 미공병단 평가도구로 이용되는 파괴확률 산정식을 이러한 댐높이와 여유고와의 관계에 연관시켰다. 이러한 연관관계로부터, 지진시 파괴확률이 '0'이 되는 댐높이-여유고 임계곡선을 도출하였고, 이러한 임계곡선과 7개 저수지에 대해 산정한 지진시 파괴확률로부터 물성확보가 어려운 국내 재해위험 저수지의 개략적인 지진에 대한 파괴확률을 추정하였다.

수위변화에 따른 CFRD의 변형거동 사례분석 (A Case Study on Deformation Behaviors of CFRD with Water Level Change)

  • 윤중만;여규권;김홍연;이재연
    • 한국지반신소재학회논문집
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    • 제17권1호
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    • pp.21-31
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    • 2018
  • 본 연구에서는 시공이 완료된 CFRD에 대하여 담수시점부터 수위변화에 따른 댐 제체의 변형거동을 파악하기 위하여 현장 모니터링을 통하여 댐의 변위를 분석하고, 이를 수치해석 결과와 비교하였다. 담수에 따른 댐 정상 및 하류사면 제체의 거동을 계측한 결과, 축방향 수평변위, 상 하류측 수평변위, 침하가 대부분 초기 담수로부터 저수위가 댐 높이 절반 정도에 이를 때부터 발생하였다. 그 후 저수위 최고 상승시까지 변위가 진행된 후 수위에 관계없이 일정하게 수렴되는 양상을 보였다. CFRD에서 가장 중요한 역할을 하는 차수벽의 수평변위는 모든 지점에서 비슷한 양상을 보였다. 차수벽의 수평변위는 담수 전 외부온도의 영향으로 동절기에 증가하고 하절기에 감소하는 경향이 있었다. 또한, 담수 후 저수위가 댐 높이 절반 정도에 이를 때까지 변위가 증가한 후 수위상승과 함께 감소하는 경향을 보였다. 결과적으로 차수벽의 거동은 저수위 조건뿐 아니라 담수 후에도 계절적인 변화를 나타내며, 콘크리트 슬래브의 재료적인 특성 영향이 큰 것으로 판단된다. 수치해석 결과 댐 축조 후 최대 침하량과 발생 위치는 실제와 다소의 차이가 있었는데, 이러한 차이는 해석시 입력 매개변수의 추정, 축조일수 및 층 시공두께 등 다양한 설계와 시공의 차이에서 기인한 것으로 판단된다. 그리고 전반적인 기간에 대하여 침하는 댐 축조기간 동안 대부분 완료되었고 담수 초기에 약간의 침하가 발생한 후 수렴되었다.