• 제목/요약/키워드: 1D hydraulic model

검색결과 192건 처리시간 0.029초

전술유도무기용 소형 유압식 구동장치의 모델링 및 시뮬레이션 (Modeling and Simulation of A Small Hydraulic Actuation System for the Tactical Missile)

  • 이도윤;이호성;안성용;박연정
    • 한국항공우주학회지
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    • 제45권4호
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    • pp.349-357
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    • 2017
  • 최근 전술유도무기 분야는 대부분 전기식 구동장치를 채용하고 있으나 주어진 공간조건과 무게 제한 아래 상대적으로 부하가 크며 작동시간이 짧고 동시에 빠른 응답성이 요구될 경우에는 무게 및 공간 조건을 맞추기 위해서 반드시 유압식 구동장치를 적용해야 할 경우가 발생한다. 본 논문에서는 소형 유압식 구동장치 시스템을 대상으로 수학적 모델링과 시뮬레이션을 수행하였다. 수학적 모델은 고압용기, 압력조절밸브, 저유기, 유압작동기로 나누어 구성하였으며 실험 결과와 비교하여 모델의 타당성을 검증하고 고찰하였다. 본 연구를 통하여 소형 유압식 구동장치 시스템 설계에 유용한 수학적 모델을 수립하였다.

다차원수리모형을 이용한 연계모의 GUI시스템 개발 (Development of GUI System for Coupling of Multi-Dimensional Hydraulic Models)

  • 안정민;류시완
    • 한국습지학회지
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    • 제14권3호
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    • pp.353-363
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    • 2012
  • 4대강살리기사업을 통해 건설된 수리구조물의 효과적 운영과 홍수기 피해저감을 위해서는 적절한 의사결정 지원시스템의 구축이 필수적이다. 본 연구에서는 기존 일차원모의를 통한 하천관리의 한계를 보완하기 위하여 수문관측자료 또는 1차원모의 결과를 이용한 2, 3차원 모형 연계모의가 가능한 시스템을 개발하였다. 기존의 1차원 수리, 수문 모형으로 제공받던 선단위 지점단위 정보 뿐 아니라 추가적으로 공간 격자단위 정보를 제공받을 수 있는 다차원 모의를 수행함으로써 하천에서의 물리적 현상을 적절히 고려한 공간적 수리특성을 반영한 하천관리가 가능할 것이다. 급격한 지형변화 및 수리구조물에 의한 홍수에 대비하고 각 격자별 유량의 전달에 의한 홍수파의 전파양상에 대한 공간단위 정보를 토대로 합리적인 하천관리를 위한 기초자료로 활용될 수 있을 것으로 판단된다.

3D 프린팅 필라멘트 재료에 따른 유압액츄에이터 커브의 치수 특성 (Dimensional Characteristics of Hydraulic Actuator Curve based on 3D Printing Filament Materials)

  • 정명휘;공정리;김해지
    • 한국기계가공학회지
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    • 제20권1호
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    • pp.74-79
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    • 2021
  • In this paper, the 3D shape of a hydraulic actuator cover was 3D printed by applying two materials, namely PLA and ABS. Subsequently, the printed shape was scanned to analyze the material properties, dimensional change characteristics, dimensions, and scan shape as a real model. To compare and analyze material-specific 3D printing dimensions, a non-contact mobile laser scanner was used to scan a portion of the printed hydraulic actuator cover and the final alignment shape of the 3D printed part was studied on the basis of the design model.

지하수 모델을 이용한 제주도 지하수 유동특성 및 수리전도도 분석 (Analysis of Groundwater Flow Characterstics and Hydraulic Conductivity in Jeju Island Using Groundwater Model)

  • 김민철;양성기
    • 한국환경과학회지
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    • 제28권12호
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    • pp.1157-1169
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    • 2019
  • We used numerical models to reliably analyze the groundwater flow and hydraulic conductivity on Jeju Island. To increase reliability, improvements were made to model application factors such as hydraulic watershed classification, groundwater recharge calculation by precipitation, hydraulic conduction calculation using the pilot point method, and expansion of the observed groundwater level. Analysis of groundwater flow showed that the model-calculated water level was similar to the observed value. However, the Seogwi and West Jeju watersheds showed large differences in groundwater level. These areas need to be analyzed by segmenting the distribution of the hydraulic conductivity. Analyzing the groundwater flow in a sub watershed showed that groundwater flow was similar to values from equipotential lines; therefore, the reliability of the analysis results could be improved. Estimation of hydraulic conductivity distribution according to the results of the groundwater flow simulation for all areas of Jeju Island showed hydraulic conductivity > 100 m/d in the coastal area and 1 - 45 m/d in the upstream area. Notably, hydraulic conductivity was 500 m/d or above in the lowlands of the eastern area, and it was relatively high in some northern and southern areas. Such characteristics were found to be related to distribution of the equipotential lines and type of groundwater occurrence.

Flood Risk for Power Plant using the Hydraulic Model and Adaptation Strategy

  • Nguyen, Thanh Tuu;Kim, Seungdo;Van, Pham Dang Tri;Lim, Jeejae;Yoo, Beomsik;Kim, Hyeonkyeong
    • 한국기후변화학회지
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    • 제8권4호
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    • pp.287-295
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    • 2017
  • This paper provides a mathematical approach for estimating flood risks due to the effects of climate change by developing a one dimensional (1D) hydraulic model for the mountainous river reaches located close to the Yeongwol thermal power plant. Input data for the model, including topographical data and river discharges measured every 10 minutes from July $1^{st}$ to September $30^{th}$, 2013, were imported to a 1D hydraulic model. Climate change scenarios were estimated by referencing the climate change adaptation strategies of the government and historical information about the extreme flood event in 2006. The down stream boundary was determined as the friction slope, which is 0.001. The roughness coefficient of the main channels was determined to be 0.036. The results show the effectiveness of the riverbed widening strategy through the six flooding scenarios to reduce flood depth and flow velocity that impact on the power plant. In addition, the impact of upper Namhan River flow is more significant than Dong River.

식생강화를 위한 다공성 소일 블록의 치수안정성 해석 (Analysis on Dimensional Stability of Porosity Soil Block for Vegetation Reinforcement)

  • 박상우;안태진;안상호;권순현
    • 한국습지학회지
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    • 제15권1호
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    • pp.91-103
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    • 2013
  • 본 연구에서는 자연친화적인 호안 블록의 현장 적용시 충분한 기술적인 검증과 구조적, 수리학적 안정성 검토 등이 제대로 이루어지지 않고 있는 문제점을 개선하기 위해 생태적 기능을 확보할 수 있는 식생강화를 위한 다공성 소일 블록에 대하여 수리적 거동 변화에 따른 수리학적 안정성을 검토하였다. 대상구간을 선정하여 수치해석 및 수리모형실험을 실시하였으며 수치해석을 위해 1차원 수치해석모형인 HEC-RAS와 2차원 수치해석모형인 RMA-2를 이용하여 1, 2차원 수치해석을 실시하였고, Froude 상사법칙을 적용하여 식생 유, 무에 따른 축척된 수리모형실험을 실시하였다. 수리모형실험의 경우 실험결과에 대한 타당성을 위해 축척된 수리모형실험의 유속 및 소류력 결과를 원형으로 환산하여 1, 2차원 수치해석결과와 동일한 조건하에 비교 검토하였고 그 결과 비교적 일치된 결과가 나타난 것으로 확인되었으며 이에 따른 원형으로 환산된 소류력 결과를 기존 연구결과인 호안의 허용소류력과 비교함으로써 블록의 수리학적 안정성을 제시하였다.

2·3차원 모형을 이용한 자연하도 만곡부에서의 흐름특성 연구 (Study on the Flow Characteristics at Natural Curved Channel by 2D and 3D Models)

  • 안승섭;정도준;이상일;김위석
    • 한국환경과학회지
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    • 제21권4호
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    • pp.471-478
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    • 2012
  • In this study, the flow characteristic analysis at the curved-channel of the actual channel section is compared and reviewed using the 2D RMA-2 model and the 3D FLOW-3D model. the curve section with curve rate 1.044 in the research section is analyzed applying the frequency of he project flood of 100 years. According to the result, the issue for the application of the FLOW-3D Model's three-dimensional numeric analysis result to the actual river is found to be reviewed with caution. Also, application of the 3D model to the wide basin's flood characteristic is determined to be somewhat risky. But, the applicability to the hydraulic property analysis of a partial channel section and the impact analysis and forecast of hydraulic structure is presumed to be high. In addition, if the parameters to reflect the vegetation of basin and the actual channel, more accurate topological measurement data and the topological data with high closeness to the current status are provided, the result with higher reliability is considered to be drawn.

2.5 kW 급 프로펠러형 마이크로 수차 개발 (Development of 2.5 kW Class Propeller Type Micro Hydraulic Turbine)

  • 마상범;김성;최영석;차동안;김진혁
    • 한국수소및신에너지학회논문집
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    • 제31권3호
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    • pp.314-321
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    • 2020
  • In this work, a preliminary design of an inlet guide vane and runner for developing a 2.5 kW hydraulic turbine was conducted by using computational fluid dynamic analysis. Three-dimensional Reynolds-averaged Navier-Stokes equations with shear stress transport turbulence model were used to analyze the fluid flow in the hydraulic turbine. The hexahedral grid system was used to construct computational domain, and the grid dependency test was performed to obtain the optimal grid system. Velocity triangle diagram considering the flow angles of the inlet guide vane and runner was analyzed to obtain a basic geometry of the inlet guide vane and runner. Through modification of the preliminary design, the hydraulic performances of the turbine have improved under overall drop conditions. Especially, the efficiency and power of the turbine increased by 0.95% and 1.45%, respectively, compared to those of the reference model.

부등류해석을 이용한 QUAL2E 모형의 개선 (Improvement of QUAL2E Model using Nonuniform Flow Analysis)

  • 김상호;최현상
    • 한국물환경학회지
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    • 제22권6호
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    • pp.1144-1150
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    • 2006
  • Recently, as water pollution accidents in rivers have increased, there is an increased interest in water quality forecast with accurate simulation. QUAL2E model, widely used for water quality analysis, uses the same hydraulic characteristics, such as depth and velocity, in a reach. The flow of the river is changed by various hydraulic constructions or by topography in a real river channel. In this study, a hydraulic connection module is developed to consider flow variations of river channels in QUAL2E model. The module uses the simulations results of non-uniform flow of a 1-D hydraulic model such as DWOPER or HEC-RAS. The improved QUAL2E model with this module was applied to a downstream section of Paldang Dam on the Han River. The results show the variation of water quality very well in a reach where flowing vary abruptly, like the Jamsil submerged weir.

영산호의 부영양화 평가를 위한 인부하모델의 검토 (A Study on Phosphorus Loading model for Eutrophication Response in the Yongsan Lake)

  • 류일광;이치영
    • 한국환경보건학회지
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    • 제26권4호
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    • pp.97-104
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    • 2000
  • The purpose of this is made an examination of phosphorus loading model for eutrophication response in the Yongsan lake. For the model, we measured the total amount of nutrients derived from the Yongsan river watershed, inflow rate to the Yongsan lake, water quality, and water budget from January to December in 1999. The total amount of precipitation in the Yongsan river watershed was 4,951.7$\times$10$^{6}$ ㎥/y and inflow amount was 2,569.7$\times$10$^{6}$ ㎥/y, therefore the outflow rate of the Yongsan river watershed was 51.9%. The develop loading of total nitrogen was 86,928.1kg/d and that of total phosphorus was 22,007.6kg/d at the Yongsan river watershed, But, as the inflow loading of total nitrogen was 33,962kg/d and the inflow loading of total phosphorus was 2,218kg/d to the Yongsan lake. so each infolw rate was 39.0% and 10.1%. The hydraulic residence time was 34days, total phosphorus loading [L(P)] on the surface area was 23.398g/㎥/y, the hydraulic load( $Q_{s}$) of inflow water was 74.269m/y, the reserve rate of phosphorus in the lake was 0.359, and the settinh velocity of phosphorus was 0.114m/d at the Yongsan lake. Mathematical model of phosphorus loading to estimate the responses of eutrophication at the Yongsan lake is [ $P_{j}$] = 0.838 [L(P)/Q.(1+√ $T_{w}$)$^{-1}$ ] . ] . .

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