• Title/Summary/Keyword: velocity estimation

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Simplified Collision Analysis Method for Submerged Floating Railway Using the Theory of a Beam with an Elastic Foundation (탄성지지 보이론을 이용한 해중철도 간이 충돌해석법)

  • Seo, Sung-Il;Kim, Jin Sung
    • Journal of the Korean Society for Railway
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    • v.16 no.3
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    • pp.202-206
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    • 2013
  • A submerged floating railway is an innovative tunnel infrastructure passing through the deep sea independent of wave and wind so that high speed trains can run on it. It doesn't depend on water depth and is cost effective due to modular construction on land. The construction period can be reduced drastically. This paper introduces the concept design of a submerged floating railway, and for securing safety, proposes a method to analyze the structural behavior of the body in case of collision with a submarine. The theory of a beam with an elastic foundation was used to calculate the equivalent mass of the body so that the perfect elastic collision could be applied to calculate the collision velocity. The maximum deformation and bending moment was analyzed based on energy conservation. To verify the results, a collision analysis using a finite element analysis code was made. Comparing the results confirmed that this simplified collision analysis method gives enough accurate deformation and bending moment to be used for actual estimation in the initial design stage.

Development and CFD Analysis of a New Type Pre-Swirl Duct for 176k Bulk Carrier (176k Bulk Carrier에 대한 신개념 타입의 Pre-Swirl Duct의 개발 및 CFD 해석)

  • Yoo, Gwang Yeol;Kim, Moon Chan;Shin, Yong Jin;Shin, Irok;Kim, Hyun Woong
    • Journal of the Society of Naval Architects of Korea
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    • v.56 no.4
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    • pp.373-382
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    • 2019
  • This paper shows numerical results for the estimation of the propulsor efficiency of Pre-Swirl Duct for 176k bulk carrier as well as its design method. Reynolds averaged Navier-Stokes equations have been solved and the k-epsilon model applied for the turbulent closure. The propeller rotating motion is determined using a sliding mesh technique. The design process is divided into each part of Pre-Swirl Duct, duct and Pre-Swirl Stator. The design of duct was performed first because it is located further upstream than Pre-Swirl Stator. The distribution of velocity through the duct was analyzed and applied for the design of Pre-Swirl Stator. The design variables of duct include duct angle, diameter, and chord length. Diameter, chord length, equivalent angle are considered when designing the Pre-Swirl Stator. Furthermore, a variable pitch angle stator is applied for the final model of Pre-Swirl Duct. The largest reduction rate of the delivered power in model scale is 7.6%. Streamlines, axial and tangential velocities under the condition that the Pre-Swirl Duct is installed were reviewed to verify its performance.

Estimation of Vertical Load Capacity of PCFT Hybrid Composite Piles Using Dynamic Load Tests (동재하시험을 통한 긴장력이 도입된 콘크리트 충전 강관말뚝을 사용한 복합말뚝의 연직지지력 평가)

  • Park, Nowon;Paik, Kyuho
    • Journal of the Korean GEO-environmental Society
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    • v.20 no.3
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    • pp.31-38
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    • 2019
  • To determine the optimum dynamic load test analysis for PCFT (Prestressed Concrete Filled steel Tube) hybrid composite piles that PCFT piles are connected to the top of PHC piles, the dynamic load tests and CAPWAP analyses were performed on two hybrid composite piles with steel pipe and PCFT piles as upper piles. The results of the dynamic load tests and CAPWAP analyses showed that the particle velocity measured in PCFT hybrid composite piles was equal to the wave speed of PHC piles when the strain gauges and accelerometers are attached to the surface of inner composite PHC pile after removing the steel pipe in the upper PCFT pile. In addition, when assuming that the material of that upper PCFT pile was the same as that of the lower PHC pile and the cross-sectional area of the steel pipe in upper PCFT pile was converted to that for concrete through the pile model (PM) in CAPWAP analysis, the accuracy of the CAPWAP analysis result for PCFT hybrid composite piles was very high.

Airspeed Estimation Through Integration of ADS-B, Wind, and Topology Data (ADS-B, 기상, 지형 데이터의 통합을 통한 대기속도 추정)

  • Kim, Hyo-Jung;Park, Bae-Seon;Ryoo, Chang-Kyung;Lee, Hak-Tae
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.50 no.1
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    • pp.67-74
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    • 2022
  • To analyze the motion of aircraft through computing the dynamics equations, true airspeed is essential for obtaining aerodynamic loads. Although the airspeed is measured by on-board instruments such as pitot tubes, measurement data are difficult to obtain for commercial flights because they include sensitive data about the airline operations. One of the commonly available trajectory data, Automatic Dependent Surveillance-Broadcast data, provide aircraft's speed in the form of ground speed. The ground speed is a vector sum of the local wind velocity and the true airspeed. This paper present a method to estimate true airspeed by combining the trajectory, meteorological, and topology data available to the public. To integrate each data, we first matched the coordinate system and then unified the altitude reference to the mean sea level. We calculated the wind vector for all trajectory points by interpolating from the lower resolution grid of the meteorological data. Finally, we calculate the true airspeed from the ground speed and the wind vector. These processes were applied to several sample trajectories with corresponding meteorological data and the topology data, and the estimated true airspeeds are presented.

Retrieval and Accuracy Evaluation of Horizontal Winds from Doppler Lidars During ICE-POP 2018 (도플러 라이다를 이용한 ICE-POP 2018 기간 수평바람 연직 프로파일 산출 및 정확도 평가)

  • Kim, Kwonil;Lyu, Geunsu;Baek, SeungWoo;Shin, Kyuhee;Lee, GyuWon
    • Atmosphere
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    • v.32 no.2
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    • pp.163-178
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    • 2022
  • This study aims to evaluate the accuracy of retrieved horizontal winds with different quality control methods from three Doppler lidars deployed over the complex terrain during the PyeongChang 2018 Olympic and Paralympic games. To retrieve the accurate wind profile, this study also proposes two quality control methods to distinguish between meteorological signals and noises in the Doppler velocity field, which can be broadly applied to different Doppler lidars. We evaluated the accuracy of retrieved winds with the wind measurements from the nearby or collocated rawinsondes. The retrieved wind speed and direction show a good agreement with rawinsonde with a correlation coefficient larger than 0.9. This study minimized the sampling error in the wind evaluation and estimation, and found that the accuracy of retrieved winds can reach ~0.6 m s-1 and 3° in the quasi-homogeneous wind condition. We expect that the retrieved horizontal winds can be used in the high-resolution analysis of the horizontal winds and provide an accurate wind profile for model evaluation or data assimilation purposes.

Experimental and numerical investigation of closure time during artificial ground freezing with vertical flow

  • Jin, Hyunwoo;Go, Gyu-Hyun;Ryu, Byung Hyun;Lee, Jangguen
    • Geomechanics and Engineering
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    • v.27 no.5
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    • pp.433-445
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    • 2021
  • Artificial ground freezing (AGF) is a commonly used geotechnical support technique that can be applied in any soil type and has low environmental impact. Experimental and numerical investigations have been conducted to optimize AGF for application in diverse scenarios. Precise simulation of groundwater flow is crucial to improving the reliability these investigations' results. Previous experimental research has mostly considered horizontal seepage flow, which does not allow accurate calculation of the groundwater flow velocity due to spatial variation of the piezometric head. This study adopted vertical seepage flow-which can maintain a constant cross-sectional area-to eliminate the limitations of using horizontal seepage flow. The closure time is a measure of the time taken for an impermeable layer to begin to form, this being the time for a frozen soil-ice wall to start forming adjacent to the freeze pipes; this is of great importance to applied AGF. This study reports verification of the reliability of our experimental apparatus and measurement system using only water, because temperature data could be measured while freezing was observed visually. Subsequent experimental AFG tests with saturated sandy soil were also performed. From the experimental results, a method of estimating closure time is proposed using the inflection point in the thermal conductivity difference between pore water and pore ice. It is expected that this estimation method will be highly applicable in the field. A further parametric study assessed factors influencing the closure time using a two-dimensional coupled thermo-hydraulic numerical analysis model that can simulate the AGF of saturated sandy soil considering groundwater flow. It shows that the closure time is affected by factors such as hydraulic gradient, unfrozen permeability, particle thermal conductivity, and freezing temperature. Among these factors, changes in the unfrozen permeability and particle thermal conductivity have less effect on the formation of frozen soil-ice walls when the freezing temperature is sufficiently low.

Estimation of Mean velocity conversion coefficient for measuring Microwave water surface current meter using Drone (드론을 이용한 전자파표면유속계 측정의 평균유속환산계수 산정)

  • Lee, Tae Hee;Kang, Jong Wan;Lee, Ki Sung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.16-16
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    • 2021
  • 전자파표면유속계(Microwave Water Surface Current Meter)를 이용한 홍수기 유량측정은 교량과 같은 구조물을 이용하여 안전 및 측정위치의 흐름조건 등의 이유로 측정의 한계가 발생한다. 이런 문제점을 개선하기 위해 전자파표면유속계를 드론(Drone)과 결합하여 하천에서의 유량측정에 이용하였다. 전자파표면유속계는 비접촉식 유속측정 장비로 하천의 표면유속을 측정하고 유량산정을 위해 환산계수 0.85를 적용하여 평균유속을 산정하고 있다. 환산계수 0.85는 하천의 각 횡측선 수심-유속분포를 일반적인 분포로 가정하고 표면유속에 0.85를 곱하여 평균유속을 산정한다(Rantz, 1982). 그러나 하천의 측정위치 및 흐름특성에 따라 유속분포가 변화하기 때문에 국외 많은 연구에서 환산계수의 범위를 0.72에서 1.72까지 제시한 바 있다(Johnson and Cowen, 2017). 따라서 환산계수 0.85의 일률적인 적용은 부정확한 유량산정을 초래할 수 있어 측정위치에 적절한 환산계수 산정이 필요하다. 본 연구에서는 2020년 금강의 지류인 봉황천에 위치한 금산군(황풍교) 관측소에서 드론과 전자파표면유속계를 이용해 측정한 표면유속과 ADCP를 이용하여 동시 측정한 평균유속의 비교를 통해 환산계수를 산정하여 평균유속 산정의 정확도를 높이고자 하였다. 전자파표면유속계로 측정한 6개 성과 중 ADCP와 동시 측정한 4개의 성과를 분석하여 환산계수를 산정하였다. 측정성과별 측선수는 16~17개로 홍수터로 월류하여 비정상흐름이 발생한 측선은 제외하고 측선별 환산계수는 0.66에서 1.09의 범위로 나타났고, 성과별 환산계수의 평균치는 0.90에서 0.93 범위로 산정되었다. 환산계수가 일반적인 수치보다 높게 산정된 것은 측정위치 하류 약 600m에 위치한 콘크리트 고정보의 영향이 홍수 시 흐름의 수위-유속분포에 영향을 미쳐 높게 산정된 것으로 판단된다. 따라서 유량산정에 있어 환산계수는 4개 성과에서 산정된 환산계수의 평균치인 0.92를 적용하여 산정하였다.

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Applicability of index method for stream suspended sediments estimation (하천 부유사량 산정을 위한 지표 부유사 측정법 적용성 검토)

  • Lee, Sin Jae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.231-231
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    • 2021
  • 하천 및 하천시설물 관리 등을 위해서는 유역에서 하천으로 유출되는 유사량 파악이 필요하다. 현재 유사량측정은 하천에서 여러 개(3~7개)의 측선에서 부유사채취기를 이용하여 측정하여 농도를 분석하여 유사량을 산정하게 된다. 본 연구는 유량측정 기법 중 최근 자동유량측정기술에 활용하는 지표유속법(index velocity method)을 부유사량 측정에 적용하고 검토하였다. 지표법(index method) 적용 방법은 여러 개의 측선에서 측정된 부유사농도와 평균농도와의 관계를 분석하고, 평균농도와 가장 상관성이 높은 측선의 부유사농도를 지표 부유사농도로 설정하여 지표부유사 농도와 평균부유사농도와의 관계식을 개발하여 부유사량 산정에 활용하였다. 대상하천은 주천강에 위치한 영월군(주천교) 지점을 선정하였으며, 2020년 주요 홍수사상에서 27개의 부유사 측정성과를 확보하였다. 부유사 측정을 위하여 5개의 측선에서 부유사를 측정하였고, 부유사농도 규모는 2.20~373.20mg/ℓ이다. 평균부유사농도와 가장 상관성(상관계수 0.9988)이 높은 4번 측선의 부유사농도를 지표부유사농도로 설정하고 평균부유사농도와 지표부유사농도의 관계식을 개발하였다. 그 결과 지표관계식의 결정계수(R2)는 0.9977로 매우 높게 산정되었으며, 실측 평균부유사농도와 계산 평균부유사농도의 편차율은 평균 26.71%(0.60~103.26%)로 분석되었다. 편차율은 상대적으로 부유사농도가 낮은 성과에서 높았으며, 부유사농도가 10mg/ℓ 이상에서는 편차율이 14.81%로 1/2 가까이 줄어들었다. 즉 유량이 적은 경우 흐름 및 부유사가 하천의 일부구간으로 불규칙하게 편중되거나 흐름 전체적으로 확산되지 않아 편차율이 높게 산정되는 것으로 판단된다. 이러한 결과를 볼 때 홍수시 부유사농도의 지표법을 이용한 부유사량 산정이 가능 할 것으로 판단된다.

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Parametric Study on the Buffeting Response for a Cable-Stayed Bridge (사장교의 버페팅 응답 변수 연구)

  • Kim, Ho-Kyung;Choi, Sung Won;Kim, Young Ho
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.2A
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    • pp.371-382
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    • 2006
  • A buffeting analysis is utilized for the estimation of aerodynamic vulnerability of a cable-stayed bridge due to upcoming wind turbulences. The buffeting analysis requires several input parameters such as structural parameters, aerodynamic parameters, and aero-elastic parameters. This study is motivated to estimate the sensitivity of these parameters on buffeting responses. The Seohae bridge is selected as an example bridge. The investigated parameters consist of the inclination of lift and drag coefficient of stiffening girder section, exponential decay factors of span-wise distributed wind turbulences, roughness length, spectra of wind velocity fluctuation, and structural damping. The buffeting response showed high dependency on the input parameters. As conclusions, the importance of parameter selection is emphasized. A further study is also proposed for more general conclusions.

Seismic Design of Vertical Shaft using Response Displacement Method (응답변위법을 적용한 수직구의 내진설계)

  • Kim, Yong-Min;Jeong, Sang-Seom;Lee, Yong-Hee;Jang, Jung-Bum
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.30 no.6C
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    • pp.241-253
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    • 2010
  • For seismic design of a vertical shaft, three-dimensional Finite Element (FE) analyses were performed to evaluate the accurate response of a vertical shaft and to apply a Response Displacement Method (RDM). Special attention is given to the evaluation of seismic base and response displacement of surrounding soil, estimation of load and loading method. Based on the result, it was found that shear wave velocity of seismic base greater than 1500m/s was appropriate for the seismic design. It was also found that double cosine method which evaluates a response displacement of surrounding soil was most appropriate to consider the characteristic of multi-layered soil. Finally, shape effect of the structure was considered to clarify the dynamic behavior of vertical shaft and it would be more economical vertical shaft design when a vertical shaft was analyzed by using RDM.