• Title/Summary/Keyword: 경사효과

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A study on the fire smoke diffusion delay strategy in a great depth underground double deck tunnel junction (대심도 복층터널 교차로 화재연기 확산지연 방안 연구)

  • Shin, Tae-Gyun;Moon, Jung-Joo;Yang, Yong-Won;Lee, Yun-Taek;Han, Jae-Hee
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.21 no.1
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    • pp.115-126
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    • 2019
  • Recently, in order to solve the traffic congestion in urban areas and to improve the peripheral environment, research on the design and construction technology development of great depth underground double-deck tunnel is under way by using the underground space in the urban area. The network type double-deck tunnel is in the form of an intersection with a small cross section and a steep slope as per construction at the base of a flatland, so that the fire smoke spreads rapidly in case of fire, which is expected to cause damage of human life. Therefore, this study is analyzed the delay effect of fire smoke diffusion according to the installation and non - installation of delay system for fire smoke diffusion at the intersection. Fire fumes were delayed up to 270 seconds when the delay system for fire smoke diffusion was installed at the intersection and it is analyzed that the greater the operating area of the delay system for fire smoke diffusion, the more preventable the damage of human life of the intersection.

A Study on the Comparative Analysis of Images and Doses According to Tube Orientation During Anterior-Posterior Axial Projection Examination of the Skull (머리뼈 전-후 축 방향검사 시 Tube 방향설정에 따른 표면선량과 영상분석에 관한 연구)

  • Jeong, Sung-Hun;Yoo, Je-hyeon;Lim, Cheong-Hwan
    • Journal of radiological science and technology
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    • v.44 no.4
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    • pp.301-306
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    • 2021
  • The skull has peripheral organs such as the crystalline lens and thyroid gland, which are highly radiosensitive, but the examination is performed without considering the uneven dose distribution due to the heel effect at the time of the current Skull Town's examination. However, no studies have been conducted on the exposure dose of surrounding organ tissues due to the difference in image density due to the heel effect and the non-uniformity of the dose. Using the cathode (-) and anode (+) set on the Tube to measure the scattered radiation along the Tube direction as a guide, change 30° and 37° in the cathode direction and 30° and 37° in the anode direction. It was given and investigated 5 times to obtain scattered radiation. image measurements were SNR, PSNR, RMSE, and MAE. Measurement results Measurement results of surrounding organ doses when the Tube direction was 30° and 37° The dose was low when the direction was cathodic in all organs (p<0.000). Both cathodes were higher in the image measurements(p<0.04). Continuous research may be needed for diagnostically valuable imaging and minimization of patient exposure dose.

Computational Model for Hydrodynamic Pressure on Radial Gates during Earthquakes (레디얼 게이트에 작용하는 지진 동수압 계산 모형)

  • Phan, Hoang Nam;Lee, Jeeho
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.32 no.5
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    • pp.323-331
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    • 2019
  • In this study, a computational model approach for the modeling of hydrodynamic pressures acting on radial gates during strong earthquakes is proposed. The use of the dynamic layering method with the Arbitrary Lagrangian Eulerian (ALE) algorithm and the SIMPLE method for simulating free reservoir surface flow in addition to moving boundary interfaces between the fluid domain and a structure due to earthquake excitation are suggested. The verification and validation of the proposed approach are realized by comparisons performed using the renowned formulation derived by the experimental results for vertical and inclined dam surfaces subjected to earthquake excitation. A parameter study for the truncated lengths of the two-dimensional fluid domain demonstrates that twice the water level leads to efficient and converged computational results. Finally, numerical simulations for large radial gates with different curvatures subjected to two strong earthquakes are successfully performed using the suggested computational model.

Development of MEMS Sensor-based High Resolution Tilt Monitoring System (MEMS 센서 기반 고정밀 기울기 모니터링 시스템 설계)

  • Son, Young-Dal;Eun, Chang-Soo
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.23 no.11
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    • pp.1364-1370
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    • 2019
  • Tilt sensors are mainly used to measure the collapse of structures such as buildings, bridges and tunnels. Recently, due to the ease of use and low price, many tilt sensors using MEMS sensors have been used, but the measurement angle range is limited, and thus, they do not have high precision for 360 degree. This is due to the inherent offset and scale errors of MEMS sensors. In this paper, we proposed an algorithm for the calculation of precision angles to reduce the mechanical error of MEMS sensors, and produced a MEMS sensor module and a transmission module to compare the angle accuracy of sensor modules before calibration and the angle measurement accuracy after calibration. Experimental results show that the proposed technique has a precision of ± 0.015 degrees for all 360-degree.

Development of a Smartphone Application for the Measurement of Tree Height and Diameter at Breast Height (수고 및 흉고직경 측정 스마트폰 애플리케이션 개발)

  • Kim, Dong-Hyeon;Kim, Sun-Jae;Sung, Eun-Ji;Kim, Dong-Geun
    • Journal of Korean Society of Forest Science
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    • v.110 no.1
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    • pp.72-81
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    • 2021
  • We developed smartphone application and web application server to acquire and effectively manage tree measurement information. Smartphone applications can measure tree height, diameter at breast height (DBH), azimuth, altitude, slope, and positional coordinates using augmented reality (Google AR core) and motion sensors. The web application server effectively manages and stores measurement information. To evaluate the accuracy of information acquired using a smartphone, 90 Korean pine trees (Pinus koraiensis) were randomly selected from a natural mixed forest, with a total of 90 representative trees randomly collected from a natural mixed forest. Then, height and DBH were measured using a Haglof Vertex Laser Hypsometer and caliper. Comparisons of the results indicated significant results at the 95% level and a very high average correlation of 0.972 for both tree height and DBH. In terms of DBH, the average errors were 0.6745 cm and 1.0139 cm for artificial coniferous and natural mixed forests, respectively.

Evaluation of Furrow Mulching Methods for Controlling Non-Point Source Pollution Load from a Sloped Upland (경사밭 고랑멀칭 방법에 따른 비점오염 저감효과 평가)

  • Yeob, So-Jin;Kim, Min-Kyeong;Kim, Myung-Hyun;Bang, Jeong-Hwan;Choi, Soon-Kun
    • Journal of The Korean Society of Agricultural Engineers
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    • v.64 no.3
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    • pp.33-43
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    • 2022
  • South Korea's agricultural nitrogen balance and phosphorus balance rank first and second, respectively, among OECD countries, and proper nutrient management is required to preserve the water quality of rivers and lakes. This study evaluates the effects of furrow mulching on the reduction of non-point source pollution (NPS) load from a sloped upland. The study site was Wanju-gun, Jeollabuk-do, and the survey period was from 2018 to 2019. The slope of the testbed was 13%, and the soil type was sandy loam. The cropping system consisted of maize-autumn Chinese cabbage rotation. The testbed was composed of bare soil (bare), control (Cont.), furrow vegetation mulching (FVM), and furrow nonwoven fabric mulching (FFM) plots. Runoff was collected for each rainfall event with a 1/100 sampler, and the NPS load was calculated by measuring the concentrations of SS, T-N, and T-P. The NPS load was then analyzed for the entire monitoring and crop cultivation periods. During the monitoring period, the effect of reducing the NPS load was 1.5%~44.5% for FVM and 13.1%~55.2% for FFM. During the crop cultivation period, it was 1.2%~80.5% for FVM and 27.0%~65.1% for FFM, indicating that FFM was more effective than FVM. As the NPS load was fairly high during the crop conversion period, an appropriate management method needs to be implemented during this period.

Analysis of Satellite Orbit Elements and Study of Constellation Methods for Micro-satellite System Operation (초소형위성체계 운용을 위한 위성궤도요소 분석 및 위성군 배치기법에 대한 고찰)

  • Soung Sub Lee;Jihae Son;Youngbum Song
    • Journal of Advanced Navigation Technology
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    • v.27 no.4
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    • pp.337-345
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    • 2023
  • This study analyzes considerations for satellite orbit elements for the national micro-satellite system to effectively perform its mission in accordance with the operational concept, and compares the conventionally used Walker method to improve the performance of the satellite constellation method of the repeating ground track orbit. In satellite orbit element analysis, altitude candidate values of micro-satellite system, use of eccentricity and argument of perigee through frozen orbit, necessity of selection of appropriate orbit inclination, and satellite phasing rules for flying the same repeating ground track orbit are proposed. Based on these analysis results, the superiority of the constellation method of the repeating ground track orbit compared to the Walker method is verified in terms of revisit performance analysis, global coverage characteristics, and orbit consistency.

Simulation of acoustic waves horizontal refraction using a three-dimensional parabolic equation model (3차원 포물선방정식을 이용한 음파의 수평굴절 모의)

  • Na, Youngnam;Son, Su-Uk;Hahn, Jooyoung;Lee, Keunhwa
    • The Journal of the Acoustical Society of Korea
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    • v.41 no.2
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    • pp.131-142
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    • 2022
  • In order to examine the possibility of horizontal simulations of acoustic waves on the environments of big water depth variations, this study introduces a 3-dimensional model based on the pababolic equation. The model gives approximated solutions by separating the cross- and non cross-terms in the equation. Assuming artificial bathymetry (25 km × 4 km) with a source frequency 75 Hz, the simulations give clear horizontal refractions on the transmission loss distributions. The degree of refractions shows non-linear increase along the propagating range and proportional increase with water depth along the cross range. Another simulations with the real bathymetry (25 km × 8 km) also give clear horizontal refractions. The horizontal distributions present little difference with the depth resolution variations of the same data source because the model gives interpolations over the depth data before simulations. Meanwhile, the horizontal distributions show big difference with those of different data sources.

Study on driftwood behavior considering wood collision and bed deformation (충돌과 하상변동을 고려한 유목거동 연구)

  • Kang, Tae Un;Jang, Chang-Lae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.5-5
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    • 2021
  • 최근 기후변화로 인해 예측이 어려운 국지성 호우가 빈번하게 발생하고 있다. 국지성 호우는 대량의 홍수를 일으키고 산사태와 유송잡물을 동반한 흐름을 야기할 수 있으며 이로 말미암아 인근의 초목과 식생들로부터 유목(driftwood)이 발생하기도 한다. 유목이 흐름과 함께 떠내려 오게 되면 그로 인한 운동에너지가 크게 발생하게 되며, 수공구조물과 주택가옥 등에 충돌시, 순수한 수류의 충돌보다 훨씬 큰 손상을 주기도 한다. 또한 유목이 수공구조물 인근 하상에 군집하면 통수능을 저하시키기도 하며 식생효과와 마찬가지로 유목주변으로 유속이 증가하면서 세굴현상이 발생하게 되는데, 이는 하상저하를 일으키며 수공구조물의 안정성에 지속적으로 피해를 줄 수 있다. 특히 군집된 유목들이 교각에 충격을 주면 흐름방향으로 교각에 작용하는 외력을 증가시키게 되고 군집된 유목들이 다른 유목들을 연쇄적으로 포착하는 동시에 흐름을 지속적으로 방해하여 수위상승을 야기하게 된다. 이는 유목주변으로 세굴을 발생시켜 교량의 붕괴를 촉진시킬 수 있다. 일본의 경우에는 대부분의 하천유역의 경사가 매우 급하기 때문에 홍수발생시 산사태와 유송잡물들이 빈번하게 발생하고 있다. 그에 따라 대량의 유목들이 하천으로 유입되어 하천의 수공구조물과 주거지역에 심각한 피해를 주는 경우도 많다. 따라서 유목의 거동과 군집현상을 이해하여 사전에 유목거동의 예측과 유목과 하상변동의 상호작용 분석을 통해 유목에 의한 수리구조물 피해를 예측하는 연구들이 필요할 것으로 판단된다. 본 연구는 유목의 거동과 군집양상을 예측분석하기 위해 유목과 흐름의 이동상 실내실험과 수치해석을 수행하여 유목유입량에 따른 하상변동과 유목의 하상퇴적양상 및 다양한 거동을 관측분석 하였다. 특히, 유목간의 상호충돌과 측벽충돌을 고려하는 수치모듈을 유목동역학모형에 적용하여 수치해석을 수행하였다. 이를 통해 이동상 하상에서의 유목의 군집과정을 분석하고 수치해석의 한계와 개선사항들을 논의하였다.

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Empirical experiment to improve the applicability of the formula for time of concentration (홍수도달시간 산정식 적용성 개선을 위한 실증실험)

  • Keum, Ho Jun;Ko, Taekjo;Joo, Jaeseung;Kim, Yerim;Jung, Dojoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.123-123
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    • 2021
  • 도시하천유역이나 복합유역 등 지역적 성향을 고려한 도달시간 산정에 관한 연구는 현재까지도 미흡한 실정이다. 소규모 유역의 홍수량을 산정할 경우 유하시간보다 유입시간 비중이 상대적으로 크다. 그러나 유하시간만을 고려하여 도달시간을 산정할 때, 소규모 유역의 경우 하도가 없고 유역면적이 5km2 내외 또는 하도의 저류 효과를 기대할 수 없는 경우 도달시간이 짧아 홍수량이 과대 산정된다. 이를 극복하고자 재해영향성평가등의 협의 실무지침에서는 도달시간 이외에 매개변수인 저류상수를 인위적으로 증가시키는 방법을 제안하고 있다. 하지만 이 방법 역시 유역의 물리적인 특성을 나타내는 변수를 왜곡한다는 근복적인 문제를 완전히 해결하지 못하였다. 이에 본 연구에서는 기존 중·대규모 하천을 대상으로 수행된 연구결과를 바탕으로 제안된 홍수 도달시간 산정방법의 한계를 극복하고, 유입시간이 지배적인 소규모 복합유역에 적용 가능한 도달시간 산정방안을 제시하고자 한다. 이를 위해 실증실험을 통해 기존 유입시간 산정식을 개선하고, 도시수문 모니터링 시범유역에 적용하여 정확성을 평가하고자 하였다. 먼저, 홍수도달 시간 측정을 위한 강우유출 실내 실험장치를 제작하였다. 실험장치는 본체(길이3m×폭1.2m×높이0.8m)와 경사조절 장치(0~15도)를 포함하고 있다. 본체 전면부를 타공(ø10mm)하고 상·하단에서 지표와 기저유출을 집수하여 티핑버킷으로 유량을 측정하였고, 토체 내에는 토양수분센서를 설치하여 강우유출 발생시간 동안 토양수분 변화를 측정하였다. 본 연구에서는 하도흐름인 유하시간(Kraven 공식)을 계산하여 도달시간을 산정하기 보다 지표면 흐름인 유입시간(Kerby 공식)에 보정계수를 도입하여 도달시간을 산정하는 방안을 검토하였다. 실험 결과, 불투수 면적비율이 증가함에 따라 도달시간은 감소하고, 불투수 유역이 하류에 위치할수록 유출발생시간이 빨라졌다. 실증실험 결과를 바탕으로 도시수문 모니터링 시범유역에 적용하여 기존 유하시간과 저류상수를 보정하는 도달시간 산정방식(연속형 Kraven)과 유입시간을 보정한 도달시간 산정(수정 Kerby)으로 도출된 유출량을 실측 유량과 비교하였다. 그 결과 제안된 홍수도달시간 산정식에서 모의된 홍수량이 기존 방식과 유사하거나 우수한 첨두홍수량을 보였으며, 설계자 임의성이 배제된 일관성있는 해석값을 제시해 줄 것으로 판단된다.

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