• 제목/요약/키워드: Ground types

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An intelligent semi-active isolation system based on ground motion characteristic prediction

  • Lin, Tzu-Kang;Lu, Lyan-Ywan;Hsiao, Chia-En;Lee, Dong-You
    • Earthquakes and Structures
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    • 제22권1호
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    • pp.53-64
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    • 2022
  • This study proposes an intelligent semi-active isolation system combining a variable-stiffness control device and ground motion characteristic prediction. To determine the optimal control parameter in real-time, a genetic algorithm (GA)-fuzzy control law was developed in this study. Data on various types of ground motions were collected, and the ground motion characteristics were quantified to derive a near-fault (NF) characteristic ratio by employing an on-site earthquake early warning system. On the basis of the peak ground acceleration (PGA) and the derived NF ratio, a fuzzy inference system (FIS) was developed. The control parameters were optimized using a GA. To support continuity under near-fault and far-field ground motions, the optimal control parameter was linked with the predicted PGA and NF ratio through the FIS. The GA-fuzzy law was then compared with other control laws to verify its effectiveness. The results revealed that the GA-fuzzy control law could reliably predict different ground motion characteristics for real-time control because of the high sensitivity of its control parameter to the ground motion characteristics. Even under near-fault and far-field ground motions, the GA-fuzzy control law outperformed the FPEEA control law in terms of controlling the isolation layer displacement and the superstructure acceleration.

그라운드 레슬링 가로들기 공격 시 수비 유형의 운동학적 분석 (A Kinematic Analysis of the Defence Types during Body Lock Technique in the Ground Wrestling)

  • 하종규;류지선
    • 한국운동역학회지
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    • 제17권1호
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    • pp.155-164
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    • 2007
  • This study is to find out effective defensive type by analysis on differences among three different defence types of the body lock technique in the ground wrestling. The subjects are 5 athletes who are in 60kg weight class. To get the kinematic analysis seven ProReflex MCU-240(Motion Capture Unit), infrared rays cameras, which was produced by Qualisys, were used to get a two-dimensional coordinate. Following are the analysis result from kinematic factors such as time element, speed element and angular element. 1. During position of ground wrestling, the average necessary time until defender's hip joint touches the mat for Phase1 was $0.34{\pm}0.14sec$ at side position was the shortest space of time out of three types, and Phase2 was $0.21{\pm}0.02sec$ at front position was the shortest space of time out of three types. Moreover, side defence position was the shortest for total average necessary time with $0.78{\pm}0.05sec$. 2. The movement change for hip joint was $57.21{\pm}20.17cm$ for front, $43.35{\pm}7.13cm$ for rear, and $18.67{\pm}10.24cm$ for side at Phase1 and $42.08{\pm}17.56cm$ for side, $16.61{\pm}6.34cm$ for front, and $1.48{\pm}1.29cm$ for rear at Phase2. 3. Movement speed of hip joint at defensive type were most effective in success and fail rate at Phase 1 and its frontal average speed was fastest with $1.01{\pm}0.23m/s$ following by $0.52{\pm}0.15m/s$ for side, and $0.62{\pm}0.15m/s$ for rear. The average for total change of speed is $0.79{\pm}0.32m/s$ for front, $0.78{\pm}0.17m/s$ for side, and $0.49{\pm}0.08m/s$ for rear. 4. The joint angle gets smaller in a order by rear, front, and side for the size of hip joint angle and knee angle for different defensive type. 5. As a result of one-way ANOVA on linear velocity for hip joint in frontal defence(phase1) was significance ($\alpha$=.05), but phase 2 was not significance. Synthetically, analyzing on differences among three different defence types which were front, rear, and side of the body lock technique in the ground wrestling, front defensive type was the most effective. In future, there should be more studies regarding on defence at not a laboratory study but a field study to help out wrestler to pertinent techniques to improve the game of wrestling.

도심지 지하 터널시공 중 차수·보강 그라우팅 공사의 품질향상을 위한 P~q~t charts 적용성 연구 (A Study on the P~q~t Charts Applicability for Quality Improvement of Water-Sealing&Reinforcement Grouting in Tunneling Work Underneath the City)

  • 김진춘;김석현;유병선;강희진
    • 한국방재안전학회논문집
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    • 제14권3호
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    • pp.51-63
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    • 2021
  • 본 연구는 도심지 지하 교통망 건설 중 터널굴착 공정에 적용하는 차수·보강 그라우팅 공사의 품질향상을 위한 것이다. 기존의 터널 그라우팅 시공에서는 실시간으로 주입압 및 주입량을 보여주는 P~q~t charts를 기술적으로 온전히 활용하지 못하였다. 그 이유는 주입지반의 차이 및 주입 중 어떤 문제가 발생할 시에 P~q~t charts가 어떻게 변화하며, 그에 따른 표준적인 주입유형을 보여주는 주입 그래프 패턴, 특성, 판정, 그에 따른 조치유형 및 조치방법에 대한 기술적 판단방법이 없었기 때문이다. 본 논문은 상기의 문제점 등을 해결하기 위한 일환으로 일반 및 알고리즘 그라우팅 시 토사층 및 암반층으로 구분하여 주입유형, 특성, 판정방법, 그리고 조치유형 및 조치방법 등의 연구를 수행하였다. 새롭게 개선된 토사층 P~q~t charts에서는 일반그라우팅과 알고리즘 그라우팅 둘로 나누어 각각 6가지 유형으로 구분하였고 각 유형에 따른 특성 및 판정방법을 도출하였으며 일반주입유형과 알고리즘 주입유형에서의 각 유형별 조치방안도 개발하여 현장에서 쉽게 적용 가능하도록 제안하였다. 또한, 개선된 암반층 P~q~t charts에서도 각각 6가지 유형으로 구분하여 토사층과 같이 해당 유형에 상응하는 조치방안을 개발하여 현장에서 쉽게 적용 가능하도록 제안하였다. 따라서, 도심지 지하 교통망 건설 중 터널굴착 공정에 적용하는 차수·보강 그라우팅 공사에서 예비단계의 현장시험 혹은 시공 중 단계에서 시간에 따른 주입압 및 주입량의 데이터인 P~q~t charts를 실시간 측정하여 주입유형을 분석하고 조치방법을 마련하여 더 나아가 모든 그라우팅 단계에서 활용될 수 있을 것으로 기대된다.

측심기의 음향반사 특성을 이용한 해저퇴적물의 원격분류: 부산 수영만의 예비결과 (Remote Seabed Classification Based on the Characteristics of the Acoustic Response of Echo Sounder: Preliminary Result of the Suyoung Bay, Busan)

  • 김길영;김대철;김양은;이광훈;박수철;박종원;서영교
    • 한국수산과학회지
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    • 제35권3호
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    • pp.273-281
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    • 2002
  • 해양의 표층퇴적물을 분류하는 일반적인 방법은 ground frothing에 의한 것으로 시료채취 정점에 국한된 자료라는 한계성을 가지고 있다. 최근에는 원격분류방법의 개발로 인하여 이러한 한계성을 극복한 연속적인 자료를 얻을 수 있도록 가능하게 되었다 본 연구에서는 해저면의 원격분류결과를 실시간 수치화된 자료로 얻을 수 있는 음향장비인 QTC View라는 기기를 이용해 부산 수영만의 표층 퇴적물을 원격분류 하였다. QTC View는 50kHz의 음향측심기와 연결하였고 측정장비의 설정환경은 조사동안 일정하게 유지하였다. Ground trothing에 의한 시료 분석결과 수영만은 slightly gravelly sand, slightly gravelly sandy mud. gravelly muddy sand, clayey sand, sandy mud, slightly gravelly muddy sand 그리고 rocky bottom의 총 7개의 퇴적물형으로 분류되었다. QTC View를 이용한 1차 원격분류결과 이들 7개 중 slightly gravelly sand, gravelly muddy sand, sandy mud 및 rocky bottom 등 4개의 퇴적물형이 구분되었으며 이는 2차 원격분류결과에서도 유사하게 분포하는 것으로 확인되었다. Ground frothing에 의한 분류자료와 원격분류 자료를 비교한 결과 퇴적물형을 구분할 때 소량성분에 의해 서로 다르게 구분된 경우는 다소 차이가 있으나 연구지역 전반에 걸친 퇴적물의 분포양상은 잘 일치하는 것으로 나타났다. 따라서 QTC View는 해저퇴적물을 원격분류하는데 유효하게 이용될 수 있을 것으로 본다.

건물의 냉난방 운전을 고려한 3차원 동적 지중 열교환기 열해석 모델 (Three-dimensional Equivalent Transient Ground Heat Exchanger Thermal Analysis Model by Considering Heating and Cooling Operations in Buildings)

  • 백승효
    • 토지주택연구
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    • 제9권4호
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    • pp.25-32
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    • 2018
  • Application of geothermal energy in buildings has been gaining popularity as it provides the benefits of both heating and cooling a building. Among the various types of geothermal energy systems, ground-coupled heat pump system is the most commonly applied one in South Korea. A ground heat exchanger plays an important role as a heat source in winter and a heat sink in summer. For the stable operation of a ground-coupled heat pump system, a ground heat exchanger should be sized so that it provides sufficient heating and cooling energy. Heating and cooling energies generated in ground heat exchangers mainly depend on the temperature difference between the heating medium in ground heat exchangers and the surrounding ground. In addition, the performance of ground heat exchangers influences the change in ground temperature. Therefore, it is necessary to consider this interrelation between the change in the ground temperature and the performance of ground heat exchanger for an accurate estimation of its performance. However, previous thermal analysis models for ground heat exchangers are not competent enough to allow a complete understanding of this interrelation. Therefore, this study proposes a three-dimensional equivalent, transient ground heat exchanger analysis model. First, a previous thermal analysis model for ground heat exchangers, including an analytical model, a g-function, and a numerical model are analyzed. Next, to overcome the limitations of the previous models, a three-dimensional equivalent, transient ground heat exchanger model is proposed. Finally, this study validated the proposed model with the measurement data of the thermal response test, sandbox test, and TRNSYS DST model. All validation results showed a good agreement. These findings helped us to investigate the thermal performance of ground heat exchangers more accurately than the analytical models, and faster than the numerical models. Furthermore, the proposed model contributes to the design of ground heat exchangers by considering the different operation conditions of buildings.

An Effective Threat Evaluation Algorithm for Multiple Ground Targets in Multi-target and Multi-weapon Environments

  • Yoon, Moonhyung;Park, Junho;Yi, Jeonghoon
    • International Journal of Contents
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    • 제15권1호
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    • pp.32-38
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    • 2019
  • In an environment where a large number of weapons are operated compared to a large number of ground targets, it is important to monitor and manage the targets to set up a fire plan, and through their multilateral analysis, to equip them with a priority order process for targets having a high threat level through the quantitative calculation of the threat level. Existing studies consider the anti-aircraft and anti-ship targets only, hence, it is impossible to apply the existing algorithm to ground weapon system development. Therefore, we proposed an effective threat evaluation algorithm for multiple ground targets in multi-target and multi-weapon environments. Our algorithm optimizes to multiple ground targets by use of unique ground target features such as proximity degree, sorts of weapons and protected assets, target types, relative importance of the weapons and protected assets, etc. Therefore, it is possible to maximize an engagement effect by deducing an effective threat evaluation model by considering the characteristics of ground targets comprehensively. We carried out performance evaluation and verification through simulations and visualizations, and confirmed high utility and effect of our algorithm.

Impact of target spectra variance of selected ground motions on seismic response of structures

  • Xu, Liuyun;Zhou, Zhiguang
    • Earthquakes and Structures
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    • 제23권2호
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    • pp.115-128
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    • 2022
  • One common method to select input ground motions to predict dynamic behavior of structures subjected to seismic excitation requires spectral acceleration (Sa) match target mean response spectrum. However, dispersion of ground motions, which explicitly affects the structural response, is rarely discussed in this method. Generally, selecting ground motions matching target mean and variance has been utilized as an appropriate method to predict reliable seismic response. The goal of this paper is to investigate the impact of target spectra variance of ground motions on structural seismic response. Two sets of ground motions with different target variances (zero variance and minimum variance larger than inherent variance of the target spectrum) are selected as input to two different structures. Structural responses at different heights are compared, in terms of peak, mean and dispersion. Results show that increase of target spectra variance tends to increase peak floor acceleration, peak deformation and dispersions of response of interest remarkably. To short-period structures, dispersion increase ratios of seismic response are close to that of Sa of input ground motions at the first period. To long-period structures, dispersions of floor acceleration and floor response spectra increase more significantly at the bottom, while dispersion increase ratios of IDR and deformation are close to that of Sa of input ground motions at the first period. This study could further provide useful information on selecting appropriate ground motion to predict seismic behavior of different types of structures.

이중퀜치를 이용한 삼상변압기형 초전도한류기의 삼상지락 고장 종류에 따른 고장전류 제한 특성 분석 (Analysis on Fault Current Limiting Characteristics of Three-Phase Transformer Type SFCL using Double Quench According to Three-Phase Ground-Fault Types)

  • 이신원;한태희;임성훈
    • 한국전기전자재료학회논문지
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    • 제36권6호
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    • pp.614-619
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    • 2023
  • The fault current limiting characteristics of three-phase transformer type superconducting fault current limiter (SFCL), which consisted of three-phase primary and secondary windings wound on E-I iron core, one high-TC superconducting (HTSC) element connected with the secondary winding of one phase and another HTSC element connected in parallel with other two secondary windings of two phases, were analyzed. Unlike other three-phase transformer type SFCLs with three HTSC elements, three-phase transformer type SFCL using double quench has the merit to perform fault current limiting operation for three-phase ground faults with two HTSC elements. To verify its proper three-phase ground fault current limiting operation, three-phase ground faults such as single-line ground, double-line ground and triple-line ground faults were generated in three-phase simulated power system installed with three-phase transformer type SFCL using double quench. From analysis of its fault current limiting characteristics based on tested results, three-phase transformer type SFCL using double quench was shown to be effectively operated for all three-phase ground faults.

Geophysical methods for the investigation of a closed dumping ground

  • Xin, Ling;Chu, Jian;Wang, Jing-Yuan;Yin, Ke;Tong, Huan-Huan;Chia, Charles Y.H.;Mohamed Noh, Omar A.
    • Geomechanics and Engineering
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    • 제8권5호
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    • pp.727-739
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    • 2015
  • Reclamation of closed dumping grounds is a potential solution to solve land scarce problems. Traditional geotechnical investigations of closed dumping grounds face some problems, such as the emission of hazardous liquids and gases, and the lack of ground information due to the discontinuity between two boreholes. Thus, noninvasive and continuous investigation methods are needed to supplement traditional geotechnical investigations. In this paper, two types of geophysical investigation methods, Seismic Analysis of Surface Waves (SASW) and 2D Resistivity, were carried out to study noninvasive and continuous site investigations for dumping grounds. The two geophysical methods are able to profile the distribution of physical properties of the fill and original materials, by which the extent of the dumping ground can be found and some anomalies in the subsurface can be located. Boreholes were used to assist in locating the dumping material-ground interfaces. The results show that dumping material-ground interfaces obtained from the two geophysical methods are roughly consistent. Moreover, attempt is made in the paper to use the geophysical methods to classify the types of dumping materials. The results show that the classification of dumping materials using the geophysical methods follows the results of the manual sorting of the dumping materials from a borehole.

초미분말 서냉 슬래그를 혼화재로 사용한 콘크리트의 기초적 특성 (Basic Properties of Concrete with Ultrafine-Blaine Air Cooling Slag as Admixture)

  • 허재혁;정성욱;허재원;임남기
    • 한국건축시공학회지
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    • 제9권2호
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    • pp.77-83
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    • 2009
  • In this study, a test has been carried out to solve the problem with ground granulated blast-furnace slag, low early strength & lack of supply and to find out a way to use as concrete admixture of the ultrafine blaine air cooling slag which is all disposed as the by product of air cooling slag and its test was conducted to the replacement rate of ultrafine blaine air cooling slag & mixing condition of every concrete admixtures by type for the purpose of obtaining later a basic data for practical use of the cement that used ultrafine blaine air cooling slag by conducting comparative analysis. If ultrafine-blaine air cooling slag is used to the concrete following the results, a high efficiency water reducing agent won't be needed much for flow acquisition due to a high increase in flow, and the stripping time of concrete form will be shortened thanks to the acquisition of early strength, And though, it has the problems with long term strength which is similar or a little lower than the 3 types of ground granulated blast-furnace slag, it's still applicable as the substitute materials for 3 types of ground granulated blast-furnace slag at 10, 15% replacement rate of ultrafine-blaine air cooling slag, at which it shows higher activation index than 3 types of ground granulated blast-furnace slag.