• 제목/요약/키워드: Campus Buildings

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Effects of Students' Perceived Safety of Public Outdoor Environment on Academic Achievement at University Campus

  • Kim, Wonpil
    • Architectural research
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    • 제17권1호
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    • pp.13-20
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    • 2015
  • The physical environment can dramatically affect students' feeling and their behavior, educational attainment, and the way in which we do school activities. Unlimited access to campus areas without appropriate securities have reported an increase of crime in school area and safety issues has encouraged school facility planners to install securities devices at every corner of buildings. However, it is still questionable whether this approach is enough to protect students and staffs from the victimization of crime, including thefts, burglaries and sexual offences. There has been continued doubt about the safety of educational facilities where individual college students are studying and enjoying extra-curricular activities. Therefore, the purpose of this study is intended to investigate the effects of perception of safety by students on the level of academic performance at public outdoor environment of university campus. An extensive literature noted that the central element of modern school design principle mainly holds the theory of crime prevention through environmental design (CPTED) and the concept of defensible space. The second generation of CPTED also focused on social soft issues as well as situational factors, which extends beyond mere physical design to include social factors. The correlation analysis found that the effect of sense of safety does appear to be statistically significant on the facilitation of academic achievement. However, the analysis of Chi-square concluded that the perception of safety was not related to demographic and socio-economic profiles of the group except for gender. Further, stepwise multiple regression analysis revealed that the most prime predictor for academic achievement were 'safe public outdoor space/paths' at university campus environment, implying careful design of public open space and sidewalks based on the guideline of CPTED. The study also demonstrated that as the level of positive perception of safety rose, the overall academic achievement also responded to the specified rate (${\beta}=.99$). Finally, the findings reinforce an evidence that high-quality school environments are a positive factor in student academic performance.

공간구문론을 이용한 대학교 캠퍼스 코어의 공간구조 유형 및 특성 분석 (A Study on the Analysis of the Configuration and Properties of University Campus Cores through Space Syntax)

  • 이동주;고은형
    • 교육시설
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    • 제16권6호
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    • pp.13-20
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    • 2009
  • The purpose of this study is to analyze the configuration and properties of university campus cores for systematic approach and planning through space syntax based on master plans of 55 universities in Korea. The results of this study showed that: first, the campus cores were classified into 10 types through axial map analysis. They were '一 type', '二 type', 'ㄱ type', 'T type', '+ type', 'radiation type', 'grid type', 'polygon type', 'tree structure type' and 'combination type'.(table 7) The frequency of '一 type' was the highest by 27.2%, and 'radiation type' was the next by 14.5%; second, the integration value was 2.03(+ type), te90(grid type), te75(ㄱ type), te74(一 type), te67(二 type), te63(T type), te46(polygon type), te347(tree structure type) and te343(radiation type).(table 9) We could categorize the 'radiation type' and the 'tree structure type' as the first group, the 'polygon type' as the second group, the 'T type', the '二 type', the '一 type', and the 'ㄱ type' as the third group, the 'grid type' as the fourth group, the '+ type' as the fifth group; third, cases that the integration value of access road was very low(58.2%) was much more frequent than that of very high(32.7%); fourth, the most important space in the campus core were as follows: library and media center(18.1%), administration buildings and headquarters(15.7%), student center(15.7%), lecturing building(13.9%), streets and squares(13.3%).

에너지 절감을 고려한 캠퍼스 마이크로그리드에서 선형 전압제어 방식의 AVR을 이용한 CVR의 적용 (Application of Conservation Voltage Reduction using Automatic Voltage Regulator of Linear Voltage Control in Campus Microgrid with Power Consumption Reduction)

  • 임일형;이명환;신용학
    • 전기학회논문지
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    • 제66권7호
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    • pp.1039-1046
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    • 2017
  • Campus microgrid is designed and built by considering not only power generation but also power consumption management as connected microgrid type because the main goal of the campus microgrid is to save power consumption costs. There are many functions to achieve the goal and they are mainly to use generation-based functions such as islanding operation for peak management and for emergency events. In power distribution operation, Conservation Voltage Reduction (CVR) is applied in order to reduce power consumption. The CVR is defined as a function for load consumption reduction by voltage reduction in order to reduce peak demands and energy consumption. However, application of CVR to microgrid is difficult because the microgrid cannot control a tap of transformer in a substation and the microgrid normally is not designed with phase modifying equipment like a step-voltage-regulator which can control voltage in power distribution system operation. In addition, an impact of the CVR is depended on load characteristics such as a normal load, a rated power, and synchronous motors. Therefore, this paper proposes an application of CVR using linear voltage control based AVR in campus microgrid with power consumption reduction considering characteristics of load and component in the microgrid. The proposed system can be applied to each buildings by a configuration of power distribution cables; and the application results and CVR factor are presented in this paper.

호우로 인한 절개산지의 피해 조사 및 대책공법 -동아대 승학 캠퍼스를 중심으로- (Investigation and Repair Methods for the Excavated Mountain Area damaged by Rainfall : At the Sunghak Campus, Dong-A University)

  • 정성교;김종대
    • 한국지반공학회지:지반
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    • 제7권2호
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    • pp.27-40
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    • 1991
  • 동아대학교 승학캠퍼스는 산지를 굴착하여 약 10년 전부터 연차적으로 건설되어 왔다. 1989년 8월에 내린 200mm16ay이상의 집중호우로 인한 지하수 및 산사태로써 건물, 사면, 미로 등 많은 피해를 입었다. 이 피해의 원인조사 및 보완대책을 위하여 현황 및 50m 격자형 위치측량, 예비조사, 야외간이 측량법, 지구 물리학적 탐사법, 시추조사 및 흙의 특성시험 등이 수행되었다. 이러한 조사결과를 바탕으로 피해의 원인 및 예측을 수행하였으며 수평배수공법, 위험한 노출암괴의 제거, 지하배수를 겸한 옹벽설치, 붕적층의 제거 및 격자형 블록에 의한 사면안정공법 등좌 보완대책이 수립되었다.

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대학 캠퍼스 냉·난방시스템 최적화 방안 연구 (A Study on the Optimization of Heating and Cooling System in University Campus)

  • 박소연;박효순;이상혁;김지연;홍성희
    • KIEAE Journal
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    • 제10권6호
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    • pp.139-144
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    • 2010
  • The demands are increasing for the efficient heating and cooling system and thermal comfort environment because of changes in climate and environment, and deterioration of buildings and facilities can cause education budget to increase. So the study to apply heating and cooling system to university is urgently needed to improve an optimum energy saving system, educational environment and convenience of maintenance. For this reason, we selected a university campus in Seoul then came to understand the current situation and found some problems. We drew alternatives from comparative analysis of them. It selects representative building and carries out economic analysis to evaluate characteristics of energy consumption and economics on each type of heating and cooling system. As a result we drew the optimum system from those processes as previously stated. We studied 3 available systems, absorption chiller, EHP(Electric Heat Pump) and GHP(Gas Engine Heat Pump). According to LCC analysis suppose that the value of EHP is 1, it came out that the value of absorption chiller is 1.5 and the value of GHP is 2.2. This study, suggesting the optimum heating and cooling system, will support educational and research activities furthermore effect to maximize energy efficiency. Ultimately it is expected that it will contribute to make eco-friendly Green Campus.

대학 캠퍼스 보행자 이동패턴과 보행네트워크간의 상호관련성 (The Relationship between the Pedestrian Movement Pattern and the Pedestrian Network at a University Campus)

  • 이유미;신행우
    • 교육시설 논문지
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    • 제21권2호
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    • pp.25-32
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    • 2014
  • Many Korean university campuses are located on hilly terrain where the hierarchy of the path system is unclear. Therefore, it is difficult to analyze the pedestrian network through space syntax, in which only horizontal direction changes are considered as depths of space. The purpose of this study is to compare pedestrian movement patterns and space syntax analysis in order to find their relevance to each other and the relationship between them. We conducted a survey regarding the most-visited buildings and pathways at S-University, which is located on a hilly area in Seoul. The survey results were compared with the Space Syntax integration map by regression analysis. For the segments where the relationship between pedestrian volume and integration was weak, field observations were conducted. As a result, topographical aspects, functional aspects, and location aspects were observed as the main influential factors. In addition, the research proposes that adding an extra axial line per vertical directional change can potentially compensate for the low relevance of stairs. This study suggests the possibility and the necessity of three-dimensional space syntax programs and emphasizes the importance of campus planning for the pedestrian environment.

버츄얼 캠퍼스 : 대규모 가상 세계의 제작 (Construction of Virtual Campus, a Large-scale Virtual World)

  • 서혜원;좌수진;원광연
    • 한국컴퓨터그래픽스학회논문지
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    • 제3권2호
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    • pp.15-25
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    • 1997
  • 본 논문은 대규모 가상 세계의 제작 과정과 내비게이션에 관한 접근 방법을 기술하고, 그 과정에서 발견한 문제점과 개선 방향, 그리고 관련된 연구 이슈에 대해서 논한다. 대상 가상 세계로서 KAIST캠퍼스를 택하여 캠퍼스의 지형, 건물 및 구조물들을 모델링하고 배치하여 통합된 가상 세계를 구축하였다. 대규모 가상 세계를 제작하는 것은 그 자체가 중요한 연구 이슈가 될 뿐만 아니라 제작된 가상 세계는 캠퍼스 안내 시스템, 원격 교육, 디지털 라이브러리, 인터넷 응용 등에 사용될 수 있으며 실시간 컴퓨터 그래픽스를 연구하기 위한 testbed로 사용될 수 있다.

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Capacity spectrum method based on inelastic spectra for high viscous damped buildings

  • Bantilas, Kosmas E.;Kavvadias, Ioannis E.;Vasiliadis, Lazaros K.
    • Earthquakes and Structures
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    • 제13권4호
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    • pp.337-351
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    • 2017
  • In the present study a capacity spectrum method based on constant ductility inelastic spectra to estimate the seismic performance of structures equipped with elastic viscous dampers is presented. As the definition of the structures' effective damping, due to the damping system, is necessary, an alternative method to specify the effective damping ratio ${\xi}eff$ is presented. Moreover, damping reduction factors (B) are introduced to generate high damping elastic demand spectra. Given the elastic spectra for damping ratio ${\xi}eff$, the performance point of the structure can be obtained by relationships that relate the strength demand reduction factor (R) with the ductility demand factor (${\mu}$). As such expressions that link the above quantities, known as R - ${\mu}$ - Τ relationships, for different damping levels are presented. Moreover, corrective factors (Bv) for the pseudo-velocity spectra calculation are reported for different levels of damping and ductility in order to calculate with accuracy the values of the viscous dampers velocities. Finally, to evaluate the results of the proposed method, the whole process is applied to a four-storey reinforced concrete frame structure and to a six-storey steel structure, both equipped with elastic viscous dampers.

인텔리전트 대학시설 모형개발을 위한 실태조사 연구 (A Survey Study on the Development Model of Intelligent University Facilities)

  • 배정익;안병욱;박동소;이상호;이경회
    • 교육시설
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    • 제5권1호
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    • pp.44-52
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    • 1998
  • Nowadays, social environment is rapidly changed toward globalization and information age, and which demands the new paradigm for active utilization of information system in the field of education and many others. The effort to adapt tele-communication technique to educational facilities and the planning to make virtual university come true are needed immediately. Intelligent Building system should be applied to educational facilities to cope with the changing and progressing building system. As a result of the surveying eleven domestic universities, it was found that library management system, administration automation system and office automation system were already introduced, but campus infrastructure such as network system and tele-communication system between buildings in campus have been constructed now. As the conclusion of this study, impeding factors and improvement direction for active utilization of intelligent building systems in university facilities were presented.

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Evolution of concrete encased - CFST column: A comprehensive review on structural behavior and performance characteristics

  • Namitha Raveendran;Vasugi K
    • Steel and Composite Structures
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    • 제51권6호
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    • pp.619-645
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    • 2024
  • In the construction industry, composite structures have revolutionized traditional design principles, opening innovative possibilities. The Concrete Encased - Concrete Filled Steel Tubular (CE-CFST) column stands out as a distinctive composite structure, offering structural stability and resilience for various engineering applications. Comprising Reinforced Concrete (RC) and Concrete Filled Steel Tubular (CFST) components, CE-CFST columns are valued for their inherent properties, including ductility and rigidity, CE-CFST is commonly used in the construction of bridges, high-rise buildings, and more. This article aims to provide a concise overview of the evolutionary development of CE-CFST columns and their performance in structural applications. Through a comprehensive review, the study delves into the behaviour of CE-CFST columns under different scenarios. It examines the influences of key parameters such as size, infills, cross section, failure causes, and design codes on the performance of CE-CFST columns, highlighting their enhanced functionality and future potential. Moreover, the review meticulously examines previous applications of CE-CFST columns, offering insights into their practical implementation.