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        검색결과 65

        1.
        2022.05 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Seismic demand on nonstructural components (NSCs) is highly dependent on the coupled behavior of a combined supporting structure- NSC system. Because of the inherent complexities of the problem, many of the affecting factors are inevitably neglected or simplified based on engineering judgments in current seismic design codes. However, a systematic analysis of the key affecting factors should establish reasonable seismic design provisions for NSCs. In this study, an idealized 2-DOF model simulating the coupled structure-NSC system was constructed to analyze the parameters that affect the response of NSCs comprehensively. The analyses were conducted to evaluate the effects of structure-NSC mass ratio, structure, and NSC nonlinearities on the peak component acceleration. Also, the appropriateness of component ductility factor (R p) given by current codes was discussed based on the required ductility capacity of NSCs. It was observed that the responses of NSCs on the coupled system were significantly affected by the mass ratio, resulting in lower accelerations than the floor spectrum-based response, which neglected the interaction effects. Also, the component amplification factor (a p) in current provisions tended to underestimate the dynamic amplification of NSCs with a mass ratio of less than 15%. The nonlinearity of NSCs decreased the component responses. In some cases, the code-specified R p caused nonlinear deformation far beyond the ductility capacity of NSCs, and a practically unacceptable level of ductility was required for short-period NSCs to achieve the assigned amount of response reduction.
        4,300원
        2.
        2022.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        최근 도심항공모빌리티(UAM) 상용화에 앞서 도심 내 항공 교통수단 관련 산업에 대한 연구개발 중요성이 급격히 증가하고 있다. 도심항공모빌리티(UAM) 환경을 조성하기 위해서 핵심 항공 이동 수단 비행체인 개인용 항공기 (PAV) 기체에 관한 연구가 수행되고 있으나, 탑승자 관점의 연구가 상대적으로 부족한 상황이다. 특히 PAV는 탑승 자의 새로운 생활공간으로 활용될 것으로 예상되기 때문에 탑승자의 실내행위를 지원하는 실내공간 설계를 위해서 는 PAV 기체에서 발생하는 물리적 요소가 인체에 미치는 영향에 관한 연구가 필수적으로 이루어져야 한다. 이에 본 연구의 목적은 PAV의 공중 운항 특성으로 인해 인체에 영향을 주는 제약 요소를 도출하고, 이러한 제약 요소가 실내행위를 수행하는 탑승자 인체에 미치는 영향을 파악하는 것이다. 본 연구 결과, 항공 이동 수단 비행 기체 PAV 는 4,000ft 이하에서 운항해야 하는 기준에 따라, 운항고도에 따른 제약 요소는 소음, 진동, 저주파 운동에 의한 멀미 로 나타났다. 이러한 제약 요소가 실내행위에 영향을 미친다는 관점에서 PAV에서 행할 수 있는 실내행위를 자율주 행 자동차, 비행기, PAV 컨셉 사례를 활용하여 도출하고 인체에 미치는 영향과 수준을 고려하여 실내행위 지원을 위한 제약 요소 권장기준을 설정하였다. 또한 실내행위 지원을 위한 제약 요소의 인체 영향 수준을 감소시키기 위해 서는 시트의 형태 및 내장기능(진동 저감 기능, 온도조절, LED조명 등), 개인 좌석별 지향성 스피커를 활용한 외부소 음 감소, 소음과 진동 감소를 위한 내장재 등을 실내공간 설계에 반영해야 함을 제시하였다. 본 연구는 PAV 실내행 위에 영향을 주는 제약 요소를 도출하였고, 인체에 미치는 영향 수준을 확인하였으며, 추후 PAV 실내 설계 시 기초 자료로써 활용할 수 있다는 점에서 의미가 있다.
        5,200원
        3.
        2022.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this paper, a method of reducing the weight of vehicle wheels through topology optimization by finite element method is proposed. Recently, various environmental pollution caused by the operation of vehicles is gradually increasing, and this has a great correlation with the fuel efficiency of the vehicle. Therefore, it is required to reduce the weight of the vehicle to increase fuel efficiency. Among them, the vehicle's wheels are a key part of vehicle acceleration and braking, and passenger safety. Because the shape of the wheels is different, various effects such as reduced fuel economy and reduced airpower occur as well as aesthetic factors. The stiffness of the wheels plays an important role in transmitting the vehicle's power to the tires and braking. In this study, to reduce weight while satisfying the stiffness value, we propose to use topology optimization to design an arbitrary shape according to the number of spokes on the wheel.
        4,000원
        4.
        2022.01 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study proposed a simplified finite element analysis procedure for designing the nonstructural masonry wall in the out-of-plane direction. The proposed method is a two-step elastic analysis procedure by bilinearizing the behavior of the masonry wall. The first step analysis was conducted with initial stiffness representing the behavior up to the effective-yield point, and the second step analysis was conducted with post-yield stiffness. In addition, the orthotropic material property of the masonry was considered in the FE analysis. The maximum load was estimated as the sum of the maximum loads in the first and second step analyses. The maximum load was converted into the moment coefficients and compared with those from the yield line method applied in Eurocode 6. The moment coefficients calculated through the proposed procedure showed a good match with those from the yield line method with less than 6% differences.
        4,000원
        5.
        2021.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : The purpose of this study is to evaluate the road design elements affecting the lateral driving safety under high-speed driving conditions with a speed limit of 140 km/h and to derive useful implications to design of safer roads. METHODS : A full-scale driving simulator was used to evaluate the various design scenarios. Different regression techniques and a random forest method were adopted to conduct comprehensive comparisons among the simulation scenarios. The relationships between the safety indicators, including the frequency of the lane departures and the standard deviation of the lateral acceleration, and the design elements were explored in terms of lateral driving safety. RESULTS : The length of the combined alignment was found to be a significant factor affecting the lateral driving safety based on the analysis of the frequency of lane departures. Regarding the standard deviation of the lateral acceleration, it was identified that the length of the horizontal curve, the length of the bridge, and the right-side superelevation must be considered significant factors associated with driving safety while designing the road under high-speed driving conditions. CONCLUSIONS : Based on the findings of this study, a set of recommendations for designing roads was proposed. For example, the proper length of the combined alignment and the horizontal curve should be determined to prevent crashes due to hazardous lateral driving events because the installation of sufficient superelevation in the bridge section would be limited under high-speed driving conditions. In addition, applying a larger horizontal curve radius with longitudinal grooving is a promising approach to tackle risky driving conditions.
        4,200원
        7.
        2021.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : The purpose of this study is to derive specific road design elements for safe urban underground and to adopt measures for minimizing traffic delays and to maintain efficient operation. METHODS : In this study, a qualitative study was conducted using Focus Group Interview (FGI) method to identify significant connection characteristics and develop connections to urban underground roads. Finally, this study analyzes design elements necessary for traffic safety and efficient traffic operation. In addition, relevant case studies were performed with keywords from the FGI method results. Therefore, major design elements were analyzed for urban underground road connection and connection analysis for traffic simulation-based verification. RESULTS : The main characteristics of the connection between the underground roads of the downtown area were divided into three types: traffic flow characteristics, geometric characteristics, and driver behavioral characteristics. From the review of 16 leading studies (10 domestic papers and 6 international papers) according to the characteristics, the main design factors for “traffic flow characteristics” include the traffic volume, design speed, heavy vehicle ratio, and lane change. The important design elements for “geometric characteristics” include the separation distance, number of lanes, slope, lane and shoulder width and the design factors for “driver behavioral characteristics” showed reaction time, driver vision, and driving speed. CONCLUSIONS : The FGI method identified the main characteristics of connections to the underground roads. In addition, the relevant empirical and theoretical research data were considered in case studies, and the design elements were derived and separated spatially based on the features of each design element, establishing a point-specific design element guideline.
        4,000원
        8.
        2021.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : The purpose of this study is to establish design criteria for right-turning lanes by analyzing the relationship between the speed and geometry of right-turning lanes in urban areas. METHODS : A right-turn vehicle with a traffic island was surveyed for 32 geometries and 4,012 vehicles. Using multiple regression, we developed a running speed prediction model based on the running speed characteristics and geometry scale. RESULTS : According to the analysis of the running speed of the right-turning channel, the 85th speed was 34.5-38.3 km/h, depending on the right-turning lane radius, and 32.4-39.0 km/h, depending on the channel width group. Based on the multi-regression, the right-turning radius and the channel width variables were statistically significant because of the influencing factors of the road speed. Two independent variables were positive (+) coefficients. CONCLUSIONS : In this study, we investigated the running speed state on the right-turning channel and the factors that influenced the running speed. In addition, the relationship between the running speed and other factors was modeled through statistical analysis, and a running speed prediction model was established. It was observed that the driving speed increased as the geometry scale increased. Based on the derived running speed model, the maximum design criteria for limiting the speed of the conductive channelized right-turning lane in urban areas were established.
        4,800원
        11.
        2020.11 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In the event of an earthquake, non-structural components require seismic performance to ensure evacuation routes and to protect lives from falling non-structural components. Accordingly, the seismic design code proposes horizontal force for the design and evaluation of non-structural components. Ground motion observed on each floor is affected by a building's eigen vibration mode. Therefore, the earthquake damage of non-structural components is determined by the characteristics of the non-structural component system and the vibration characteristics of the building. Floor response spectra in the seismic design code are estimated through time history analysis using seismic waves. However, it is difficult to use floor response spectra as a design criterion because of user-specific uncertainties of time history analysis. In addition, considering the response characteristics of high-rise buildings to long-period ground motions, the safety factor of the proposed horizontal force may be low. Therefore, this study carried out the horizontal force review proposed in the seismic design code through dynamic analysis and evaluated the floor response of seismic waves considering buildings and predominant periods of seismic waves.
        4,000원
        14.
        2020.08 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 논문에서는 CR 쉘 요소 해석 기법을 활용하여 모터사이클 후방프레임의 해석을 수행하였다. CR 쉘 요소 해석기법은 적은 요소 수에서 NASTRAN보다 빠르게 수렴하는 결과를 보여주었다. 후방프레임은 수직 방향에 대해 실 주행 조건 시 엔진 RPM과 근접한 고유진동수를 가짐을 보여주었다. 2가지 설계변수를 반영한 세 가지 경우에 대한 해석이 제시되었으며, 보강용 자재는 동일한 중량 변화 내에서 두께 변화에 비해 더 유용한 수단임을 확인할 수 있었다. 본 연구의 구조 해석은 차후 모터사이클 후방프레임의 내구성을 향상하는 설계 개선 연구에 효과적으로 활용될 수 있다.
        4,000원
        15.
        2020.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구는 대학도서관 옥상정원을 회복환경으로서의 치유정원으로 리모델링하기 위한 기초자료를 도출하기 위해 설계요소에 대한 중요도 분석을 실시한 것이다. 연구대상은 국방대학교 도서관 이용자로 한정하였다. 설문지는 배포 후 회수하는 방법으로 수집하였으며, 설문기간은 2019년 7월 10일부터 9월 18일까지였다. 수집된 자료 중 하자가 없는 77매의 설문지를 분석한 연구결과는 다음과 같다. 도서관 주 이용목적은 자료수집이 많았고, 대부분 주 1회 이상 방문하였으며, 머무는 시간은 2시간 이내였다. 휴식패턴은 거의 쉬지 않는 경우가 절반 이상이었고, 나머지 인원도 대부분 20분 이내로 휴식을 취하였다. 옥내 휴게활동은 주로 단순휴식, 커피/차 마시기였고, 공간선택 이유는 접근성, 쾌적성 및 기능성이었다. 옥외 휴게활동은 주로 단순휴식이며, 공간선택은 접근성, 경관성 및 휴식기능성이 주요 요인이었다. 회복환경으로서 옥상정원은 입지특성상 직접이용자 집단과 실내에서의 시각적 감상자 집단 등 두 집단을 고려한 공간설계가 필요하다. 치유정원의 직접이용 시 원하는 활동은 단순휴식, 정원감상 및 산책이 주를 이루었다. 치유정원의 주요 네가지 기능에 대한 빈도분석결과, 자연감상을 통한 기분전환을 위한 공간과 대화/소통을 위한 공간이 대부분을 차지하였다. 공간별 설계요소의 중요도는 대화/소통 공간에는 그늘막이나 퍼골라, 대화하기 편리한 벤치의 중요도가 높았으며, 프라이버시 확보 공간은 개인만을 위한 벤치가, 자연감상 공간은 녹음수, 상록수 및 화목이, 운동/산책공간은 산책로가 상대적으로 중요하게 평가되었다.
        4,300원
        16.
        2019.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The purpose of this study is to provide the priority of the front-loading factors in the design stage of the automotive parts development process in order to efficiently and effectively respond to the demands of the car maker (customer). Front-loading is defined as a strategy in order to improve development performance by shifting the identification and solving of design problems to earlier phases of a product development process. Two approaches of the front-loading are project-to-project knowledge transfer and rapid problem solving. For the study, a survey was conducted on the R&D department in the automobile parts company and analyzed by AHP (Analytic Hierarchy Process) method. The result of the survey shows the cost savings is the highest weight in terms of front-loading effect and in terms of front-loading factors, it gives priorities as “the problems of past project” first, “Design Review” second, “CAE (Computer Aided Engineering)” third, “FMEA (Failure Mode and Effects Analysis)” fourth, “benchmarking” and SR (Sourcing of Requirements). The results of the study will be helpful to provide practical value for improving product design of component development.
        4,000원
        18.
        2019.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The design and analysis of the rigidity and deformation of the vehicle body are basically performed in two forms. First, the relative response of components separated from a parent system or connected as a model of a subsystem is examined. Second, the entire model is used to consider the absolute response of the components to the externally transmitted vehicle service load, which is defined as that of the entire vehicle body system. In this paper, we propose the finite element modeling for the structural design of the car body. First, we will explain the simple finite element modeling of the car body, explain the method of formulating the stiffness of the joint, and finally the shell element. The proposed finite element modeling is proposed. By applying the proposal, it is possible to propose finite element modeling of all medium and large passenger cars less than 3 tons.
        4,000원
        19.
        2018.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        PURPOSES : This paper proposes a design framework for planetary road infrastructure by considering the characteristic environment, natural resource, and loading conditions on the Moon and Mars. METHODS : From the perspective of civil engineering, available literatures such as technical articles, NASA (National Aeronautics and Space Administration) Technology Roadmaps 2015, Strategic Knowledge Gap, and mechanistic-empirical pavement design method are comprehensively reviewed for planetary road construction. The concept of in situ resource utilization (ISRU) is re-interpreted by comparing ISRU on the Earth and Moon with emphasis on the significance of interconnection between resource utilization and infrastructure development. RESULTS : According to the literature reviews, the factors that have significant effect on planetary road pavement design, construction, and maintenance are selected and evaluated. In addition, by considering the interconnection issue, a design framework is suggested that includes the resource issues not only of planetary road pavement but also of construction equipment. Subsequently, the framework is widened to apply for preliminary planetary infrastructure. CONCLUSIONS : Although the proposed preliminary design framework is not conclusive and has to be elaborated, an initial framework to consider interconnection issues and ISRU is suggested for planetary road pavement. The suggested framework will be applied for road pavement design and will be used to evaluate the cost-benefit ratio of alternatives.
        4,200원
        20.
        2018.04 구독 인증기관·개인회원 무료
        Construction of irregular-shaped concrete structures requires a lot of time and money. To reduce the cost and time, the F3D(Free-Form Formwork 3D Printer) technology was adopted in manufacturing EPS(Expanded Polystyrene) formwork for irregular-shaped concrete structure. To design EPS formwork precisely, lateral pressure acting on irregular-shaped formwork and deformation of EPS form liner should be evaluated. However, in current Korean formwork standard, there are no standards for irregular-shaped formwork as it includes a lot of complex variables. For this reason, several researchers developed 3-dimensional finite element analysis model to calculate lateral pressure exerted by fresh concrete. In this study, deformation of irregular-shaped EPS formwork and lateral pressure acting on formwork was examined using finite element analysis model.
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