• Title/Summary/Keyword: 우주구조론

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A Consideration on Relationship of Buddhist Cosmology and Temple Structure (불교우주론(佛敎宇宙論)과 사원구조(寺院構造)의 관계성 고찰)

  • Youm, Jung-Seop
    • Journal of architectural history
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    • v.17 no.1
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    • pp.65-84
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    • 2008
  • It is generally known that the temple structure in Korea was formalized by the ceremonial principle based on the Buddhist cosmology. But, there have been no concrete studies on how far the two have relationship with each other and what significance it implies in it. In other words, even though the temple structure reflects the Sumeru Mount cosmology which is the Buddhist cosmology, there is still uncertain aspects in the relationship between them. This research is a more concrete approach on what kind of corelation the Sumeru Mount cosmology has with the Korean temple structure. For this, the levels of related documents on the Buddhist cosmology and the Sumeru Mount cosmology have been arranged first. Then, on this basis, it is searched with what symbolism the cosmology has been accepted in the temple structure. The temple is a sacred space that holds Buddha and a profane space which the sattva (ordinary people) can approach at the same time. The site of the temple is also a land that is connected to the residence of sattva and a blissful area of prayer that they can be born again through Buddha at the same time. Thus, the double characteristics of sanctity and profanity are finally inter-connected with each other in the view point of Jinsokburi(Truth and Worldliness are not different), and the temple structure reflects this significance through the symbolism very well. Therefore, the correct recognition on the temple structure can be said as an important aspect to understand the purpose of Buddhism.

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Lithospheric Plate Motion Model: Development and Current Status (지각판 운동 모델의 변천과 현황)

  • Sung-Ho Na;Jungho Cho
    • Journal of the Korean earth science society
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    • v.43 no.6
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    • pp.661-679
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    • 2022
  • Plate tectonics, with the continental drift theory and later strongly supported by the sea-floor spreading theory with evidence of paleo-geomagnetic fields, ocean floor sediments, successfully explained the slow but continuous movements of rigid lithospheres in geological time. Initially, plate motions were described as relative movements between adjacent plates, mainly based on paleo-geomagnetic reversal data. The advent of space geodetic techniques in the 1980s enabled direct measurements of plate velocities and assessment of deformations within certain regions. In this review, early relative plate motion models are briefly summarized, the no-net-rotation frame theory and corresponding models are explained, and the characteristics of the most recent models that incorporate intraplate deformation are described. Additionally, the plate motion section of the International Terrestrial Reference Frame is introduced, and a few recent case studies of local plate motion are briefly described; for example, in South America, Europe, Antarctica, and Turkey. Finally, studies of plate motion in northeastern Asia focusing on the Korean Peninsula are introduced.

Design and Analysis of Structure for SpaceEye-1 (SpaceEye-1 위성의 구조체 설계 및 해석)

  • Jeon, Jae-Sung;Jeong, Sumin;Choi, Woong;Kang, Myungseok;Jeong, Yunhwang
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.43 no.3
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    • pp.257-264
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    • 2015
  • The structure of SpaceEye-1 developed by Satrec Initiative is designed to carry out various earth observation missions in harsh launch and orbit environments. This paper describes methodology of the structure design and analysis performed during the SpaceEye-1 development. The SpaceEye-1 structure is designed not only to endure the static/dynamic loads but also to protect a main payload and all other components under the launch environments. The structural design requirements were derived from the requirements of the launch vehicle, payload, and other subsystems from the initial development phase. Three-dimensional modeling process was used to verify geometric compatibility of the structure with the other subsystems, and finite element analysis was used to confirm whether the designed structure satisfied all the mechanical requirements derived from the launch vehicle and payload.

High-efficiency propeller development for Multicopter type UAV (멀티콥터형 무인기용 고효율 프로펠러 개발)

  • Wie, Seong-Yong;Kang, Hee Jung;Kim, Taejoo;Kee, Young-Jung;Song, Jaerim
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.45 no.7
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    • pp.581-593
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    • 2017
  • In order to develop high efficiency propeller for multicopter type UAV, we designed, analyzed and tested aerodynamic and structural dynamics. For the design of the high efficiency propeller, the optimum design method was applied for the determination of the airfoil and the three-dimensional planform is designed to reduce induced power of the propeller. The flight suitability of the derived shape was determined through structural design and analysis. The rotation test was performed to confirm the performance of the analytically designed shape. In this paper, we propose a procedural propeller design methodology using these design analysis test methods.

A Methodology to Determine Composite Material Allowables and Design Values Using Building Block Approach (빌딩블록 접근법을 이용한 복합재 재료 허용치 및 설계치 설정 방법)

  • Kim, Sung Joon;Lee, Seung-gyu;Hwang, In-hee
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.50 no.6
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    • pp.377-384
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    • 2022
  • In the design of composite aircraft structures, it is very important to set material allowables and design values, which take into account certification. And when determining the material allowable and design value of composite structures, the static strength, damage tolerance requirements, and environmental effects should be considered. The building block approach has been applied to the civil and military aviation industry for a long time and provides the principal certification methodology. This current certification methodology is based on extensive testing including coupon, element, sub-component, and full scale test. In this paper, some examples of composite allowable tests have been presented and the fundamental background and application methods of the building block approach have been presented.

Current Industrial and Technological Trends in Satellite Simulator (위성시뮬레이터 산업기술동향)

  • Lee, Hoon-Hee;Park, Young-Woong;Park, Keun-Joo;Kim, Dae-Kwan;Lee, Sun-Ho;Yong, Ki-Lyuk
    • Current Industrial and Technological Trends in Aerospace
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    • v.9 no.1
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    • pp.110-118
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    • 2011
  • In this paper, design techniques and technological trends applied on simulator development, which are based on Model Driven Architecture, are described. The methodology, process and modeling support tools for development of simulation software are introduced with both satisfaction of user's requirements and benefit to simulator developers of reducing cost. In addition, contents in ECSS standard for reusability of simulation model and its usages applied on industries are presented and major features of current technological changes with highlights of key-word are discussed.

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A Case Study of the Implementation of Deployment Switch for Nanosatellites (나노위성 전개스위치 구현 사례 및 고찰)

  • Min Ki Kim
    • Journal of Space Technology and Applications
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    • v.3 no.1
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    • pp.72-85
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    • 2023
  • Most Nanosatellites are launched in nanosatellite deployers. Nanosatellites in the deployer are turned off during launch, and they start boot sequence after deploying at their mission orbit. For this reason, nanosatellites must have deployment switch. Most of the nanosatellite deployment switch has two part, first is electric switch to boot the satellite system and second is mechanical assembly to push the switch. In most cases, electric switches are installed in the satellite main body, and the switch operations are translated via the mechanical assembly. These implementations are mechanically complicated and hard to guarantee the appropriate operation without the problems due to friction between pusher and satellite structure. This paper proposes the another implementation method of deployment switch for nanosatellites by installing the electric switch outside the main body without any kind of mechanical parts.

Corrosion Properties of Cold-rolled Steel Sheet Coated with Al Thin Film by Magnetron Sputtering (마그네트론 스퍼터링으로 알루미늄이 코팅된 냉연강판의 부식 특성)

  • Yang, Ji-Hun;Jeong, Jae-In;Park, Hye-Seon;Jeong, Jae-Hun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2011.05a
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    • pp.37-38
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    • 2011
  • 알루미늄은 높은 내부식성과 우수한 물리적 특성으로 철강 제품의 부식방지를 위한 표면처리와 항공 우주분야 소재로 각광을 받아왔다. 알루미늄을 철강 제품의 부식방지를 위한 표면처리 소재로 사용되는 경우 비교적 두껍게(15 ${\mu}m$ 이상) 코팅된다. 본 연구에서는 얇은 두께(3 ${\mu}m$ 이하)의 알루미늄 박막을 이용하여 높은 내식성을 갖는 코팅 공정을 개발하고자 한다. 물리기상증착으로 코팅되는 대부분의 금속은 주상정 구조를 갖는다. 주상정 구조는 grain boundary에 공극이 존재하고, 이 공극을 통해서 부식을 일으키는 물질이 보호막과 모재의 계면으로 침투하여 모재가 부식을 일으킨다. 스퍼터링 공정을 제어하여 알루미늄 박막의 공극 발생을 억제하여 보호막으로서의 기능을 향상할 수 있는 방법을 제안한다. 알루미늄 코팅을 위해서 magnetron sputtering을 이용하였으며, 기판은 냉연강판을 사용하였다. 냉연강판위에 코팅된 알루미늄 박막을 분석한 결과, 스퍼터링 소스에 역방향 자기장을 인가하여 코팅한 알루미늄 박막이 염수분무 120 시간 후에도 적청이 발생하지 않는 우수한 내식성을 보였다.

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Geological Achievements of the 20th Century and Their Influence on Geological Thinking (20세기에 이룩된 지질과학 업적과 이것이 지질과학 사고방식에 끼친 영향)

  • Chang, Soon-Keun;Lee, Sang-Mook
    • Journal of the Korean earth science society
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    • v.21 no.5
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    • pp.635-646
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    • 2000
  • Geological achievements of the 20th century revolutionized our views about geological understanding and concept. A good example is the concept of continental drift suggested early in the 20th century and later explained in terms of seafloor spreading and plate tectonics. Our understanding of the compositions of materials forming earth has also improved during the20th century. Radio and stable isotopes together with biostratigraphy and sequence stratigraphy allow us to interpret the evolution of sedimentary basins in terms of plate movement and sedimentation processes. The Deep Sea Drilling Project initiated in 1960s and continued as the Ocean Drilling Project in 1980s is one of the most successful international research observations, and new developments in computational techniques have provided a wholly new view about the interior of the earth. Most of the geological features and phenomena observed in deep sea and around continental margins are now explained in terms of global tectonic processes such as superplumes flowing up from the interior of our planet and interacting with such as Rodinia Pannotia and Nena back in the Precambrian time. The space explorations which began in the late 1950s opened up a new path to astrogeology, astrobiology, and astropaleontology. The impact theory rooted in the discovery of iridium and associated phenomena in 1980s revived Cuvier's catastrophism as a possible explanation for the extinctions of biotas found in the geological record of this planet. Due to the geological achievements made in the 20th century, we now have a better understanding of geologic times and processes that were too long to be grasped by human records.

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ON THE FIFTH FORCE AND THE STRUCTURE OF NEUTRON STAR (제 5힘과 중성자성의 구조)

  • 송두종;이해심
    • Journal of Astronomy and Space Sciences
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    • v.11 no.1
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    • pp.115-130
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    • 1994
  • In the framework of Thomas-Fermi equation, we have examined the properties of neutron star by assuming the existence of a new intermediate force which is composition dependent. We have found that the structure, size and mass of neutron star are affected by the strength and range of this new force. In the ultrarelativistic limit, we have also confirmed that Chandraseknar mass, $M_{ch}\simeq(1-\alpha)^{-3/2}{m_{pl}}^3/m^2$ is determined by the constants of classical physical laws, which take part in the selfgravitating processes on neutron star as well as the constant of hypothetical fifth force. In the experimental limits of the fifth force, the changes of size and mass of a neutron star are in the order of strength parameter $\alpha$.

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