• 제목/요약/키워드: Governing equation

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GFRP로 구속된 원형단면 콘크리트 단주의 강도 및 변형 능력 (Strength and Deformation Capacities of Short Concrete Columns with Circular Section Confined by GFRP)

  • 조순호
    • 콘크리트학회논문집
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    • 제19권1호
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    • pp.121-130
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    • 2007
  • 본 연구에서는 FRP(fiber reinforced polymer) 합성재료에 의하여 콘크리트를 구속할 시 예상되는 콘크리트의 강도 및 변형 능력의 향상 효과를 알아보기 위하여 섬유 량 혹은 방향, 단부하중조건에 따른 wrap 혹은 튜브형의 구속형태, 반원형 쉘 및 수직 이음부의 유무에 따른 연속 및 불연속 구속 형태 등을 주요 변수로 한 총 36개의 원형단주 시험체에 대하여 단조가력 실험을 수행하였다. 여러 구속 방법에 따른 FRP의 파단변형률에 대하여서도 주의를 가지고 조사하였다. 구속된 콘크리트의 최대 강도 및 변형률을 산정하기 위하여 기존에 제시된 다양한 배경의 예측 식들에 대하여 검토하였으며, 이들에 의한 예측치와 실험치를 비교, 분석하였다. 구속되지 알은 콘크리트와 비교하여, CW 및 CF형은 매우 큰 강도 및 변형능력의 증가를 나타냈으며, 수직 이음부를 갖는 CP형은 폭발적으로 파괴하였으며, 보다 작은 강도 및 변형능력의 증가가 관측되었다. 대체로, 모든 시험체는 2선 선형관계의 응력-변형률 거동을 나타냈으며, 후반부의 변형경화 정도는 구속매체의 강성에 따라 결정되었다. 모든 시험체에서 관측된 FRP의 파단변형률은 인장시험편으로부터 획득한 극한변형률보다 정도에 따라서는 매우 작았다. 대체로, 기존 예측식들은 본 실험의 최대 강도 및 변형률을 과대평가 하였으며, 변형률 예측은 매우 산란된 분포를 나타냈다. 또한, 본 연구의 실험 결과에 근거하여 구속 콘크리트의 최대 강도 및 변형률을 보다 정확하게 예측할 수 있는 설계 목적의 단순식을 제안하였다. 강도식은 모어-쿨롱 파괴 기준을 사용하여 유도하였으며, 변형률식은 비구속 콘크리트를 주요 영향 요소로 포함하여 실험 결과를 fitting하였다./TEX> = 분광광도법으로 측정한 점토함량(%); $x_2$ = 유기물 함량($g{\cdot}kg^{-1})$)이었으며, 상관계수는 $0.984^{**}$로 두 방법사이에 높은 상관관계가 있는 것으로 조사되었다. 여기서 유도된 회귀방정식을 프로그램화하여 컴퓨터나 분석기기에 입력시 시간과 공간을 절약하고 신속하고 정확하게 점토함량을 분석할 수 있을 것으로 판단된다.119>잠118>잠107>잠117>잠113 순이었고, 웅견층중에서는 잠114>잠108>잠120>잠117>잠118>잠107>잠119>잠119>잠113 순이었다. 자견층 비율에서는 광의의 귀전력이 협의의 귀전력보다 컸고, 웅견층 비율에서는 같았다, 견층 비율에서는 일반조합 능력은 크게 나타났으나, 특정조합 능력과 상반조직 능력은 나타나지 않았다. 자견층 비율에서 교배친의 우성효과는 컸다. 자견층 비율에서는 교배친의 우성효과는 적었다. 자웅견층 비율의 잡종 강세는 적게 나타났다. 환경변이와 상가적 작계는 자웅견층 비율에서는 크게 나타났다. 우성의 방향은 자견층 비율에서는 정의 방향으로 우성 귀전자가 크게 작용하였으며, 자견층 비율에서는 정의 방향으로 우성 귀전자가 부분적으로 작용하였다. 교배친의 자견층 비율의 우성순서는 잠117>잠114>잠108>잠120>잠118>잠119>잠107>잠113 순이었고, 자견층 비율에서는 잠114>잠117>잠108>잠118>잠107>잠119>잠113>잠120의 순이었다.지방산의 조성이 많은 차이를 보였다.{2+}$ 26 및 $Na^+$ 26 mg $L^{-1}$이었다. 양액 재배 후 버려지는 폐양액 중의 무기성분 함량은

주자학과 대순사상의 수양론 비교 연구 (The Comparative Research on the Theory of Self-cultivation in Neo-Confucianism and Daesoon Thought)

  • 이광주
    • 대순사상논총
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    • 제24_2집
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    • pp.231-270
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    • 2015
  • This thesis examined Chu Hsi's self-cultivation theory as the representative theory of cultivation in Confucianism, while juxtaposing it to self-cultivation theory in Daesoon thought, concentrating on its similarity and difference. Neo-Confucianism is a scholarship which has wielded a tremendous influence upon East Asia, while functioning as an official scholarship for long period up to Yuan, Ming, and Ching period, after achieving its synthesis by Chu Hsi. After 13th century, Neo-Confucianism has been a representative academic system in Confucianism, and self-cultivation theory was in its center. It suggested various virtues that classical scholars have to equip to fulfill the sainthood and the politics of royal road. The self-cultivation theory of Chu Hsi was developed upon the basis of the theory 'Li-Qi' and the theory of mind. Here, the practice of Geokyung(morally awakened state with a reverent spirit in every moment) and Gyeokmul-tsiji(reaching into the utmost knowledge through investigation of things) formed a nucleus of Chu Hsi's self-cultivation theory. While Geokyung was to reveal one's true nature through cultivation of mind, Gyeokmul-tsiji was to demonstrate the complete use of mind's essence and function. Chu Hsi's self-cultivation theory attempted to realize the unity of heaven and man, and through cultivating self and governing people, it also tried to achieve its ideal of the society of Great Union(Daedong). Daesoon Thought is originated from Sangjenim who has descended to this world as a human being called Jeungsan. He went on his circuit to rectify the disorder of heaven and earth for 9 years to rectify the Three worlds of heaven, earth and human being which were faced with total annihilation due to its rule of mutual conflict, while creating an earthly paradise. Respecting the will of Sangjenim, Dojunim established the foundation of Do through launching 'Meukeukdo' and setting tenet, creed and object so that the cultivators (Doins) could believe and respect the truth of Sangje's great itineration (Daesoon). Among those, the two components of creed, which are four fundamental principles and the three fundamental attitudes are of great account as precept and cardinal point. Through this means, the cultivators of Daesoonjinrihoe aspire to guard against self-deception through transforming the human spirit, to realize earthly immortality through renewing human beings, and to create an earthly paradise through transforming the world. This thesis attempted to compare and analyze the theory of self-cultivation in Neo-Confucianism and Daesoon Thought in the aspect of ground, method, and object of cultivation. First, as for the ground of cultivation, the doctrines of Chu-tzu and Daesoon thought place the essence of cultivation on 'heaven'. Yet, whereas the former postulates Taekeuk (the Great Ultimate) as a principle as well as the heaven of a natural order, Daesoon thought postulates Sangenim as the heaven of superintendence as well as the heaven of a natural order, signified as its equation of Daesoon with circle, along with the unity of Meukeuk (Endlessness) and Taegeuk (the Great Ultimate). Further, the doctrine of Chu-zhu and Daesoon thought is identical in the point that both thoughts see mind as the subject of cultivation, while trying to restore a pure essence. Nevertheless, whereas Neo-Confucianism intends to give scope to ability of the complete use of mind's essence and function, Daesoon Thought sees mind as the essence which is used by spiritual beings and as an organ that heaven, earth and human being rely upon as the center of the universe. In the aspect of method of cultivation, the doctrine of Chuzhu lays emphasis on the rational factor in that it brightens its 'myung-deoki'(bright inner virtue),' while trying to correspond to the law of heaven on the basis of 'Geokyung' and 'Gyeokmul-tsiji.' On the contrary, Daesoon thought lays much emphasis on faith factor in that it aspires for human perfection based on the restoration of conscience by cultivating Daesoonjinri with sincerity, reverence and faith along with 'quieting the heart-mind', 'quieting the body', 'respecting the God of the Ninth Heaven', and 'observing ritual practice on the basis of the faith in Sangjenim. Yet, both thoughts have similarities in that cultivation of body forms the basis and that they attempt to realize their ideals through cultivation in daily life while taking 'Guarding against self-deception' as the key method of self-cultivation.' However, the principle of Chu-zhu can be said to be a voluntary and autonomous practice based on scripture of the saint as well as self-reflection. On the other hand, Daesoon thought reveals certain difference in that it combines faith factor with one's self-effort by concentrating on cultivation under the presence of Sangjenim as the object of belief and the spirits of heaven and earth. In the aspect of object of cultivation, both thoughts share similarities in that the saint and the perfected gentleman with a moral virtue as an ideal image of men in both thoughts attempt to realize each of their 'myung-deok' in human nature as a heavenly mandate while respecting morality. Further, they also share similarity in the point that the desirable characters in both thoughts want to participate in harmonious creation and nurturance. Yet, the perfected gentleman with a moral virtue is also characterized by its aim for a new heaven and earth where there is no mutual conflict but mutual beneficence, by promoting the moral influence and virtue of Sangjenim over one's own virtue, while practising the mutual beneficence of all life through harmonious union of divine beings and human beings.

공동이 있는 수직 분사 초음속 연소기 내의 불안정 연소유동 해석 (Numerical Analysis of Unstable Combustion Flows in Normal Injection Supersonic Combustor with a Cavity)

  • Jeong-Yeol Choi;Vigor Yang
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2003년도 제20회 춘계학술대회 논문집
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    • pp.91-93
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    • 2003
  • A comprehensive numerical study is carried out to investigate for the understanding of the flow evolution and flame development in a supersonic combustor with normal injection of ncumally injecting hydrogen in airsupersonic flows. The formulation treats the complete conservation equations of mass, momentum, energy, and species concentration for a multi-component chemically reacting system. For the numerical simulation of supersonic combustion, multi-species Navier-Stokes equations and detailed chemistry of H2-Air is considered. It also accommodates a finite-rate chemical kinetics mechanism of hydrogen-air combustion GRI-Mech. 2.11[1], which consists of nine species and twenty-five reaction steps. Turbulence closure is achieved by means of a k-two-equation model (2). The governing equations are spatially discretized using a finite-volume approach, and temporally integrated by means of a second-order accurate implicit scheme (3-5).The supersonic combustor consists of a flat channel of 10 cm height and a fuel-injection slit of 0.1 cm width located at 10 cm downstream of the inlet. A cavity of 5 cm height and 20 cm width is installed at 15 cm downstream of the injection slit. A total of 936160 grids are used for the main-combustor flow passage, and 159161 grids for the cavity. The grids are clustered in the flow direction near the fuel injector and cavity, as well as in the vertical direction near the bottom wall. The no-slip and adiabatic conditions are assumed throughout the entire wall boundary. As a specific example, the inflow Mach number is assumed to be 3, and the temperature and pressure are 600 K and 0.1 MPa, respectively. Gaseous hydrogen at a temperature of 151.5 K is injected normal to the wall from a choked injector.A series of calculations were carried out by varying the fuel injection pressure from 0.5 to 1.5MPa. This amounts to changing the fuel mass flow rate or the overall equivalence ratio for different operating regimes. Figure 1 shows the instantaneous temperature fields in the supersonic combustor at four different conditions. The dark blue region represents the hot burned gases. At the fuel injection pressure of 0.5 MPa, the flame is stably anchored, but the flow field exhibits a high-amplitude oscillation. At the fuel injection pressure of 1.0 MPa, the Mach reflection occurs ahead of the injector. The interaction between the incoming air and the injection flow becomes much more complex, and the fuel/air mixing is strongly enhanced. The Mach reflection oscillates and results in a strong fluctuation in the combustor wall pressure. At the fuel injection pressure of 1.5MPa, the flow inside the combustor becomes nearly choked and the Mach reflection is displaced forward. The leading shock wave moves slowly toward the inlet, and eventually causes the combustor-upstart due to the thermal choking. The cavity appears to play a secondary role in driving the flow unsteadiness, in spite of its influence on the fuel/air mixing and flame evolution. Further investigation is necessary on this issue. The present study features detailed resolution of the flow and flame dynamics in the combustor, which was not typically available in most of the previous works. In particular, the oscillatory flow characteristics are captured at a scale sufficient to identify the underlying physical mechanisms. Much of the flow unsteadiness is not related to the cavity, but rather to the intrinsic unsteadiness in the flowfield, as also shown experimentally by Ben-Yakar et al. [6], The interactions between the unsteady flow and flame evolution may cause a large excursion of flow oscillation. The work appears to be the first of its kind in the numerical study of combustion oscillations in a supersonic combustor, although a similar phenomenon was previously reported experimentally. A more comprehensive discussion will be given in the final paper presented at the colloquium.

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제주 거문오름 용암동굴계에 영향을 미치는 발파진동특성에 대한 연구 (A Study on the Blasting Vibration Characteristics of Geomunoreum Lava Tubes System, Jeju Island)

  • 송재용;이근춘;안웅산;임현묵;문성우;서용석
    • 지질공학
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    • 제31권1호
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    • pp.103-118
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    • 2021
  • 본 연구는 제주도 거문오름동굴계 주변 지역을 개발하는 과정에서 발생되는 발파진동이 용암동굴에 미치는 영향에 대해 분석하고, 용암동굴의 효율적인 관리보존 대책을 마련하기 위해 수행되었다. 이를 위해 연구지역에서 11개의 시추공을 천공하고, 공내 지발당 장약량을 0.5 kg에서 최대 10 kg까지 변화시켜가며 현장 발파진동시험을 수행하였다. 진동속도와 진동레벨의 상관관계를 분석하여 진동규제 기준을 만족하는 진동속도를 산정한 결과, 주간 허용 진동레벨을 만족하는 진동속도는 0.276 cm/sec 이하로 평가되었다. 시험결과를 토대로 진동속도 추정식을 도출하였으며, 95% 신뢰구간에 해당하는 입지상수(k, n)에 의한 환산거리식을 통해 도출된 k 값은 자승근식에서 130.04, 삼승근식에서 199.71이며, n 값은 자승근식에서 -1.717, 삼승근식에서 -1.711인 것으로 나타났다. 진동속도 추정식을 바탕으로 진동속도에 부합하는 지발당 장약량을 평가한 결과, 일반적인 문화재 진동기준치인 진동속도 0.2 kine과 진동원과의 거리 20~100 m를 적용할 때 거리와 장약량에 따른 진동속도 추정식에서의 지발당 장약량은 0.57~7.42 kg/delay, 자승근식에서 0.21~5.29 kg/delay, 삼승근식에서 0.04~5.51 kg/delay로 나타났다. 또한, 본 연구에서 도출된 삼승근식과 선행 연구의 결과를 종합하여 0.2 kine 기준에 부합하는 상관관계식을 각각 도출하였다. 관계식을 이용하여 진동속도 0.2 kine을 만족하는 거리에 따른 허용 지발당 장약량을 산정한 결과, 50 m에서 1.07 kg/delay, 100 m에서 5.13 kg/delay, 200 m에서 22.26 kg/delay로 평가되었다. 본 연구를 통해 산출된 진동속도별 상관관계식은 거문오름용암동굴계 주변 지반의 지발당 장약량 산정 근거로 활용이 가능할 것으로 판단된다.