• 제목/요약/키워드: Normal Loading

검색결과 602건 처리시간 0.028초

중력 및 자력자료 분석에 의한 울릉분지 북동부 독도 및 주변 해산들의 형성 연구 (The Study of Formation for Dokdo Seamounts at the Northeastern Part of the Ulleung Basin Using Gravity and Magnetic Data)

  • 김창환;박찬홍;고영탁;정의영;곽준영;유상훈;민경덕
    • 자원환경지질
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    • 제40권2호
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    • pp.153-170
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    • 2007
  • 중력자료 및 자력자료를 이용하여 독도해산들의 지각평형 탄성판모델 및 VGP(Virtual Geomagnetic Pole)를 분석하여 해산들의 형성시기와 형성환경을 연구하였다. 후리에어중력이상은 독도와 이사부해산 최고치 사이에 약 50 mGal의 차이를 보이는데 이 두 화산체는 규모면에서 비슷하지만 후리에어중력이상에서 차이가 나는 것은 보상정도의 차이에 기인한다. 탄성판모델의 적용 결과는 해산 하부 지각의 강도(탄성두께)가 이사부해산에서 독도로 갈수록 강해짐(두꺼워짐)을 지시한다. 즉, 이사부해산이 생성될 당시의 해산 하부 지각의 연령이 가장 젊었고 독도가 생성될 때 하부 지각이 가장 오래 되었다는 것을 나타낸다. 자기이상은 독도해산들을 중심으로 복잡하게 나타난다. 고지자기 특성을 연구하기 위하여 자기 이상을 1500m 상향연속한 후 최소자승자화법 및 반놈자화법을 함께 이용하여 각 독도해산들의 VGP를 구하였다. 기존 독도암석의 연대측정, 탄성판 모델 및 VGP결과를 지자기 연대표와 비교하여 보면 울릉분지의 열개 종료 후에 이사부해산이 정자기극 시대에 가장 먼저 생성되었고 독도은 가장 후기에 생성되었으며 정자기극 시대에 첫 번째 대규모 분출이 있었고 그 후 역자기극 시대에 두 번째 대규모의 분출로 인하여 이루어졌을 것으로 생각된다. 심흥택 해산은 독도와 이사부해산의 생성시기 사이의 정자기극 시대에 형성되었을 것으로 사료된다. 이 해산들의 생성 시기는 동해 생성 후 압축응력이 작용하던 시기와 일치하며 이 압축력 시기의 화산활동에 의해 해산들이 생성되었을 가능성이 높은 것으로 판단된다.

소성지수에 따른 점성토의 압밀특성에 관한 연구 (A study on the Consolidation Characteristic of Cohesive Soil by Plastic Index)

  • 김찬기;조원범;이승련;최우정
    • 한국지반공학회논문집
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    • 제24권8호
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    • pp.99-109
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    • 2008
  • 본 연구는 군산 새만금지역의 점성토를 소성지수 15%, 30%, 45%, 60%가 되도록 벤초나이트를 첨가한 인공의 시료를 이용하여 하중재하기간을 1일, 2일, 4일, 8일 등으로 달리한 표준압밀시험을 실시하였다. 그리고 인천, 광양, 울산지역의 불교란 시료에 대한 압밀시험도 같이 수행하여 소성지수와 압밀하중재하기간이 2차 압밀에 어떤 영향이 있는지를 밝혔다. 그리고 각 소성지수에 따른 하중과 침하특성, 압밀계수특성, 압축지수 및 2차 압축지수특성, 간극수압특성을 밝히고 압축지수, 압밀계수, 2차 압축지수 등을 소성지수, 하중에 관하여 정식화하였다. 또한 정식화한 식을 이용한 1차 및 2차 압밀침하량 예측결과와 탄소성 구성모델인 수정 Cam-Clay모델과 탄 점소성 모델인 Sekiguchi모델을 이용한 예측결과를 모형시험 결과와 같이 비교하였다. 그 결과, 2차 압밀특성을 고려한 Sekiguchi모델이 매우 정도 높게 결과를 예측할 수 있음을 알 수 있었다.

A modified RBSM for simulating the failure process of RC structures

  • Zhao, Chao;Zhong, Xingu;Liu, Bo;Shu, Xiaojuan;Shen, Mingyan
    • Computers and Concrete
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    • 제21권2호
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    • pp.219-229
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    • 2018
  • In this paper, a modified rigid body spring model (RBSM) is proposed and used to analyze the damage and failure process of reinforced concrete (RC) structures. In the proposed model, the concrete is represented by an assembly of rigid blocks connected with a uniform distribution of normal and tangential springs to simulate the macroscopic mechanical behavior of concrete. Steel bars are evenly dispersed into rigid blocks as a kind of homogeneous axial material, and an additional uniform distribution of axial and dowel springs is defined to consider the axial stiffness and dowel action of steel bars. Perfect bond between the concrete and steel bars is assumed, and tension stiffening effect of steel bars is modeled by adjusting the constitutive relationship for the tensile reinforcement. Adjacent blocks are allowed to separate at the contact interface, which makes it convenient and easy to simulate the cracking process of concrete. The failure of the springs is determined by the Mohr-Coulomb type criterion with the tension and compression caps. The effectiveness of the proposed method is confirmed by elastic analyses of a cantilever beam under different loading conditions and failure analyses of a RC beam under two-point loading.

인솔 차이에 따른 런닝화의 운동역학적 비교 (The Biomechanical Comparison of Running Shoes According to the Difference of Insole)

  • 진영완;신성훈
    • 한국운동역학회지
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    • 제17권2호
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    • pp.51-59
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    • 2007
  • These studies show that I applied to functional insole (a specific A company) for minimizing shocks and sprain people's ankle arising from running. How to an effect on human body which studied a kinematics and kinetics from 10 college students during experiments. This study imposes several conditions by barefoot, normal running shoes and put functional insole shoes ran under average $2.0{\pm}0.24\;m$/sec by motion analysis and ground reaction force that used to specific A company. First of all, motion analysis was caused by achilles tendon angle, angle of the lower leg, angle of the knee, initial sole angle and barefoot angle. The result of comparative analysis can be summarized as below. Motion analysis showed that statically approximates other results from achilles tendon angle (p<.01), initial ankle angle(p<.05), initial sole angle(p<.001) and barefoot angle(p<.001). Ground reaction force also showed that statically approximates other results from impact peak timing (p<.001), Maximum loading rate(p<.001), Maximum loading rate timing (p<.001) and impulse of first 20 percent (p<.001). Above experiment values known that there was statically difference between Motion analysis and Ground reaction force under absorbing of the functional insole shoes which was not have an effect on our body for kinetics and kinematics.

Cavitation Characteristics of a Pump-turbine Model by CFD Analysis

  • Singh, Patrick Mark;Chen, Chengcheng;Chen, Zhenmu;Choi, Young-Do
    • 한국유체기계학회 논문집
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    • 제18권4호
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    • pp.49-55
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    • 2015
  • The pumped storage plant operates with quick change of the discharge as well as quick changes between pump mode and turbine mode. This study focuses on the cavitation analysis of a pump-turbine model because in turbo-machinery, cavitation can reduce the performance and shorten service life. The pump-turbine model system consists of 7 blades, 20 stay vanes (including tongue) and 20 guide vanes. This study adopts the Rayleigh-Plesset model as a cavitation model, which illustrates cavitation by using the air volume fraction method. The pump mode and turbine mode at the operating condition of partial loading, normal and excessive loading are analyzed to investigate the cavitation performance of the pump-turbine. It was observed that this pump-turbine design showed very good cavitation characteristics with no cavitation bubbles in all operating conditions. Overall value of air volume fraction of both mode at different operating condition are lower than 1, which confirms low possibility of cavitation occurrence at current situation.

고평균하중을 고려한 구조응력 기반의 피로균열성장 모델에 관한 연구 (A Study on Fatigue Crack Growth Model Considering High Mean Loading Effects Based on Structural Stress)

  • 김종성;김철;진태은
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.220-225
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    • 2004
  • The mesh-insensitive structural stress procedure by Dong is modified to apply to the welded joints with local thickness variation and inignorable shear/normal stresses along local discontinuity surface. In order to make use of the structural stress based K solution for fatigue correlation of welded joints, a proper crack growth model needs to be developed. There exist some significant discrepancies in inferring the slope or crack growth exponent in the conventional Paris law regime. Two-stage crack growth model was not considered since its applications are focused upon the fatigue behavior in welded joints in which the load ratio effects are considered negligible. In this paper, a two-stage crack growth law considering high mean loading is proposed and proven to be effective in unifying the so-called anomalous short crack growth data.

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회전 핀의 종동 하중에 따른 박판 스프링의 대변형에 대한 연구 (A Study on the Large Deflection of Flat Spring Subjected to Follower Load by a Rotating Pin)

  • 정일섭
    • 대한기계학회논문집A
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    • 제28권9호
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    • pp.1352-1358
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    • 2004
  • The mechanical spring is one of widely used machine elements. Among various kinds, flat-type spring loaded by a rotating pin was studied. A flat spring was simplified to a cantilever beam, and numerical analysis was attempted. Since the loading pin rotates about a separate axis from the fixed spring or vice versa, the location, direction, and magnitude of the contact force including normal contact and friction loads vary accordingly. Meanwhile, the spring is deformed substantially as the relative motion progresses. Therefore, this problem needs to be formulated taking the follower loading characteristics and geometrical non-linearity into account. Derived nonlinear differential equation was solved to yield the spring deflection, contact force and the torque to rotate the pin, and the result was compared with a finite element solution. Also, the influences of principal design parameters were studied. The proposed methodology is expected to be useful for the design of pin-loaded flat spring and the prevention of mechanical failures in the form of yielding or fatigue failure of spring or severe wear of the components.

자라 심장 박출량과 $K^{+}$ 농도 (Effects of Potassium Ion Concentrations on the Cardiac Performances in the Turtle Heart Amyda japonica)

  • 김전;남기용
    • The Korean Journal of Physiology
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    • 제14권1호
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    • pp.31-39
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    • 1980
  • Changes in cardiac performances were observed under variations of the arterial and/or venous pressures with K-loading or K-depletion in turtle heart. Hearts were perfused with turtle Ringer-Locke's solutions containing various levels of potassium ion concentration. When venous pressure increased from 4 to 12 cm $H_2O$, cardiac output increased from $6.2{\pm}0.68$ to $15.7{\pm}0.75\;ml/min$, concomittantly. On the contrary, cardiac output decreased during the elevation of arterial pressure. Stroke work increased more prominently during the arterial pressure elevation than during the elevation of venous pressure. During K-depletion$(1{\sim}2mEq/L)$, cardiac output increased to two times that of normal K-concentration$(3{\sim}6\;mEq/L)$ group. Heart rate increased also, but less markedly. In K-loaded$(7{\sim}8\;mEq/L)$ group, both the cardiac output and heart rate decreased but stroke volume rather increased, because heart rate decrement was disproportionate to that of cardiac output. We concluded that in perfused turtle heart, cardiac output variation was more sensitive to K_depletion whereas heart rate to K-loading.

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Time-dependent analysis of slender, tapered reinforced concrete columns

  • de Macedo Wahrhaftig, Alexandre
    • Steel and Composite Structures
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    • 제36권2호
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    • pp.229-247
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    • 2020
  • This study analyzed stresses in concrete and its reinforcement, computing the additional loading transferred by concrete creep. The loading varied from zero, structure exclusively under its self-weight, up to the critical buckling load. The studied structure was a real, tapered, reinforced concrete pole. As concrete is a composite material, homogenizing techniques were used in the calculations. Due to the static indetermination for determining the normal forces acting on concrete and reinforcement, equations that considered the balance of forces and compatibility of displacement on cross-sections were employed. In the mathematical solution used to define the critical buckling load, all the elements of the structural dynamics present in the system were considered, including the column self-weight. The structural imperfections were linearized using the geometric stiffness, the proprieties of the concrete were considered according to the guidelines of the American Concrete Institute (ACI 209R), and the ground was modeled as a set of distributed springs along the foundation length. Critical buckling loads were computed at different time intervals after the structure was loaded. Finite element method results were also obtained for comparison. For an interval of 5000 days, the modulus of elasticity and critical buckling load reduced by 36% and 27%, respectively, compared to an interval of zero days. During this time interval, stress on the reinforcement steel reached within 5% of the steel yield strength. The computed strains in that interval stayed below the normative limit.

하이브리드 로켓 추진 시스템의 혼합 연소실 적용에 따른 Trade-off 평가 (Trade-off Evaluation due to Application of Mixing Chamber for Hybrid Rocket-Propulsion System)

  • 김학철;문근환;문희장;김진곤
    • 항공우주시스템공학회지
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    • 제10권3호
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    • pp.23-31
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    • 2016
  • The intermediate mixing chamber is one of various methods for improving the regression rate and combustion efficiency of the hybrid rocket. The mixing chamber with its non-combustible material makes the propulsion performance increase, but it leads to a low fuel-loading density in the combustion chamber; therefore, this performance-related trade-off between the mixing chamber and the low fuel-loading density was studied. In this study, the trade-off was conducted by comparing the intermediate-mixing-chamber case with a w/o-mixing-chamber case. The small hybrid-sounding rocket is designed with internal ballistics for comparing the rocket length to the weight. In addition, an external ballistic analysis was conducted for comparing the performances of the w/- and w/o-mixing-chamber cases. As a result, the intermediate-mixing-chamber case shows that the length and the weight were decreased to 12 % and 8 %, respectively; furthermore, when compared with the normal cases, the estimated altitude result of the w/-mixing-chamber case was increased to approximately 75 m.