• Title/Summary/Keyword: In Ground Effect

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Effect of Velocity-Pulse-Like Ground Motions on Seismic Fragility of Bridges (교량의 지진취약도에 대한 속도 펄스를 가진 지반운동의 영향)

  • Yeeun Kim;Sina Kong;Sinith Kung;Jiho Moon;Jong-Keol Song
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.37 no.2
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    • pp.119-131
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    • 2024
  • Pulse-like ground motion can cause greater damage to structures than nonpulse-like ground motion. Currently, much research is being conducted to determine the presence or absence of velocity pulses and to quantify them from seismic-acceleration records. Existing ground motion is divided into far-field (FF) and near-fault ground motion, based on the distance of the measurement point from the fault. Near-fault ground motion is further classified into near-fault pulse-like (NFP) and near-fault nonpulse-like (NFNP) ground motion by quantifying the presence or absence of velocity pulses. For each ground motion group, 40 FF, 40 NFP, and 40 NFNP ground motions are selected; thus, 120 ground motions are used in the seismic analysis to assess the seismic fragility of sample bridges. Probabilistic seismic demand models (PSDMs) are created by evaluating the seismic responses of two types of sample bridges with lead-rubber and elastomeric rubber bearings using three groups of ground motions. Seismic fragility analysis is performed using the PSDM, and from these results, the effect of the presence or absence of seismic velocity pulses on the seismic fragility is evaluated. From the comparison results of the seismic fragility curve, the seismic fragility of NFP ground motion appears to be approximately three to five times greater than that of NFNP ground motion, according to the presence or absence of a velocity pulse of seismic waves. This means that the damage to the bridge is greater in the case of NFP ground motion than that in the case of NFNP ground motion.

Seismic Fragility for 5MW Offshore Wind Turbine using Pushover Analysis (Pushover 해석을 이용한 5MW급 해상풍력터빈의 지진취약도)

  • Lee, Sang-Geun;Kim, Dong-Hyawn;Yoon, Gil-Lim
    • Journal of Ocean Engineering and Technology
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    • v.27 no.4
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    • pp.98-106
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    • 2013
  • Seismic fragility curves for an offshore wind-turbine structure were obtained. The dynamic response of an offshore wind turbine was analyzed by considering the nonlinear behavior of layered soil and the added mass effect due to seawater. A pile-soil interaction effect was considered by using nonlinear p-y, t-z curves. In the analysis, the amplification effect of ground acceleration through layered soil was considered by applying ground motion to each of the soil layers. The vertical variation in ground motion was found by one-dimensional free-field analysis of ground soils. Fragility curves were determined by damage levels in terms of tower stress and nacelle displacements that were found from static pushover analysis of the wind-turbine structure.

The Ground Resistance Reduction Effect of o Conductive Expansion Ground Resistance Reducing Material (도전성 팽창 접지저감재의 접지저항 저감 효과)

  • Kim, Jong-Wook;Kim, Kyung-Chul;Choi, Jong-Kee;Kang, Min-Gyu;Baek, Nam-Woong
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.22 no.2
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    • pp.155-161
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    • 2008
  • The grounding systems provide a low resistance path for fault or normal currents into the earth. The material for reducing ground resistance is buried around the grounding electrode to increase its effective size of the electrode and thus to obtain low ground resistance. Increasing the contacting area with the grounding electrode is effective for lowering the ground resistance in soils. Using this idea the conductive expansion ground resistance reducing material was developed. In this paper experimental data has shown that the ground resistance reduction method using proposed material is superior to using a typically available commercial ground resistance reducing material.

Boundary Layer Separation Control with Fairing at the Junction of 3D Wings Under Ground Effect (페어링을 이용한 지면효과를 받는 3차원 날개 접합부의 경계층 박리 제어)

  • Cho Ji. H.;Moon Young. J.
    • 한국전산유체공학회:학술대회논문집
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    • 2005.04a
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    • pp.57-64
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    • 2005
  • Aerodynamic characteristics of three-dimensional wings in ground effect for Aero-levitation Electric Vehicle(AEV) are numerically investigated for various fairing shapes at the junctions of 3D Wings. Numerical results show that a sizeable three-dimensional comer flow separation occurs with formation of an arch vortex at the junction of main and vertical wings, and also that this is predicted the main cause of the high lift-to-drag(L/D) reduction rate of the main wing. To avoid the comer flow separation, the main idea of this study is to reduce the cross section gradient of the comer flow tube near the trailing edge for various fairing shapes. Improvements on L/D ratios of the wings are pursued by breaking the coherence of superimposed adverse pressure gradients at the wing junction when the cross section gradient is changed slowly at the trailing edge.

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Influence of ground motion spatial variations and local soil conditions on the seismic responses of buried segmented pipelines

  • Bi, Kaiming;Hao, Hong
    • Structural Engineering and Mechanics
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    • v.44 no.5
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    • pp.663-680
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    • 2012
  • Previous major earthquakes revealed that most damage of the buried segmented pipelines occurs at the joints of the pipelines. It has been proven that the differential motions between the pipe segments are one of the primary reasons that results in the damage (Zerva et al. 1986, O'Roueke and Liu 1999). This paper studies the combined influences of ground motion spatial variations and local soil conditions on the seismic responses of buried segmented pipelines. The heterogeneous soil deposits surrounding the pipelines are assumed resting on an elastic half-space (base rock). The spatially varying base rock motions are modelled by the filtered Tajimi-Kanai power spectral density function and an empirical coherency loss function. Local site amplification effect is derived based on the one-dimensional wave propagation theory by assuming the base rock motions consist of out-of-plane SH wave or combined in-plane P and SV waves propagating into the site with an assumed incident angle. The differential axial and lateral displacements between the pipeline segments are stochastically formulated in the frequency domain. The influences of ground motion spatial variations, local soil conditions, wave incident angle and stiffness of the joint are investigated in detail. Numerical results show that ground motion spatial variations and local soil conditions can significantly influence the differential displacements between the pipeline segments.

The supporting effect of pipe wing rib designed to achieve early contact between ground and steel arch tunnel support

  • Kinoshita Yasunori;Shinji Masato;Nakagawa Koji;Yamamoto Minoru
    • 한국지구물리탐사학회:학술대회논문집
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    • 2003.11a
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    • pp.103-108
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    • 2003
  • In the construction of mountain tunnels, reaction forces of the legs of steel arch supports against the ground are often expected to support the ground being excavated. In these cases, a stress concentration occurs in the ground directly under the support legs. If the bearing capacity of the ground is insufficient or displacement is not effectively constrained, the local failure of the ground under the support legs or settlement of the tunnel supports due to large deformation could result. It is therefore necessary to reinforce the support legs to reduce settlement. As a means of reducing settlement, wing-ribbed steel arch supports are well used. In this study, with the aim of finding a way to quickly reduce the settlement of steel arch support legs, effectiveness of a new type of wing ribs to reinforce steel arch supports was investigated through laboratory testing.

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Antioxidative Effect of Kimchi on the Lipid Oxidation of Cooked Meat (우육지방질의 산화에 미치는 김치의 항산화작용에 관한 연구)

  • 최홍식;이영옥
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.6
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    • pp.1005-1009
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    • 1995
  • This study was carried out to investigate the antioxidative effect of kimchi on the lipid oxidation of cooked meat in model systems. Four model systems of cooked ground meat(CGM). CGM-water(W), CGM-brine(B) and CGM-kimchi(K) were prepared and their oxidation behaviours were evaluated during the storage at 4$^{\circ}C$ for 5 weeks. Thiobarbituric acid values and peroxide values of the systems of CGM, CGM-B and CGM-W increased significantly with the storage time, however, those values of CGM-K were hardly changed during the time of 5 weeks storage. Antioxidative effect of CGM-K increased with the addition level of kimchi in system. And also in the model systems which were prepared with cooked ground meat and kimchi whose fermentation period is different, the antioxidative effect of well ripened and properly fermented kimchi was higher than that of unripened kimchi during the lipid oxidation process of model systems. These results suggested that kimchi especially the properly femented kimchi in the systems plays an important roles as an antioxidative activity on the lipid oxidation of cooked ground meat.

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Experimental and Numerical Study on Hydro-thermal Behaviour of Artificial Freezing System with Water Flow (물의 흐름을 고려한 인공동결 시스템의 열-수리 거동 연구)

  • Jin, Hyunwoo;Lee, Jangguen;Ryu, Byung Hyun;Go, Gyu-Hyun
    • Journal of the Korean Geotechnical Society
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    • v.36 no.12
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    • pp.17-25
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    • 2020
  • The artificial ground freezing method is a ground amelioration technology that does not have a permanent effect on the ground. One of the key factors that determine the efficiency and design criteria of the artificial ground freezing is the groundwater flow. Therefore, in order to accurately evaluate the behavior of the artificial ground freezing, studies on the effect of water flow on the formation of ice walls must be preceded. In this paper, experimental and numerical analyses were conducted using only pure water to maximize the effect of water flow on the formation of ice walls. A hydro-thermal coupled model for freezing behavior was proposed and the accuracy of the model was verified. Through the numerical and experimental studies, the flow rate dominates not only the formation time but also the shape of the ice wall. In addition, this study proposes a method to indirectly predict the ice wall formation time, which is expected to be highly useful for a practical application where it is difficult to visually identify ice walls.

Synergistic Effect of Citric Acid on Antioxidant Property of Red Pepper (고추의 산화성(酸化性)에 대한 Citric Acid의 상승효과)

  • Yang, Ki-Sun;Yu, Ju-Hyun;Hwang, Juk-In;Yang, Ryung
    • Korean Journal of Food Science and Technology
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    • v.6 no.4
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    • pp.193-198
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    • 1974
  • The antioxidant activity of ground red pepper, ethyl alcohol extracts of ground red pepper peel and alcohol extracts plus organic acid was studied by using edible soybean oil as a substrate. All the substrates were stored in a dark place at $45.0{\pm}0.5^{\circ}C$ respectively. The results of the study were as follow: 1. Ground red pepper, black pepper and cassia exhibited slight antioxidant activity and there was no significant difference in antioxidant activity among them. 2. Although both ground red pepper peel and red pepper seed showed antioxidant activity, ground red pepper peel exhibited greater antioxidant activity than ground red pepper peel did. 3. Ethyl alcohol extracts of red pepper peel showed strong antioxidant activity, but the residue did not show the antioxidant activity. 4. The antioxidant activity of the ethyl alcohol extracts of red pepper peel increased in direct proportion to the concentration of the extracts. 5. In connection with the synergistic effect of organic acid to the ethyl alcohol extracts of red pepper peel, citric acid showed a very strong synergistic effect on the antioxidant activity of red pepper, while ascorbic acid showed a weak effect. On the other hand, phosphoric acid showed an accelerating effect on the oxidation of oils. 6. The maximum antioxidant activity of the ethyl alcohol of ground red pepper peel was observed at the citric acid concentration of 0.04%, when tested at various concentration of citric acid.

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Stability Analysis of Slope in Unsaturated Soil Based on the Characteristics of Rainfall (강우특성을 고려한 불포화토 사면의 안정성 해석)

  • Lee, Gwan-Young;Lee, Kang-Il;Kim, Chan-Kee;Chang, Yong-Chai
    • Proceedings of the Korean Geotechical Society Conference
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    • 2005.10a
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    • pp.663-668
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    • 2005
  • The present study proposed to examine the appropriateness of the ground water level condition that had a significant effect on the stability of the slopes and, for this purpose, analyzed the rise of ground water level during the rainy season by applying the average daily rainfall of Seoul for the last 30 years. The result showed that the rise of ground water level was 6.0$\sim$41.0% of the slope height, which suggests that the currently applied condition of ground water level is somewhat overestimated. In addition, the result of interpreting the stability of slopes during the rainy season, slopes were unstable in all conditions when the ground water level was at the ground surface and base failure occurred. This suggests the importance of ground water level condition in stability analysis.

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