• 제목/요약/키워드: stress evolution

검색결과 395건 처리시간 0.032초

한반도 동남부 제3기 어일분지 및 와읍분지의 지구조 운동 (Tectonics of the Tertiary Eoil and Waeup basins in the southeastern part of Korea)

  • 장태우;정재혁;장천중
    • 지질공학
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    • 제17권1호
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    • pp.27-40
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    • 2007
  • 한반도 동남부의 제3기 어일분지와 와읍분지를 대상으로 층서를 검토하고, 단층 이동자료 분석을 통하여 분지의 생성 및 진화와 연관이 있는 지구조사건의 과정을 살펴보고자 하였다. 어일분지와 와읍분지는 거의 동시에 각각 별개로 형성되어 제3기 지층들로 충전된 것으로 판단된다. 어일분지와 와읍분지를 충전하고 있는 제3기 지층의 지층단위 분류와 상호관계가 부분적으로 기존 층서와 달라 새롭게 지층명을 첨삭하였다. 어일분지의 장기층군을 하부로부터 감포역암, 홍덕현무암, 노동리역암, 연당현무암으로 분류하였으며, 와읍분지의 범곡리층군을 와읍리응회암, 안동리역암, 용동리응회암, 호암리화산각력암으로 분류하였다. 기반암과 제3기 지층의 11개 지점에서 단층면상 미끄럼선이 발달하는 소단층들의 자료를 수집하여 고응력장을 해석하고, 순서별로 (I) 북서-남동 횡인장, (II) 북서-남동 횡압축 (III)북동-남서 순수 인장, (IV) 남-북 내지 북북동-남남서 횡압축, (V)동-서 내지 동북동-서남서 순수 압축이 작용한 지구조 사건들로 구분하고, 제3기분지 진화와 연관하여 해석하였다. 지구조사건 I은 올리고세 후기 내지 마이오세 초기의 동해 생성과 관련하여 제3기분지의 형성과 발달을 주도하였고, 지구조사건 II, III, IV는 필리핀해판의 섭입경사 및 방향 변화와 관련된 사건으로 본 연구지역에서는 분지 발달의 종료 및 지각 융기를 야기시켰으며, 지구조사건 V는 태평양판의 강한 섭입으로 인한 압축응력이 동해안을 융기시키며 현재까지 지속되고 있는 것으로 해석된다.

Experimental investigation of the mechanical behaviors of grouted crushed coal rocks under uniaxial compression

  • Jin, Yuhao;Han, Lijun;Meng, Qingbin;Ma, Dan;Wen, Shengyong;Wang, Shuai
    • Geomechanics and Engineering
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    • 제16권3호
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    • pp.273-284
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    • 2018
  • A detailed understanding of the mechanical behaviors for crushed coal rocks after grouting is a key for construction in the broken zones of mining engineering. In this research, experiments of grouting into the crushed coal rock using independently developed test equipment for solving the problem of sampling of crushed coal rocks have been carried out. The application of uniaxial compression was used to approximately simulate the ground stress in real engineering. In combination with the analysis of crack evolution and failure modes for the grouted specimens, the influences of different crushed degrees of coal rock (CDCR) and solidified grout strength (SGS) on the mechanical behavior of grouted specimens under uniaxial compression were investigated. The research demonstrated that first, the UCS of grouted specimens decreased with the decrease in the CDCR at constant SGS (except for the SGS of 12.3 MPa). However, the UCS of grouted specimens for constant CDCR increased when the SGS increased; optimum solidification strengths for grouts between 19.3 and 23.0 MPa were obtained. The elastic moduli of the grouted specimens with different CDCR generally increased with increasing SGS, and the peak axial strain showed a slightly nonlinear decrease with increasing SGS. The supporting effect of the skeleton structure produced by the solidified grouts was increasingly obvious with increasing CDCR and SGS. The possible evolution of internal cracks for the grouted specimens was classified into three stages: (1) cracks initiating along the interfaces between the coal blocks and solidified grouts; (2) cracks initiating and propagating in coal blocks; and (3) cracks continually propagating successively in the interfaces, the coal blocks, and the solidified grouts near the coal blocks. Finally, after the propagation and coalescence of internal cracks through the entire specimens, there were two main failure modes for the failed grouted specimens. These modes included the inclined shear failure occurring in the more crushed coal rock and the splitting failure occurring in the less crushed coal rock. Both modes were different from the single failure mode along the fissure for the fractured coal rock after grouting solidification. However, compared to the brittle failure of intact coal rock, grouting into the different crushed degree coal rocks resulted in ductile deformation after the peak strength for the grouted specimens was attained.

가금 생산에서 천연 항산화제로서 식물성 Flavonoids의적용 (Application of Plant Flavonoids as Natural Antioxidants in Poultry Production)

  • 서문강민;장인석
    • 한국가금학회지
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    • 제49권4호
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    • pp.211-220
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    • 2022
  • 최근 닭은 고도화된 육종개량과 함께고밀도사육, 열스트레스, 환경 및 사료 오염 등과 같은내외적스트레스요인에 의해 체 조직에서 과도한 활성산소(ROS) 발생으로 산화적 스트레스가 매우 높다. 산화적 스트레스는 지질과 산화작용으로 DNA 손상, 세포사 등을 유발하여 닭의 건강과 복지에 심각한 문제를 유발한다. 닭은 이러한 내외적 산화적 스트레스에 따라 항산화 효소와 비효소적 항산화 물질에 의해 활성산소를 제거하는 방어 작용을 한다. 최근 영양학적 방법으로서 산화적 스트레스를 억제하는 식물성 flavonoids 사료첨가제 개발에 주목하고 있다. Favonoid를 닭에게 급여 시 소화기관 및 근육에서 지질과산화도 감소, 항산화력 및 항산화 효소 활성도가 증가하는 것으로 항산화제로서 가치가 높다. Flavonoids는 구조화합물이 활성산소와 결합하여 안정화할 수 있는 구조로서 ROS를 소거 또는 항산화 효소의 발현을 통해 ROS를 제거한다. 또한 금속 이온과 결합하 는 킬레이트화 작용, 산화효소 및 NO 생성 억제 등 다양한 항산화 작용이 있다. 그러나 문제점으로 flavonoid 화합물은 용해도가 낮아 소장 흡수세포에서 흡수율이 저하됨으로 이를 극복할 수 있는 체내 운반 기술의 개발이 필요하다. 또한 사료 섭취 시 flavonoid 농도가 가장 높은 곳이 위장관으로 이곳에서 명확한 항산화 효과를 나타내는 용량을 구명하여 첨가 수준을 결정하여야 한다. 항산화 작용기전은 스트레스에 따라 다양한 전사인자들(transcrptional factors)을 통해 스트레스 반응 유전자(vitagenes)의 발현을 유도한다. Flavonoid의 항산화 작용기전으로 Nrf-2와 Nf-kB 등과 같은 전사인사의 발현 과정과 vitagenes을 통해 효율적 항산화 효과를 나타내는 방법에 관한 연구도 중요하다. 닭에서 육종 및 사육 환경 요인에 따라 발생하는 산화 스트레스는 경제성과 더불어 동물복지 측면에서도 심각한 문제를 유발한다. Flavonoid 함유 천연 항산화제 개발과 적용은 가금 산업에서 향후 중요한 분야가 될 것으로 전망된다.

Recognition of damage pattern and evolution in CFRP cable with a novel bonding anchorage by acoustic emission

  • Wu, Jingyu;Lan, Chengming;Xian, Guijun;Li, Hui
    • Smart Structures and Systems
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    • 제21권4호
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    • pp.421-433
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    • 2018
  • Carbon fiber reinforced polymer (CFRP) cable has good mechanical properties and corrosion resistance. However, the anchorage of CFRP cable is a big issue due to the anisotropic property of CFRP material. In this article, a high-efficient bonding anchorage with novel configuration is developed for CFRP cables. The acoustic emission (AE) technique is employed to evaluate the performance of anchorage in the fatigue test and post-fatigue ultimate bearing capacity test. The obtained AE signals are analyzed by using a combination of unsupervised K-means clustering and supervised K-nearest neighbor classification (K-NN) for quantifying the performance of the anchorage and damage evolutions. An AE feature vector (including both frequency and energy characteristics of AE signal) for clustering analysis is proposed and the under-sampling approaches are employed to regress the influence of the imbalanced classes distribution in AE dataset for improving clustering quality. The results indicate that four classes exist in AE dataset, which correspond to the shear deformation of potting compound, matrix cracking, fiber-matrix debonding and fiber fracture in CFRP bars. The AE intensity released by the deformation of potting compound is very slight during the whole loading process and no obvious premature damage observed in CFRP bars aroused by anchorage effect at relative low stress level, indicating the anchorage configuration in this study is reliable.

Application of a mesh-free method to modelling brittle fracture and fragmentation of a concrete column during projectile impact

  • Das, Raj;Cleary, Paul W.
    • Computers and Concrete
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    • 제16권6호
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    • pp.933-961
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    • 2015
  • Damage by high-speed impact fracture is a dominant mode of failure in several applications of concrete structures. Numerical modelling can play a crucial role in understanding and predicting complex fracture processes. The commonly used mesh-based Finite Element Method has difficulties in accurately modelling the high deformation and disintegration associated with fracture, as this often distorts the mesh. Even with careful re-meshing FEM often fails to handle extreme deformations and results in poor accuracy. Moreover, simulating the mechanism of fragmentation requires detachment of elements along their boundaries, and this needs a fine mesh to allow the natural propagation of damage/cracks. Smoothed Particle Hydrodynamics (SPH) is an alternative particle based (mesh-less) Lagrangian method that is particularly suitable for analysing fracture because of its capability to model large deformation and to track free surfaces generated due to fracturing. Here we demonstrate the capabilities of SPH for predicting brittle fracture by studying a slender concrete structure (column) under the impact of a high-speed projectile. To explore the effect of the projectile material behaviour on the fracture process, the projectile is assumed to be either perfectly-elastic or elastoplastic in two separate cases. The transient stress field and the resulting evolution of damage under impact are investigated. The nature of the collision and the constitutive behaviour are found to considerably affect the fracture process for the structure including the crack propagation rates, and the size and motion of the fragments. The progress of fracture is tracked by measuring the average damage level of the structure and the extent of energy dissipation, which depend strongly on the type of collision. The effect of fracture property (failure strain) of the concrete due to its various compositions is found to have a profound effect on the damage and fragmentation pattern of the structure.

금강모치(Rhynchocypris kumgangensis)에서 heat shock protein 70의 클로닝과 수온상승에 의한 발현 변화 분석 (Cloning of Heat Shock Protein 70 and Its Expression Profile under an Increase of Water Temperature in Rhynchocypris kumgangensis)

  • 임지수;길성호
    • 한국물환경학회지
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    • 제29권2호
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    • pp.232-238
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    • 2013
  • Water temperature is key factor influencing growth and reproduction of fish and its increase give rise to various physiological changes including gene expression. Heat shock protein (Hsp), one of the molecular chaperones, is highly conserved throughout evolution and its expression is induced by various stressors such as temperature, oxidative, physical and chemical stresses. Here, we isolated partial cDNA clones encoding 70-kDa Hsp (Hsp70) and $\beta$-actin using reverse transcriptase-PCR (RT-PCR) from gut of Rhynchocypris kumgangensis, a Korean indigenous species and cold-water fish, and investigated expression profiles of Hsp70 under an increase of water temperature using $\beta$-actin as an internal control for RT-PCR. Cloned Hsp70 cDNA of R. kumgangensis showed homology to Ctenopharyngodon idella (96%), Hypophthalmichthys molitrix (96%), Danio rerio (93%) and Oncorhynchus mykiss (81%) Hsp70. Cloned $\beta$-actin cDNA of R. kumgangensis showed homology to D. rerio (98%), H. molitrix (97%), C. idella (97%) and O. mykiss (90%) $\beta$-actin. Both mRNA of Hsp70 and $\beta$-actin were expressed in gut, brain, and liver in R. kumgangensis. Futhermore, expression of Hsp70, in brain, was highly augmented by an increase of water temperature. These results suggest that Hsp70 mRNA expression level in brain can be used as a biological molecular marker to represent physiological stress against an increase of water temperature.

운영 중 터널 역해석을 위한 차분진화 알고리즘 최적화 (DEA optimization for operating tunnel back analysis)

  • 안준상;김병찬;문현구;송기일
    • 한국터널지하공간학회 논문집
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    • 제18권2호
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    • pp.183-193
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    • 2016
  • 운영 중 터널의 역해석을 통한 안정성 평가는 다루기 어려운 개념이다. 특히, 해저터널처럼 라이닝이 상대적으로 두껍게 시공된 경우에 발생하는 내공변위가 작기 때문에, 일반적으로 터널 역해석에 사용되는 변위 기반의 터널 역해석에는 한계가 있을 것으로 판단된다. 여기서는 FLAC3D 프로그램에 내장된 FISH 언어를 사용해서, 다양한 역해석 알고리즘 중에 차분진화 알고리즘의 구축을 통한 터널 역해석에 대한 적용성을 확인하였다. 또한, 변위 기반의 알고리즘 구축과 더불어 응력 계측값 등 다양한 인자의 적합성을 확인하여 터널 라이닝의 안정성을 평가하고자 한다.

Comparative Genomics Reveals the Core and Accessory Genomes of Streptomyces Species

  • Kim, Ji-Nu;Kim, Yeonbum;Jeong, Yujin;Roe, Jung-Hye;Kim, Byung-Gee;Cho, Byung-Kwan
    • Journal of Microbiology and Biotechnology
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    • 제25권10호
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    • pp.1599-1605
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    • 2015
  • The development of rapid and efficient genome sequencing methods has enabled us to study the evolutionary background of bacterial genetic information. Here, we present comparative genomic analysis of 17 Streptomyces species, for which the genome has been completely sequenced, using the pan-genome approach. The analysis revealed that 34,592 ortholog clusters constituted the pan-genome of these Streptomyces species, including 2,018 in the core genome, 11,743 in the dispensable genome, and 20,831 in the unique genome. The core genome was converged to a smaller number of genes than reported previously, with 3,096 gene families. Functional enrichment analysis showed that genes involved in transcription were most abundant in the Streptomyces pan-genome. Finally, we investigated core genes for the sigma factors, mycothiol biosynthesis pathway, and secondary metabolism pathways; our data showed that many genes involved in stress response and morphological differentiation were commonly expressed in Streptomyces species. Elucidation of the core genome offers a basis for understanding the functional evolution of Streptomyces species and provides insights into target selection for the construction of industrial strains.

가스하이드레이트 개발생산과정에서의 미고결 퇴적층의 역학적 안정성 평가를 위한 지오메카닉스모델 해석 (Geomechanical Model Analysis for the Evaluation of Mechanical Stability of Unconsolidated Sediments during Gas Hydrate Development and Production)

  • 김형목;쟈니 루트비스트
    • 터널과지하공간
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    • 제24권2호
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    • pp.143-154
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    • 2014
  • 본 연구에서는 지오메카닉스모델을 이용한 가스하이드레이트 회수 생산 과정에서의 해리 발생 및 이에 따른 주변 퇴적층의 역학적 변형을 시뮬레이션 하였다. 지오메카닉스모델은 TOUGH+Hydrate와 FLAC3D 해석 코드를 순차적으로 반복해석하는 기법으로 감압법을 이용한 가스하이드레이트 회수 생산과정에서의 온도, 압력, 포화도 변화가 생산정 주변 퇴적층 내 유효응력, 강성 및 강도 변화에 미치는 영향을 고려할 수 있는 특징이 있다. 회수생산 방식에 따른 모델해석결과 비교를 통해, 감압법과 열자극법을 병행하는 경우 초기 생산량 증대를 가져올 수 있음을 보였다. 또한, 미고결 점토질 퇴적층에서의 회수생산 시 사암층에 비해 상대적으로 변형이 크게 발생함을 보였다.

분무주조 고속도공구강의 고온변형 거동에 관한 연구 (A Study on High Temperature Deformation Behavior of Spray-Formed High Speed Steels)

  • 하태권;정재영
    • 소성∙가공
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    • 제27권2호
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    • pp.123-129
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    • 2018
  • In the present study, the mechanical behavior of the spray-formed high speed steel was investigated employing the internal variable theory of inelastic deformation. Special attention was focused on the effect of the microstructure evolution during the hot working process, such as the distribution of carbides to provide a basic database for the production condition of high speed steels with excellent properties. The billets of high speed steel ASP30TM were fabricated by a spray forming, and the subsequently hot-rolled and heat-treated process to obtain uniformly distributed carbide structure. As noted the spray-formed high speed steel showed relatively coarser carbides than hot-rolled and heat-treated one with fine and uniformly distributed carbide structure. The step strain rate tests and high temperature tensile tests were carried out on both the spray-formed and the hot-rolled specimens, to elucidate their high temperature deformation behavior. The spray-formed high speed steel showed much higher flow stress and lower elongation than the hot-rolled and heat-treated steel. During the tensile test at $900^{\circ}C$, the interruption of the deformation for 100 seconds was conducted to reveal that the recovery was a main dynamic deformation mechanism of spray formed high speed steel. The internal variable theory of the inelastic deformation was used to analyze data from the step strain rate tests, revealing that the activation energies for hot deformation of as-spray-formed and hot-worked steels, which were 157.1 and 278.9 kJ/mol, and which were corresponding to the dislocation core and lattice diffusions of ${\gamma}-Fe$, respectively.