• Title/Summary/Keyword: 강봉

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Criterion of Dwelling Selection on the People who Return to Farming & Going to Village by means of AHP - Centering on the People who Return to Farming & Going to Village in Jellanam-do in Korea - (귀농·귀촌인 주거지 선택 기준에 대한 AHP 분석 연구 -전라남도 귀농·귀촌인을 중심으로-)

  • Kang, Bong-Im
    • Journal of the Korean Institute of Rural Architecture
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    • v.19 no.4
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    • pp.1-8
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    • 2017
  • The purpose of this study is to deduce dwelling selection criterion and to consider change of values and consciousness of dwelling on people who return to farming & going to village. For that, questionnaire of evaluation of housing choice is conducted by people who return to farming & going to village in Jellanam-do by the AHP. The results are as follows. First, four factors as the primary hierarchy structure and 12 factors as the secondary hierarchy structure of dwelling selection criterion are deduced. The primary hierarchy are "education environment", "economic & Convenience in life", "residence safety and image", and "economic value". Second, weight value deduced from the primary hierarchy structure is showed that "economic & convenience in life(0.345)" is the highest and next is "education environment(0.262)". "Residence safety and image(0.237)", and e "economic value(0.157)" is relatively low(C.I. 0.213). Third, for the secondary hierarchy structure, the case of life convenience is showed that economic condition(0.403) is the highest, the case of educational condition is showed that education facilities(0.479), the case of residence safety and image is showed that residence area(0.490) is the highest, and the case of economic importance is showed that financial technology(0.470) is the highest.

Estimation of Initial Tensile Force Acting on Tendon using the Deformation of a Multi-tendon Anchor Head (멀티 텐던 앵커헤드의 변형을 이용한 텐던의 초기 긴장력 추정)

  • Park, Jang Ho;Cho, Jeong-Rae;Park, Jaegyun
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.27 no.6
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    • pp.581-588
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    • 2014
  • The PSC bridges have recently been widely used in Korea. The PSC bridge is a structure whose performance is improved through the use of tendons and steel bars in deflection and cracking characteristics of the concrete. Therefore, measurement or estimation of the load acting on tendon is important in order to maintain the PSC bridges efficiently and safely. This paper deals with a numerical study on the deformation of a multi-tendon anchor head in order to verify the relationship between the load acting on tendon and the deformation of anchor head. All kinematics, material properties and contact nonlinearity are included for the precise analysis and numerical studies are performed by Abaqus. From the numerical results, it is verified that the hoop strain is most useful in the estimation of the load acting on tendon and strains are affected by various parameters such as friction coefficient, boundary conditions, and arrangement.

Geomorphic development and distributional system of marine terrace in the eastern part of Seopo-myeon, Sacheon-si, Gyeongnam Province (경남 사천시 서포면 동쪽 해안단구 지형 발달과 분포 체계)

  • Yoon, Soon-Ock;Kang, Bong;Park, Chung-Sun;Hwang, Sangill
    • Journal of the Korean association of regional geographers
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    • v.22 no.4
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    • pp.875-886
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    • 2016
  • The eastern coast of Seopo-myeon, Sancheon-si in the South Coast is a bay almost completely separated from open sea by Changseon and Namhae Islands. Marine terraces in this area can be classified into geomorphic surfaces with elevations of 10~12m, 15~18m, 20~24m, 25~28m, 30~33m, 35~38m, 40~45m, 45~50m and 54m. This marine terrace system is similar to the Boryeong area in the West Coast. The geomorphic surfaces distribute along ridges and show relatively small areas. The young and old surfaces show a mixed distributional pattern. This distributional pattern contrasts to the East Coast where the oldest surface farthest from the coastline is parallel to the coast and age of the surfaces increases with a distance from the coast. These seem to result in high energy waves by typhoon that developed wave-cut platform on hill areas with relatively complex relief in a short time.

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Dynamic Stability of a Railroad Bridge Using Bi-prestressing Technology (바이프리스트레싱 기법을 이용한 철도교량의 동적안정성)

  • Choi, Sanghyun;Lee, Changsoo;Lim, Jaehoon;Lee, Seungjoon;Yang, Sungdon
    • Journal of the Society of Disaster Information
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    • v.9 no.2
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    • pp.188-194
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    • 2013
  • As the high speed railroad line increases, researches on developing a more economic high speed railroad bridge system have been actively conducted. In this paper, a new type of prestressed concrete girder based on the bi-prestressing technique, which can introduce additional prestress, is presented. The additional prestress can be introduced using a wedge-shaped pin bar into the upper part of the girder section. The applicability of the new girder technique to the high speed railroad bridge is verified via the dynamic stability analysis. Dynamic moving load analyses using the KTX train load are conducted on bridge systems with the span lengths of 30m, 35m, and 40m, respectively. The results of the analysis show that all bridge systems satisfy the limits prescribed in the design specifications to ensure structural stability, driving safety, and ride quality.

Shear Strengthening Effect by Deviator Location in Externally Post-tensioning Reinforcement (외적 포스트텐셔닝 보강에서 데비에이터의 위치에 따른 전단보강효과)

  • Lee, Swoo-Heon;Shin, Kyung-Jae;Lee, Hee-Du
    • Journal of the Architectural Institute of Korea Structure & Construction
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    • v.34 no.6
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    • pp.3-10
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    • 2018
  • This paper described the shear strengthening effect by deviator location in pre-damaged reinforced concrete (RC) beams strengthened with externally post-tensioning steel rods. Three reinforced concrete beams as control beam and eight post-tensioned beams using external steel rods were tested to fail in shear. The externally post-tensioning material was a steel rod of 22 mm diameter, and it had a 655 MPa yield strength and an 805 MPa tensile strength. Specimens depend on multiple variables, such as the number of deviators, location of deviator, and load pattern. The pre-damaged loads up to about 2/3 of ultimate shear capacities were applied to specimens using displacement control and the diagonal shear crack just occurred at these loading levels. And then, the post-tensioning up to when a strain of steel rod reaches about $2000{\mu}{\varepsilon}$ was continuously applied to beam. A displacement control was changed to a load control during post-tensioning. The post-tensioning resulted in increase of load-carrying capacity and restoration of existing deflection. Also, it prevented the existing diagonal cracks from excessively growing. Two deviators effectively improved the load capacity when compared with in case of test which one deviator at mid-span installed. When deviators were located near region which the diagonal crack occurred on, the strengthening impact by post-tensioning was greater.

Three-Dimensional Numerical Analysis for Verifying Behavioral Mechanism and Bearing Capacity Enhancement Effect According to Tip Elements (선단 고정 지압구의 거동 메커니즘과 형상에 따른 지지력 증대효과 검증을 위한 3차원 수치해석)

  • Lee, Seokhyung;Kim, Seok-Jung;Han, Jin-Tae;Jin, Hyun-Sik;Hwang, Gyu-Cheol;Lee, Jeong-Seob
    • Journal of the Korean Geotechnical Society
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    • v.38 no.9
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    • pp.53-67
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    • 2022
  • Micropiles are cast-in-place-type piles with small diameters. They are widely used for the foundation reinforcement of existing buildings and structures because this technique is easy to construct and economic. A base expansion structure is developed following the mechanism of radial expansion at the pile tip under compression. Numerical analysis, durability tests, and centrifuge tests have been conducted using the base expansion structure. In this study, three-dimensional numerical modeling was performed to describe the behavioral mechanism of the base expansion structure using steel bar penetration under compressive loading, and numerical analyses using centrifuge test conditions were performed for the comparative studies. Additionally, the base structure was modified based on the results of lab-scale analyses, and the bearing capacities of micropiles were compared using field-scale numerical analyses under various ground conditions.

Studies on Lodging-induced Damages of Sesame. 1. Investigating Analysis on the Productivity of Sesame am Lodging-induced Damage. (참깨의 도복피해에 관한 연구 -제 1 보 참깨 생산성 및 도복피해 조사분석-)

  • Jung, B.G.;Guh, J.O.;Choi, H.K.;Lee, D.G.
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.29 no.1
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    • pp.72-75
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    • 1984
  • The prime cause of yield reduction of sesame is the lodging-induced damage, so a study of analyzing the products of sesame and frequency of a strong wind with the relation was implemented. The regression significance between the maximum velocity of wind during growing period of sesame and products was the highest in the Mokpo, Hampyung, Haenam, and Kohung district of coast but inland districts of Kwangju was non-significant. Estimated degrees of lodging-induced damage by a strong wind was shown as generally 31-41%, but a exceptional degree was observed as high as 80.5% at Mokpo district.

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An Experimental Study on the Reinforcement Effect of Installed Micropiles in the Surround of Footing on Dense Sand (조밀한 모래지반의 기초 인접에 설치된 마이크로파일 보강효과에 관한 실험적 연구)

  • Lee Tae-Hyung;Im Jong-Chul
    • Journal of the Korean Geotechnical Society
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    • v.22 no.5
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    • pp.69-81
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    • 2006
  • The micropile, which is a kind of the in-situ manufactured pile with small diameter of $150\sim300mm$, is constructed by installing a steel bar or pipe and injecting grout into a borehole. The application fields of micropile are being gradually expanded in a limited space of down-town area, because the micropile has various advantages with low vibration and noise in method and compact size in machine, etc. Mostly, the micropile has been applied to secure the safety of structures, depending on the increment of bearing capacity and the restraint of displacement. The micropile is expected to be used in various fields due to its effectiveness and potentiality in the future. The model test, focused on the interaction between micropile and soil in this study, was carried out. The micropile is installed in a soil adjacent to footing (concept of 'soil reinforcement'). With the test results and soil deformation analysis, the reinforcement effect (relating to bearing capacity and settlement) was analysed in a qualitative and quantitative manner, respectively. Consequently, it is expected that we nay demonstrate the improvement of an efficiency and application in the design and construction of micropile.

Effects of Design Parameters on Structural Performance of Precast Piers with Bonded Prestressing Steels (부착 긴장재를 가진 조립식 교각 설계변수의 구조성능에 미치는 영향)

  • Shim, Chang-Su;Yoon, Jae-Young
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.30 no.1A
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    • pp.15-26
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    • 2010
  • Quasi-static tests were conducted to evaluate structural performance of precast piers prestressed by bonded prestressing steels. Combinations of prestressing bars and normal reinforcing bars, embedded steel tubes and prestressing strands were used as continuous steels crossing the joints of a precast pier. Main design parameters were steel ratio, magnitude of prestress force, and section details. Flexural strength and energy dissipation capacity of precast columns with higher steel ratio showed better performance due to continuous steels after opening of the joints. Precast piers with embedded members showed stable behavior after reaching maximum loads resulting in higher displacement ductility and energy dissipation capacity increased as the introduced prestress increased. Self-centering behavior at early stages and stress increase of confining reinforcements were observed from highly prestressed columns. Combination of prestressing steels and normal reinforcing bars should be used in design to prevent rapid strength degradation after reaching the maximum load.

An Experimental Study on the Reinforcement Effect of Installed Micropile under Footing on Dense Sand (조밀한 모래지반의 기초하부에 설치된 마이크로파일 보강효과에 관한 실험적 연구)

  • Lee, Tae-Hyung;Im, Jong-Chul
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.3C
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    • pp.191-200
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    • 2006
  • The micropile, which is a kind of the in-situ manufactured pile with small diameter of 100~300mm, is constructed by installing a steel bar or pipe and injecting grout into a borehole. The application fields of micropile are being gradually expanded in a limited space of down-town area, because the micropile has various advantages with low vibration and noise in method and compact size in machine, etc. Mostly, the micropile has been applied to secure the safety of structures, depending on the increment of bearing capacity and the restraint of displacement. The micropile is expected to be used in various fields due to its effectiveness and potentiality in the future. The model test, focused on the interaction between micropile and soil in this study, was carried out. The micropile is installed under footing(concept of "structure supporting"). With the test results and soil deformation analysis, the reinforcement effect(relating to bearing capacity and settlement) was analysed in a qualitative and quantitative manner, respectively. Consequently, it is hoped to demonstrate the improvement of an efficiency and application in the design and construction of micropile.