• 제목/요약/키워드: design load capacity

검색결과 1,453건 처리시간 0.025초

반응표면법을 이용한 고하중 기둥형 로드셀의 치적설계 (Optimal Design of High-Capacity Column-Type Load Cell Using Response Surface Method)

  • 이태현;이태희;변철웅;박준구
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 추계학술대회 논문집
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    • pp.754-758
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    • 2002
  • According to the enlargement of production facilities and structures, the requirements of high-capacity load cells are increased for monitoring the process conditions in many fields. Generally, however, the accuracy of the column-type high-capacity load cells is not enough due to the geometric nonlinearity. It is supposed to result from the fact that the whole spring element is under high-level stress for the uniform strain field. In this paper, a new shape of spring element is developed which utilizes the stress concentration. As a design criterion, an object function which quantifies the degree of nonlinearity is defined and optimized by use of response surface modeling. As a result, the weight of the spring element is reduced shout 50% in comparison to the conventional shape. The bonding positions of stain gages are found. which show theoretically zero geometrical nonlinearity, while the ratio of overload protection is reduced from 130% to 125% Also it is shown that the response surface method is very efficient in the optimization approach by use of FEM.

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콘크리트 충전 강교각의 내진 성능 (The Seismic Performance for Concrete-filled Steel Piers)

  • 정지만;장승필;인성빈
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2002년도 추계 학술발표회 논문집
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    • pp.189-196
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    • 2002
  • The capacity of CFS piers has not been used to a practical design, because there is no guide of a seismic design for CFS piers. Therefore, the guide of a seismic design value is derived from tests of CFS piers in order to apply it to a practical seismic design. Steel piers and concrete-filled steel piers are tested with constant axial load using quasi-static cyclic lateral load to check ductile capacity and using the real Kobe ground motion of pseudo-dynamic test to verify seismic performance. The results prove that CFS piers have more satisfactory ductility and strength than steel piers and relatively large hysteretic damping in dynamic behaviors. The seismic performance of steel and CFS piers is quantified on the basis of the test results. These results are evaluated through comparison of both the response modification factor method by elastic response spectrum and the performance-based design method by capacity spectrum and demand spectrum using effective viscous damping. The response modification factor of CFS piers is presented to apply in seismic design on a basis of this evaluation for a seismic performance.

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SIP공법의 지지력 특성에 관한 연구 (Bearing Capacity Characteristics of SIP)

  • 박종배;임해식;박용부
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 기초기술학술발표회
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    • pp.57-76
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    • 2002
  • As piling works in urban area increasing, SIP which is low noise & vibration piling method is taking place of driven pile which has good bearing charateristics and economics. Since SIP has been used for more than 15 years and it's application is increasing year by year, however, accurate analysis of bearing mechanism of SIP is not enough. So the design of SIP is much more conservative than driven pile. This paper is aimed to analyse the bearing charateristics of 103 SIPs constructed in Korea to give rational design criteria. Research result shows that bearing capacity of SIP is 40% lower than that of driven pile and conservative Meyerhof(equation omitted) method produced closer result to load test results than other design method. And this result show that to use optimised design criteria for the economic SIP design, quality control criteria must be settled down to produce high in-situ bearing capacity.

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성토지반에 타입된 H형강 말뚝의 지지거동 (Bearing Capacity of Driven H-Piles in Embankment)

  • 박영호;정경자;김성환;유성근;이재혁;박종면
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 봄 학술발표회 논문집
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    • pp.173-182
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    • 2000
  • To find axial and lateral responses of impact-driven H piles in embankment(SM), the H piles are instrumented with electric strain gages, dynamic load test is performed during driving, and then the damage of strain gages is checked simultaneously. Axially and laterally static load tests are performed on the same piles after one to nine days as well. Then load-settlement behavior is measured. Furthermore, to find the set-up effect in H pile, No. 4, 16, 26, and R6 piles are restriked about 1, 2, and 14 days after driving. As results, ram height and pile capacity obtained from impact driving control method become 80cm and 210.3∼242.3ton, respectively. At 15 days after driving, allowable bearing capacity by CAPWAP analysis, which 2.5 of the factor of safety is applied for ultimate bearing capacity, increases 10.8%. Ultimate bearing capacity obtained from axially static load test is 306∼338ton. This capacity is 68.5∼75.7% at yield force of pile material and is 4∼4.5 times of design load. Allowable bearing capacity using 2 of the factor of safety is 153∼169ton. Initial stiffness response of the pile is 27.5ton/mm. As the lateral load increases, the horizontal load-settlement behaves linearly to which the lateral load reaches up to 17ton. This reason is filled with sand in the cavity formed between flange and web during pile driving. As the result of reading with electric strain gages, flange material of pile is yielded at 19ton in horizontal load. Thus allowable load of this pile material is 9.5ton when the factor of safety is 2.0. Allowable lateral displacement of this pile corresponding to this load is 23∼36mm in embankment.

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대구경 현장타설말뚝의 대용량 양방향 말뚝재하시험 분석 및 극한지지력 추정을 위한 수치해석 연구 (A Numerical Analysis Study for Estimation of Ultimate Bearing Capacity and An Analysis of the High Capacity Bi-directional Pile Load Tests of the Large-diameter Drilled Shafts)

  • 남문석;김상일;홍석우;황성춘;최용규
    • 한국지반환경공학회 논문집
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    • 제12권10호
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    • pp.63-72
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    • 2011
  • 초고층 건축물 기초의 고용량 하중 지지능력을 확인할 수 있는 가장 현실적인 방안인 고유압방식의 고용량 양방향 말뚝재하시험을 2개 현장에서 실시하였다. 고유압 복동식 양방향 말뚝재하시험은 정재하시험 시 재하용량 한계와 현장조건의 제약을 극복 할 수 있는 가장 현실적인 방안으로 볼 수 있었으며 고용량이 필요한 시험말뚝에 대한 재하시험에 매우 유용한 시험방법으로 판단되었다. 2개의 사례에서 계산된 설계하중 충족비는 각각 3.3, 2.1이었으므로 사례(P-2)에서 1방향 재하하중을 다소 작게 재하하였더라면 말뚝기초의 안정성을 실증적으로 확인하지 못하였을 것으로 판단되었다. 초고용량의 양방향 말뚝재하시험에서 설정한 최대하중까지 재하하더라도 말뚝 및 지반의 극한상태를 확인하는 것은 쉽지 않았으므로 대구경 현장타설말뚝의 극한지지력을 추정하기 위하여 2개의 고용량 대구경 현장타설말뚝에 대한 수치해석을 실시하였다.

Seismic experiment and analysis of rectangular bottom strengthened steel-concrete composite columns

  • Hui, Cun;Zhu, Yanzhi;Cao, Wanlin;Wang, Yuanqing
    • Steel and Composite Structures
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    • 제20권3호
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    • pp.599-621
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    • 2016
  • In order to study the working mechanism of rectangular steel-concrete composite columns subjected to compression-bending load and further determine the seismic performance index, a bottom strengthened rectangular steel reinforced concrete (SRC) column with concealed steel plates and a bottom strengthened rectangular concrete filled steel tube (CFST) columns were proposed. Six column models with different configurations were tested under horizontal low cyclic loading. Based on the experiments, the load-bearing capacity, stiffness and degradation process, ductility, hysteretic energy dissipation capacity, and failure characteristics of the models were analyzed. The load-bearing capacity calculation formulas for a normal section and an oblique section of bottom strengthened rectangular steel-concrete composite columns were pesented and a finite element (FE) numerical simulation of the classical specimens was performed. The study shows that the load-bearing capacity, ductility, and seismic energy dissipation capacity of the bottom strengthened rectangular steel-concrete composite columns are significantly improved compared to the conventional rectangular steel-concrete composite columns and the results obtained from the calculation and the FE numerical simulation are in good agreement with those from the experiments. The rectangular steel-concrete composite column with bottom strengthened shows better seismic behavior and higher energy dissipation capacity under suitable constructional requirements and it can be applied to the structure design of high-rise buildings.

CPT결과를 이용한 항타말뚝 지지력 평가를 위한 저항계수 산정 (Estimation of Pile Resistance Factor by CPT Based Pile Capacity)

  • 김대호;이준환;김범주
    • 한국지반공학회논문집
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    • 제21권10호
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    • pp.113-122
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    • 2005
  • 신뢰성 기반의 한계상태설계법(Limit State Design; LSD)의 지반공학적 적용은 세계적으로 확산추세이며, 북미지역의 경우 일부 시방서에 하중 및 저항에 의한 LRFD 설계법이 지반공학적 설계에 적용되고 있다. 그러나 지금까지 제안되어 온 지반공학적 저항계수는 상당히 포괄적인 값이며, 이와 관련된 연구는 아직까지 초기단계라 할 수 있다. 콘관입시험은 대표적인 현장시험으로 특히 말뚝 설계에서 유용하게 활용되고 있으며, 다양한 말뚝 지지력 산정법이 제시되어 왔다. 본 연구에서는 콘관입시험을 이용한 항타 말뚝 지지력 평가를 위한 저항계수를 산정하고자 한다. 이를 위하여 여러 지역에서 수행된 말뚝재하시험과 콘관입시험 결과를 수집하여 확률적 분석을 수행하였으며, 이를 종합하여 저항계수 산정에 적용하였다. 본 연구에서는 전체지지력뿐만 아니라 말뚝의 선단 및 주면 지지력 각각에 대한 저항계수 또한 도출하고자 하였다. 저항계수 산정 결과, 목표신뢰도지수 $2.0{\sim}2.5$의 범위에서 전체지지력에 대한 저항계수 $0.35{\sim}0.55$범위를 나타내었다.

재하시험에 의한 PHC 매입말뚝의 저항계수 산정 (Estimation of resistance coefficient of PHC bored pile by Load Test)

  • 박종배;권영환
    • 토지주택연구
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    • 제8권4호
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    • pp.233-247
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    • 2017
  • 유럽과 미국에서는 말뚝기초 설계에 한계상태설계법 사용이 거의 정착되었으며, 세계적 추세에 따라 국내에서도 국토해양부가 한계상태설계법에 기반한 교량하부기초 설계기준을 제정하였지만, 국내 말뚝공법 및 지반조건에 대한 저항계수 연구가 부족하여 당장 설계에 반영하기에는 어려운 여건이다. 이에 본 연구에서는 일반적으로 시용하고 있는 PHC 매입말뚝을 국내 지반조건에 고려하여 Meyerhof(LH 설계기준, 도로교 설계기준) 방법과 상재하중을 고려할 수 있는 정역학적 공식 (Terzaghi의 지지력 계수와 Hansen&Vesic의 지지력 계수 적용)으로 산정한 지지력을 정재하시험(9회)과 동재하시험(EOID 9회, Restrike 9회) 결과를 비교 분석하여 저항계수를 산정하였다. LH 연구원의 선행연구(PHC 매입말뚝의 하중저항 설계정수 제안, 2012)에서 동재하극한지지력 (Rut)을 기준으로 했을 때 LH 설계기준에 대한 저항계수는 0.36~0.44를 나타낸 바 있으며, 본 연구에서는 저항계수가 0.39~0.48로 나타나 선행연구의 저항계수보다 약 8%정도 증가하였다. 본 연구에서는 정재하시험 결괴를 위주로 저항계수를 산정하였으며, 극한지지력을 기준으로 했을 때의 저항계수는 0.57~0.69(Meyerhof 방법 : LH 설계기준), Davisson 지지력을 기준으로 했을 때의 저항계수는 0.49~0.60(Meyerhof 방법 LH 설계기준)으로 동재하시험에 의한 저항계수와 차이가 크게 나타났다. 이러한 차이를 줄이고자 수정동재하지지력을 제시하여 저항계수를 제시하였으며 이때의 저항계수는 0.52~0.62(Meyerhof 방법 : LH 설계기준)로 나타나 정재하에 의한 저항계수와 차이가 많이 줄어들었다. 결론적으로 본 연구에서 정재하 및 동재하시험으로 산정한 전체 저항계수는 0.35~0.76으로 도로교 설계기준에서 제시한 저항계수 0.3보다 커서 경제적인 설계가 가능할 것으로 판단된다.

최적 열원용량 산정을 위한 모델건물 공조부하 시뮬레이션 분석 (Thermal Load Simulation Analysis on Model Building Estimating Optimum Heat Source Capacity)

  • 박종일;김세환;이성
    • 설비공학논문집
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    • 제19권6호
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    • pp.427-433
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    • 2007
  • Generally, H.V.A.C load capacity in early planning phase can presume with maximum thermal load. Basic data can prove by air conditioning equipment system data analysis at existing building. There are poor and not reliable alternative presentation. In this paper, measured data after use H.V.A.C load calculation K-load program reply choosing standard building and variables simulation. And I founded peak load correlation graph and mode for several kinds of variable and contents of size. I wish that equipment designer is beaconed to produce optimum capacity at building as quantitative through this result.

지하철 역사의 구조 및 특성을 고려한 동력부하밀도 분석 (Power Load Density Analysis considering Structure and Characteristics of Subway Stations)

  • 정현기;차광석
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2006년도 추계학술대회 논문집
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    • pp.912-920
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    • 2006
  • The purpose of this study is to present the design standard for load density in subway station. From the data of electric equipment capacity and electric power consumption for 43 subway stations, current levels of the load density and excess capacity factor were surveyed and analyzed, In addition mean value, standard deviation, maximum value, median value and correlation coefficient were evaluated through excel program. Also it was carried out the regression analysis. The estimation method of load density and design criterion were studied. As a result, load density in this thesis have been proposed : 51.3 $[VA/m^2]$ on the general power load can be a standard value for subway station.

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