• 제목/요약/키워드: Spacing-to-diameter ratio

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사질토 지반에서 군말뚝의 수평거동에 관한 연구 (Lateral Behavior of Group Pile in Sand)

  • 김영수;김병탁
    • 한국지반공학회논문집
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    • 제16권1호
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    • pp.117-129
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    • 2000
  • 본 논문은 균질 및 비균질 지반에서의 군말뚝수평거동에 관하여 고찰하였다. 본 연구는 군말뚝수평거동에 대한 말뚝중심간격, 말뚝 배열, 말뚝 중심 간격비, 말뚝 선단 구속조건, 편심하중 그리고 지반조건의 영향들에 관하여 실험적인 연구를 수행하였다. 주동말뚝에서의 군말뚝 효율과 수평변위는 말뚝중심간격과 말뚝수에 상당히 의존함을 알 수 있다. 말뚝중심간격이 6D이고 $3\times3$배열 말뚝인 경우, 선단고정말뚝의 수평 지지력은 선단자유말뚝의 경우보다 40-100%크게 나타났다. 모형실험의 결과들에 근거하여, 군말뚝의 개개 말뚝이 단일말뚝과 동일하게 거동하는 말뚝 중심간격은 상대밀도 61.8%와 32.8%의 경우 6D 로 나타났으나, 상대밀도 90%의 조밀한 지반에서는 8D 간격으로 추정할 수 있다. 본 연구에서는 군말뚝 효율에 대하여 말뚝 중심간격, 말뚝 수, 그리고 지반상대밀도의 변수로 표현되는 실험식을 제안하였다. 3$\times$3 배열의 군말뚝에서 앞행(lead row) 말뚝의 하중 분담율은 말뚝 중심간격 3D인 경우에 41.6%-52.4% 정도 그리고 6D인 경우에 34%-40%정도로 나타났다. 군말뚝에서 중첩효과(shadowing effect)는 하중 직각방향보다는 하중 재하방향에서 더 크게 발생하였다.

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격자배치 성토지지말뚝의 아칭효과에 대한 이론적 연구 (A Theoretical Study on Arching Effect of Embankment Pile Grid)

  • 이승현
    • 한국산학기술학회논문지
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    • 제18권1호
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    • pp.302-309
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    • 2017
  • 이론적 연구를 통하여 말뚝지름과 말뚝설치간격, 성토재의 내부마찰각 그리고 성토고가 성토지지말뚝의 아칭효율에 미치는 영향을 살펴보았다. 성토지지말뚝 상부의 성토체에 발생하는 아치모델에 대하여 아칭효율을 계산함에 있어 아치의 천정부파괴 및 말뚝캡에 작용하는 하중계산을 통한 아칭효율이 같게 되는 임계 상대간격비를 구할 수 있는 식을 제시하였으며 설계에 유용하게 쓰일 것으로 판단된다. 본 연구에서 수행된 계산결과에 따르면 상대간격비가 작은 경우는 말뚝캡에 작용하는 하중을 통해 계산되는 아칭효율이 설계를 지배하게 됨을 알 수 있으며 상대간격비가 커질수록 아치의 천정부파괴에 의한 아칭효율이 설계를 지배함을 알 수 있다. 말뚝중심간 설치간격에 대한 말뚝지름의 비를 나타내는 ${\beta}$값이 커질수록 말뚝 캡에 작용하는 하중에 의해 계산되는 아칭효율이 설계를 지배하게 되는 임계 상대간격비가 작아짐을 알 수 있었는데 ${\beta}$값이 0.5인 경우 임계 상대간격비는 0.35이며 ${\beta}$값이 0.2인 경우 임계 상대간격비는 0.85이었다. 계산결과에 따르면 Rankine 수동토압계수($K_p$)가 클수록 임계 상대간격비는 작아져서 $K_p$가 5인 경우 임계 상대간격비는 0.23이었으며 $K_p$가 2인 경우 임계 상대간격비는 0.85이었다. 말뚝캡이 성토지반에 대해 차지하는 면적비가 9%인 경우 아칭효율은 54%이었으며 성토재의 수동토압계수가 3인 경우 아칭효율은 61%이었는데 두 경우 모두 말뚝캡에 작용하는 하중에 의해 계산되는 아칭효율이 지배하는 상대간격비가 0.5보다 큼을 알 수 있어 실제적인 설계에 적용될 수 있음을 알 수 있었다.

Experimental and numeral investigation on self-compacting concrete column with CFRP-PVC spiral reinforcement

  • Chen, Zongping;Xu, Ruitian
    • Earthquakes and Structures
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    • 제22권1호
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    • pp.39-51
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    • 2022
  • The axial compression behavior of nine self-compacting concrete columns confined with CFRP-PVC spirals was studied. Three parameters of spiral reinforcement spacing, spiral reinforcement diameter and height diameter ratio were studied. The test results show that the CFRP strip and PVC tube are destroyed first, and the spiral reinforcement and longitudinal reinforcement yield. The results show that with the increase of spiral reinforcement spacing, the peak bearing capacity decreases, but the ductility increases; with the increase of spiral reinforcement diameter, the peak bearing capacity increases, but has little effect on ductility, and the specimen with the ratio of height to diameter of 7.5 has the best mechanical properties. According to the reasonable constitutive relation of material, the finite element model of axial compression is established. Based on the verified finite element model, the stress mechanism is revealed. Finally, the composite constraint model and bearing capacity calculation method are proposed.

철근 캐스터블 내화물의 고온특성에 관한 연구 (A Stydy on Steel Wire Fiber Reinforced Refractory Castable)

  • 박금철;최영섭;한문희;장영재;박근원
    • 한국세라믹학회지
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    • 제17권2호
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    • pp.69-74
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    • 1980
  • This study deals with the wire content, wire diameter, aspect ratio , it's arrangement of steel, wire fiber and the sorts of castable which affected the character of steel wire fiber reinformced refractory castable. Two kinds of alumina based refractory castables, one is for 1650℃ and the other is for 1800℃, and stainless steel which is SUS 304 type 0.25, 0.34 , 0.37 and 0.50m/min diameter were used respectively. Aspect ratio was adjusted to 50, 75, 100 and steel fiber content was also adjusted to 1-4wt% each. The results of the experiment were as follows : 1. At firing temperature around 1,000℃, MOR is increased with increasing wire content and aspect ratio with decreasing firing temperature, which depends on the Romualdi's Fiber Spacing Theory. But for calculation of the fiber spacing, Swamy equation is more a aplicable to the extensive fiber mixing conditions. However, the condition differs from the above at firing temperature around 1,350℃ ,because of the degradation of wire and the progress of sintering of castable. 2. Linear change is getting larger corresponding to the increase of wire content, and the spaling resistivity is increasing corresponding to the increase of wire content and to aspect ratio, and with decreasing wire diameter. 3. Firing shrinkage under load is getting greater as higher wire content, and the shrinkage of the test pieces which fiber is vertically oriented is getting greater than the test pieces which fiber is randomly oriented.

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Corrosion effects on tension stiffening behavior of reinforced concrete

  • Shayanfar, M.A.;Ghalehnovi, M.;Safiey, A.
    • Computers and Concrete
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    • 제4권5호
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    • pp.403-424
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    • 2007
  • The investigation of corrosion effects on the tensile behavior of reinforced concrete (RC) members is very important in region prone to high corrosion conditions. In this article, an experimental study concerning corrosion effects on tensile behavior of RC members is presented. For this purpose, a comprehensive experimental program including 58 cylindrical reinforced concrete specimens under various levels of corrosion is conducted. Some of the specimens (44) are located in large tub containing water and salt (5% salt solution); an electrical supplier has been utilized for the accelerated corrosion program. Afterwards, the tensile behavior of the specimens was studied by means of the direct tension tests. For each specimen, the tension stiffening curve is plotted, and their behavior at various load levels is investigated. Average crack spacing, loss of cross-section area due to corrosion, the concrete contribution to the tensile response for different strain levels, and maximum bond stress developed at each corrosion level are studied, and their appropriate relationships are proposed. The main parameters considered in this investigation are: degree of corrosion ($C_w$), reinforcement diameter (d), reinforcement ratio (${\rho}$), clear concrete cover (c), ratio of clear concrete cover to rebar diameter (c/d), and ratio of rebar diameter to reinforcement percentage ($d/{\rho}$).

Soil and ribbed concrete slab interface modeling using large shear box and 3D FEM

  • Qian, Jian-Gu;Gao, Qian;Xue, Jian-feng;Chen, Hong-Wei;Huang, Mao-Song
    • Geomechanics and Engineering
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    • 제12권2호
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    • pp.295-312
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    • 2017
  • Cast in situ and grouted concrete helical piles with 150-200 mm diameter half cylindrical ribs have become an economical and effective choice in Shanghai, China for uplift piles in deep soft soils. Though this type of pile has been successful used in practice, the reinforcing mechanism and the contribution of the ribs to the total resistance is not clear, and there is no clear guideline for the design of such piles. To study the inclusion of ribs to the contribution of shear resistance, the shear behaviour between silty sand and concrete slabs with parallel ribs at different spacing and angles were tested in a large direct shear box ($600mm{\times}400mm{\times}200mm$). The front panels of the shear box are detachable to observe the soil deformation after the test. The tests were modelled with three-dimensional finite element method in ABAQUS. It was found that, passive zones can be developed ahead of the ribs to form undulated failure surfaces. The shear resistance and failure mode are affected by the ratio of rib spacing to rib diameter. Based on the shape and continuity of the failure zones at the interface, the failure modes at the interface can be classified as "punching", "local" or "general" shear failure respectively. With the inclusion of the ribs, the pull out resistance can increase up to 17%. The optimum rib spacing to rib diameter ratio was found to be around 7 based on the observed experimental results and the numerical modelling.

Effects of Injection Configuration on Mixing in Supersonic Combustor

  • Sakamoto, Hayato;Matsuo, Akiko;Mitani, Tohru
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.48-54
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    • 2004
  • The effects of injector spacing s and injector diameter d on mixing are numerically investigated in supersonic combustor with perpendicular injection behind a backward-facing step. Simulations are reported for airstream Mach number of 2.4. Parameters are changed on following 4 cases to investigate the effects of injector configuration on mixing efficiency $\eta_m$. In the case of varying d or s, dynamic pressure ratio $Rq(=(pu^2)_j/(pu^2)_a)$ is also varied to keep bulk equivalence ratio $\Phi({\oe})Rq.d^2/s)$ constant. (l) Injector spacing s is varied at constant $\Phi$=0.5, 1, 2 for injector diameter d=6mm. In the case of $\Phi$=1, $\eta_m$ has its maximum value at s=24mm. The reason is that increase of $\eta_m$. , by widening spacing at Rq=constant competes with decrease of $\eta_m$ by increasing Rq at s=constant. When spacing is narrow, the flow field of vicinity of injector becomes two-dimensional because adjacent jets interferes each other. By widening spacing, air is easily entrained by three-dimensional effect. This mechanism also appears in the case of $\Phi$=0.5, 2 for d=6mm, and $\eta_m$. reaches its maximum value at s=24mm for $\Phi$=0.5 and at s=42mm for $\Phi$=2. (2) In the case of injector diameter d varied at $\Phi$=1 for s=30mm, $\eta_m$. has its maximum value at d=3mm. The reason is that decrease of $\eta_m$ by increasing injector diameter competes with increase of $\eta_m$ by decreasing Rq at d=constant.(3) In the case of s varied at $\Phi$=0.5, 1,2 for d=3mm, the injector spacing at which mixing efficiency has its maximum value is s= 18mm for $\Phi$=0.5, s=24mm for $\Phi$=1, s=24mm for $\Phi$=2. Therefore it is found that d=3mm and s=24mm can be optimum configuration over a range of $\Phi$=0.5~2.(4) The effect of h on the optimum spacing is investigated. s is varied for d=6mm at step height h=4, 6, 8mm. The simulation results do not show significant change on the step height.

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집적암거에 의한 대류수개발에 관한 연구 (A study on the Development of Ground water by the Infiltration Gallery)

  • 한욱동
    • 한국농공학회지
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    • 제15권3호
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    • pp.3096-3106
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    • 1973
  • As a link in the chain of antidrought measure, our attempt is made to obtain basic informations on the construction of an infiltration gallary which can be supplied with irrigation water by catching of underground water in small river beds, which is economical, permanent and efficient. The experiment was made, concerning the structure of catchment conduits, by constructing a model sand tank $1.5m{\times}5m{\times}1.5m$ in dimension made of reinforced concrete. Various kinds of measuring equipment were attached to the model tank which contains a set of catchment conduits, each of them was made 30cm in diameter and 60cm in length with the ratio of sectional area to total area of influx holes 10:1, 20:1, 30:1. The average size of influx holes was fixed from 0mm to 10mm, 20mm and 30mm in diameter respectively. Obtained results are as follow; (a) In view of the water catchment capacity, manufacturing cost and the antipressure strength of the catchment conduits, it is the best method to decide the total number of influx holes 20 per sq. meter of each tile surface, and the size of influx holes 20mm in diameter, when the conduits have diameter less than 1m. (b) The greatest factor of safety against external load is to arrange the influx holes in a zigzag manner on the tile surface. The most effective formula of arrangement is $S{\geqq}\sqrt{2gd}$ where: s : spacing of opening row. g : spacing of opening line. d : diameter of influs hole.

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사질토 지반에서 말뚝의 수평거동 (Lateral Behavior of Sin811e and Group Piles in Sand)

  • 김영수;김병탁
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 가을 학술발표회 논문집
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    • pp.3-44
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    • 1999
  • This paper discusses the lateral behavior of single and group piles in homogeneous and non-homogeneous(two layered) soil. In the single pile, the model tests were conducted to investigate the effects on ratio of lower layer height to embedded pile length, ratio of soil modules of upper layer to lower layer, boundary rendition of pile head and tip, embedded pile length, pile construction condition, ground condition with saturate and moisture state in Nak-Dong river sand. Also, in the group pile, the model tests were to investigate the effects on spacing-to-diameter ratio of pile, pile array, ratio of pile spacing, boundary condition of pile head and tip, eccentric load and ground condition. The maximum bending moment and deflection induced in active piles were found to be highly dependent on the relative density, pile construction condition, boundary condition of pile head and tip. Based on the results obtained, it was found that the decrease of lateral bearing capacity in saturated sand was in the range of 31% - 53% as compared with the case of dry sand. Also, in the group pile, a spacing-to-diameter of 6.0 seems to be large enough to eliminate the group effect for the case of relative density of 61.8%, and 32.8%, and then each pile in such a case behaves essentially the same as a single pile. In this study, the program is developed by using the modified Chang method which used p - y method and the exact solution of governing equation of pile and it can be used to calculate the deflection, bending moment and soil reaction with FDM in non-homogeneous soil. In comparing the modified Chang method with field test results, the predict results shows better agreement with measured results in field tests.

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스터럽간격, 철근직경 및 부식률에 따른 인발 실험체의 부착강도 평가 (Evaluation of Bond Strength of Deformed Bars in Pull-out Specimens Depending on Stirrups Spacing, Rebar diameter and Corrosion Rate)

  • 지성우;정호성;윤차영;이재연;김강수
    • 한국구조물진단유지관리공학회 논문집
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    • 제27권3호
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    • pp.47-57
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    • 2023
  • 본 연구에서는 스터럽 간격, 철근 직경 및 부식률이 이형철근의 부착강도에 미치는 영향을 파악하고자 인발실험이 수행되었다. 스터럽 간격, 철근 직경 및 부식률이 상이한 12개의 인발 실험체를 RILEM RC 6 기준에 따라 제작하였다. 스터럽이 보강된 실험체에 대하여, 부식률이 3% 미만인 경우에는 부착강도가 증가하였으나, 부식률이 3%를 초과한 경우에는 부착강도가 감소하였다. 반면, 스터럽이 보강되지 않은 실험체에 대해서는, 부식률이 증가함에 따라 부착강도가 감소하였다. 스터럽 간격 및 부식률 대비, 철근 직경이 부착강도에 미치는 영향은 적은 것으로 나타났다. 이에 따라 스터럽 비율 및 부식률을 변수로 사용하는 인발실험체의 부착강도 회귀모형이 제시되었으며, 제안모델은 선행 모델들에 비해 낮은 오차를 나타내었다.