• 제목/요약/키워드: Model compression

검색결과 1,808건 처리시간 0.023초

습식 압축을 채용한 재생 가스터빈 사이클의 엑서지 해석 (Exergy Analysis of Regenerative Wet-Compression Gas-Turbine Cycles)

  • 김경훈;김세웅;고형종
    • 에너지공학
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    • 제18권2호
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    • pp.93-100
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    • 2009
  • 습식압축으로 압축소요동력을 줄이고 재생기로 배기가스 에너지를 회수함으로써 열효율을 향상시킬 수 있는 습식압축 재생 브레이튼 사이클에 대하여 엑서지 해석을 수행하였다. 해석모델을 통하여 시스템의 엑서지 효율과 요소별 엑서지 파괴비 및 배기가스로 인한 엑서지 손실비에 미치는 압력비와 물분사율의 영향을 조사하였다. 전형적인 운전조건에 대한 계산 결과 습식압축 재생 가스터빈 사이클에 의하여 엑서지 효율을 상당히 향상시킬 수 있음을 확인하였다. 물 분사 효과는 배기가스의 엑서지 손실의 감소와 출력 동력의 증가로 나타난다.

종이 앵글 포장재의 재료역학적 특성과 유한요소해석 (Finite Element Analysis and Material Mechanics of Paper Angle)

  • 박종민
    • Journal of Biosystems Engineering
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    • 제30권6호통권113호
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    • pp.347-353
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    • 2005
  • Paper angle, environment friendly packaging material, has been mainly used as an edge protector, But, in the future, paper angle will be applied to package design of heavy product such as strength reinforcement or unit load system (ULS). Therefore. understanding of buckling behavior fur angle itself, compression strength and quality standard are required. The objectives of this study were to characterize the buckling behavior by theoretical and finite element analysis, and to develop compression strength model by compression test for symetric and asymetric paper angle. Based on the result of theoretical and finite element analysis, as applied load level was bigger and/or the length of angle was longer, incresing rate of buckling of asymmetric paper angle was higher than that of symmetric paper angle. Decreasing rate of minimum principal moment of inertia significantly increased as the extent of asymmetric angle increased, and buckling orientation of angle was open- direction near the small web. Incresing rate of maximum compression strength (MCS) for thickness of angle decreased as the web size increased in symmetric angle. MCS of asymmetric angle of 43${\times}$57 and 33${\times}$67 decreased $15{\~}18\%$ and $65{\~}78\%$, and change of buckling increased $12{\~}13\%$ and $62{\~}66\%$, respectively.

탄산염 성분이 포함된 사질토의 장기침하 예측 (Prediction of Long-Term Settlement of Sands Containing Carbonates)

  • 황웅기;이용수;황중호;김태형
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.993-998
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    • 2009
  • This study was conducted to propose the model that is able to predict long-term settlement of sands containing carbonates. We can observe that in addition to the initial elastic compression, a considerable additional compression occurs with long-term period in some sands. The compressibility of sands is significantly dependent on particle characteristics. Some sands have many pores and particularly has an angular shape. To predict of long-term settlement of these sands which contain carbonates, first of all a variety of tests which are to assess chemical, physical and compression characteristics of these sands were conducted. Second, in order to know settlement with time, the time parameter was determined by analyzing the measured data obtained from $\bigcirc\bigcirc$ area. The measured settlement of this area shows that in addition to the initial elastic compression, a considerable additional compression occurring with time. It was caused by the crushing, shattering, and rearrangement of particles, which were real phenomena in sandy soils under loading condition. Based on this case study, we proposed that a simple method is able to predict settlement with time of sandy soil containing carbonates.

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종이 앵글의 역학적 거동 분석과 강도 표준화 연구 (Mechanical Behavior Analysis and Strength Standardization of Paper Angle)

  • 박종민
    • 한국포장학회지
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    • 제11권1호
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    • pp.1-10
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    • 2005
  • Paper angle, environment friendly packaging material, has been mainly used as an edge protector. But, we have perceived its application to package design of heavy product such as strength reinforcement or unit load system (ULS) in the future. Above all, understanding of buckling behavior for angle itself and compression strength and quality standard have to be accomplished for the paper angle to be used for this purpose. The purpose of this study was to elucidate the buckling behavior through theoretical and finite element analysis, and to develop compression strength model by compression test for symetric and asymetric paper angle. Based on the result of theoretical and finite element analysis, increasing rate of buckling of asymmetric paper angle was higher as applied load level was bigger and/or the length of angle was longer than that of symmetric paper angle. Decreasing rate of minimum principal moment of inertia was remarkably increased as the extent of asymmetric angle is bigger, and buckling orientation of angle was open direction near the small web. Increasing rate of maximum compression strength (MCS) for thickness of angle was smaller as the web size was bigger in symmetric angle. MCS of asymmetric angle of $43{\times}57$ and $33{\times}67$ was decreased $15{\sim}18%$ and $65{\sim}78%$, and change of buckling was increased $12{\sim}13%$ and $62{\sim}66%$, respectively.

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Research on eccentric compression of ultra-high performance fiber reinforced concrete columns

  • Ma, Kaize;Ma, Yudong;Liu, Boquan
    • Structural Engineering and Mechanics
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    • 제71권3호
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    • pp.211-221
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    • 2019
  • To study the eccentric compression behavior of ultra-high performance fiber reinforced concrete (UHPFRC) columns, six UHPFRC columns and one high-strength concrete (HSC) column were tested. Variation parameters include load eccentricity, volume of steel fibers and stirrup ratio. The crack pattern, failure mode, bearing capacity, and deformation of the specimens were studied. The results showed that the UHPFRC columns had different failure modes. The large eccentric compression failure mode was the longitudinal tensile reinforcements yielded and many horizontal cracks appeared in the tension zone. The small eccentric compression failure mode was the longitudinal compressive reinforcements yielded and vertical cracks appeared in the compressive zone. Because of the bridging effect of steel fibers, the number of cracks significantly increased, and the width of cracks decreased. The load-deflection curves of the UHPFRC columns showed gradually descending without sudden dropping, indicating that the specimens had better deformation. The finite element (FE) analysis was performed to stimulate the damage process of the specimens with monotonic loading. The concrete damaged plasticity (CDP) model was adopted to characterize the behaviour of UHPFRC. The contribution of the UHPFRC tensile strength was considered in the bearing capacity, and the theoretical calculation formulas were derived. The theoretical calculation results were consistent with the test results. This research can provide the experimental and theoretical basis for UHPFRC columns in engineering applications.

Axial compression performance of basalt-fiber-reinforced recycled-concrete-filled square steel tubular stub column

  • Zhang, Xianggang;Gao, Xiang;Wang, Xingguo;Meng, Ercong;Wang, Fang
    • Advances in concrete construction
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    • 제10권6호
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    • pp.559-571
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    • 2020
  • This study aimed to inspect the axial compression mechanical performance of basalt-fiber-reinforced recycled - concrete (BFRRC)-filled square steel tubular stub column. The replacement ratio of recycled coarse aggregate (RCA) and the basalt fiber (BF) dosage were used as variation parameters, and the axial compression performance tests of 15 BFRRC-filled square steel tubular stub column specimens were conducted. The failure mode and the load-displacement/strain curve of the specimen were measured. The working process of the BFRRC-filled square steel tubular stub column was divided into three stages, namely, elastic-elastoplasticity, sudden drawdown, and plasticity. The influence of the design parameters on the peak bearing capacity, energy dissipation performance, and other axial compression performance indexes was discussed. A mathematical model of segmental stiffness degradation was proposed on the basis of the degradation law of combined secant-stiffness under axial compression. The full-process curve equation of axial compressive stress-strain was proposed by introducing the influencing factors, including the RCA replacement ratio and the BF dosage, and the calculated curve agreed well with the test-measured curve.

The combined reinforcement to recycled aggregate concrete by circular steel tube and basalt fiber

  • Zhang, Xianggang;Zhang, Songpeng;Chen, Xu;Gao, Xiang;Zhou, Chunheng
    • Computers and Concrete
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    • 제29권 5호
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    • pp.323-334
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    • 2022
  • In order to study the axial compression performance of basalt-fiber reinforced recycled concrete (BFRRC) filled circular steel tubular short columns, the axial compression performance tests of seven short column specimens were conducted to observe the mechanical whole-process and failure mode of the specimens, the load-displacement curves and the load-strain curves of the specimens were obtained, the influence of design parameters on the axial compression performance of BFRRC filled circular steel tubular short columns was analyzed, and a practical mathematical model of stiffness degradation and a feasible stress-strain curve equation for the whole process were suggested. The results show that under the axial compression, the steel tube buckled and the core BFRRC was crushed. The load-axial deformation curves of all specimens show a longer deformation flow amplitude. Compared with the recycled coarse aggregate (RCA) replacement ratio and the basalt fiber dosage, the BFRRC strength has a great influence on the peak bearing capacity of the specimen. The RCA replacement ratio and the BFRRC strength are detrimental to ductility, whereas the basalt fiber dosage is beneficial to ductility.

사석지반에 대한 쌍곡선 구성모델의 적용성 연구 (Study on the Adaptability of Hyperbolic Constitutive Model for Rubble Stone)

  • 황세환;김종수;권오균
    • 한국지반환경공학회 논문집
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    • 제3권3호
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    • pp.53-63
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    • 2002
  • 최근까지 우리나라의 암성토의 침하량을 산정하기 위해 가정된 탄성계수를 이용한 선형탄성해석 외에 다른 방법들이 시도되지 않고 있다. 특히 해상투기된 사석으로 구성된 방파제 구조물의 침하량을 정확히 산정하는 것은 거의 불가능하였다. 이 연구에서는 북제주의 채석장에서 채취한 3조의 다공질의 북제주의 화산암시료에 대해 대형삼축압축시험을 수행하였고 비선형모델을 이용하여 삼축압축시험을 수치해석으로 모사하였다. 실험과 해석에 의한 응력-변형률 거동이 비교되어 사석에 대한 하이퍼볼릭 구성모델의 적용성을 조사하였다. 비교 결과 두 응력-변형률 거동이 잘 일치하므로 하이퍼볼릭 모델은 느슨한 암성토체의 침하량을 산정하는데 적절한 것으로 판단되어진다.

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수직하중을 받는 모형 강널말뚝의 거동 (Behavior of Model Sheet Piles under Vertical Loads)

  • 윤여원;김두균
    • 한국지반공학회지:지반
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    • 제14권6호
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    • pp.5-16
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    • 1998
  • 모래지반에서 모형강널말뚝의 수직하중에 대한 거동을 알아보기 위하여 말뚝단면적이 동일하고 플랜지의 개구정도가 각기 다른 5개의 모형말뚝을 제작하였으며, 각 말뚝에 대해 상대밀도, 하중작용방향(압축, 인발)을 달리하여 토조내에서 실내 모형말뚝시험을 수행하였다. 동일한 말뚝에 대해 인발하중을 받는 경우보다 압축하중을 받는 경우가 극한지지력에 있어 100%가량 크며, 상대밀도가 조밀할수록 그 차이는 더욱 증가하였다. 인발재하시험에서 극한지지력과 극한상태의 침하량은 상대밀도가 증가함에 따라 증가하였으며, 동일한 지반조건하에서 개구정도의 변화에 따른 극한지지력과 침하량은 일정한 범위내에 존재하였다. 압축하중조건하에서 극한지지력은 개구정도가 30$^{\circ}$이내에 있을 경우 가장 크게 나타났으며, 상대밀도가 커질수록 이러한 경향이 뚜렷하게 나타났다. 단면의 변화에 따른 극한하중 변화는 하중분포의 해석결과 부분폐색효과에 기인된 것으로 생각된다.

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이축압축 조건에서 공동이 존재하는 유사 절리암반 모델의 파괴 거동 (Fracture Behaviors of Jointed Rock Model Containing an Opening Under Biaxial Compression Condition)

  • 사공명;유재호;박두희;이준석
    • 한국지반공학회논문집
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    • 제25권10호
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    • pp.17-30
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    • 2009
  • 지하에 공동을 건설하는 터널 공사의 경우 초기 응력의 집중 및 발파와 같은 시공단계에서의 과도한 에너지의 적용으로 인하여 주변 암반에 손상을 발생시킨다. 이러한 손상의 발생은 터널에 작용하는 하중 및 터널 주변 암반의 흐름조건에 상당한 영향을 끼친다. 이러한 이유로 터널 주변에 발생하는 손상구간에 대하여 다양한 연구가 수행되었다. 본 연구에서는 유사암석으로 제작된 공동이 존재하는 절리모델의 이축압축실험을 통하여 공동주변의 손상발생을 연구하였다. 절리면은 수평면과 $30^{\circ}$, $45^{\circ}$, $60^{\circ}$의 조건으로 형성되었으며, 초조강시멘트 재료를 이용하여 유사절리모델을 제작하였다. 이축압축 실험결과 공동주변에서는 절리면에 수직한 방향으로 인장균열의 발생이 관측되었으며, 균열의 진행으로 인하여 암반블록이 형성되었으며, 진행하는 인장균열이 다른 절리면에 도달하여 암반블록이 완전히 형성된 경우 탈락하는 과정을 보였다. 이러한 인장균열의 진전은 절리면의 각도에 따라 상이한데 절리면의 각도가 클수록 안정적이며 진행성의 균열 진전 양상이 관측되었다. 이러한 인장균열의 발달은 절리면으로 구성된 암편을 보로 가정 할 경우 공동의 곡률로 인한 기하학적 형상의 불규칙성으로 인하여 모멘트가 작용하는 것으로 판단된다. 이상의 실험결과를 입자요소해석 방법을 기반으로 하는 PFC 2D를 이용하여 모사하였다. 해석결과 실험에서 관측한 바와 같이 절리면 각도가 작을수록 손상대의 폭은 넓어지며 인장균열의 진행에 의한 암반블록의 형성이 관측되었다. 또한 상호작용이 발생하는 균열을 조사한 결과 수치해석에서도 절리면의 각도가 작은 조건에서 진행성의 파괴가 나타났다.