• 제목/요약/키워드: Energy load

검색결과 5,196건 처리시간 0.033초

재하속도에 따른 SM490강재 원형강기둥의 이력거동 특성 (Characteristics of Hysteretic Behavior of Circular Steel Column using SM490 for Loading Rate)

  • 장갑철;장경호
    • 대한토목학회논문집
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    • 제26권6A호
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    • pp.935-941
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    • 2006
  • 지진과 같은 동적반복하중을 받은 강구조물은 정적하중시와 다른 이력거동을 보인다. 이는 동적변형중인 구조용 강재는 정적상태와 다른 역학적 특성 및 응력-변형률 관계를 보이기 때문이다. 즉, 지진하중을 받는 원형 강기둥과 같은 강구조물의 이력거동을 정확히 예측하기 위해서는 정동적 변형 상태를 가정한 재하속도에 따른 대상구조물 내하력 및 변형의 차이점을 명확히 파악해야 한다. 이에 본 연구에서는 저자에 의해 제안된 SM490강재의 동적 반복소성모델과 이를 적용한 3차원 탄소성 유한요소해석을 이용하여 재하속도와 지름-두께(D/t)비를 변수로한 SM490 원형강기동의 동적해석을 수행하였다. 해석 결과를 통하여 정적에서 동적변형상태로 재하속도 변화에 따른 SM490 원형강기둥의 이력거동 특성 즉, 내하력 및 에너지소산효율의 변화를 명확히 파악하였다.

Free and forced vibration analysis of FG-CNTRC viscoelastic plate using high shear deformation theory

  • Mehmet Bugra Ozbey;Yavuz Cetin Cuma;Ibrahim Ozgur Deneme;Faruk Firat Calim
    • Advances in nano research
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    • 제16권4호
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    • pp.413-426
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    • 2024
  • This paper investigates the dynamic behavior of a simply supported viscoelastic plate made of functionally graded carbon nanotube reinforced composite under dynamic loading. Carbon nanotubes are distributed in 5 different shapes: U, V, A, O and X, depending on the shape they form through the thickness of the plate. The displacement fields are derived in the Laplace domain using a higher-order shear deformation theory. Equations of motion are obtained through the application of the energy method and Hamilton's principle. The resulting equations of motion are solved using Navier's method. Transforming the Laplace domain displacements into the time domain involves Durbin's modified inverse Laplace transform. To validate the accuracy of the developed algorithm, a free vibration analysis is conducted for simply supported plate made of functionally graded carbon nanotube reinforced composite and compared against existing literature. Subsequently, a parametric forced vibration analysis considers the influence of various parameters: volume fractions of carbon nanotubes, their distributions, and ratios of instantaneous value to retardation time in the relaxation function, using a linear standard viscoelastic model. In the forced vibration analysis, the dynamic distributed load applied to functionally graded carbon nanotube reinforced composite viscoelastic plate is obtained in terms of double trigonometric series. The study culminates in an examination of maximum displacement, exploring the effects of different carbon nanotube distributions, volume fractions, and ratios of instantaneous value to retardation times in the relaxation function on the amplitudes of maximum displacements.

무선전력전송의 송전 공진코일에서 발생하는 방전현상 연구 (Study on Discharge Phenomenon Occurring in Transmitting Resonance Coil of Wireless Power Transmission)

  • 이기범
    • 한국전자통신학회논문지
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    • 제19권2호
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    • pp.355-360
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    • 2024
  • 본 논문에서는 4-코일 방식의 자기공진 무선전력전송 시스템을 구현하는 데 있어서, 송전 공진코일의 끝단에서 발생하는 선간 방전현상을 연구하였다. 자기공진 무선전력전송은 급전코일, 송전 공진코일, 수전 공진코일, 부하코일로 구성되어 있다. 여기서 송전 공진코일은 급전코일에서 발생한 자기장을 증폭하여 전방의 수전 공진코일로 전달하는 역할을 한다. 큰 전력을 전송하기 위하여 급전코일에 높은 전류를 흘려주면 송전 공진코일 끝단에 높은 전압이 유기되어 선간 방전현상이 일어나게 된다. 선간 방전현상은 송전기 케이스를 손상시키게 되고, 송전기를 사용할 수 없는 상태로 만든다. 따라서 이러한 선간 방전현상을 제거하기 위하여, 선간 방전을 일으키는 송전 공진코일에 유기되는 전압을 분석하고, 해결 방안을 제시하였다.

대형 고속프레스의 유한요소해석을 통한 진동 및 소음에 대한 연구 (A Study on Vibration and Noise through Finite Element Analysis of Large High Speed Press)

  • 김승수;정철재;이춘규
    • Design & Manufacturing
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    • 제17권4호
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    • pp.14-23
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    • 2023
  • The electric vehicle market is developing rapidly around the world. Also, parts of electric vehicles require precision.In order to produce high-precision motor cores,Press equipment must also have good precision. Drive motor cores are an important technology for electric vehicles. It uses a large high-speed press to mass-produce drive motor cores. Because it's a large high-speed press, there are many reasons why the precision is not good. One of the causes is vibration and noise. Recently, as environmental demands have become stricter, regulations on noise and vibration have been strengthened. It is important for press machines to reduce vibration first for sound insulation and dust proofing. This is because the "breakthrough" phenomenon occurs in the press. Dynamic precision is the precision under the load of the press, Design considering strain and stiffness shall be made. Vibration and noise may occur due to SPM of high-speed press,And vibration and noise can cause structural deformation of the press. Structural deformation of the press can affect the precision of the product.Noise and vibration also cause problems for workers and work environments. Problems with vibration and noise occur during press processing, and vibration and noise lead to damage to the mold or defects in the product. Reliability in high-quality technology must be secured with low noise and low vibration during press processing. Modular shape and deformation energy effects were analyzed through finite element analysis. In this study, a study on vibration and noise countermeasures was conducted through finite element analysis of a large high-speed press.

Impact of openings on the structural performance of ferrocement I-Beams under flexural loads

  • Yousry B.I. Shaheen;Ghada M. Hekal;Ayman M. Elshaboury;Ashraf M. Mahmoud
    • Structural Engineering and Mechanics
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    • 제90권4호
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    • pp.371-390
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    • 2024
  • Investigating the impact of openings on the structural behavior of ferrocement I-beams with two distinct types of reinforcing metallic and non-metallic meshes is the primary goal of the current study. Up until failure, eight 250x200x2200 mm reinforced concrete I-beams were tested under flexural loadings. Depending on the kind of meshes used for reinforcement, the beams are split into two series. A control I-beam with no openings and three beams with one, two, and three openings, respectively, are found in each series. The two series are reinforced with three layers of welded steel meshes and two layers of tensar meshes, respectively, in order to maintain a constant reinforcement ratio. Structural parameters of investigated beams, including first crack, ultimate load, deflection, ductility index, energy absorption, strain characteristics, crack pattern, and failure mode were reported. The number of mesh layers, the volume fraction of reinforcement, and the kind of reinforcing materials are the primary factors that vary. This article presents the outcomes of a study that examined the experimental and numerical performance of ferrocement reinforced concrete I-beams with and without openings reinforced with welded steel mesh and tensar mesh separately. Utilizing ANSYS-16.0 software, nonlinear finite element analysis (NLFEA) was applied to illustrate how composite RC I-beams with openings behaved. In addition, a parametric study is conducted to explore the variables that can most significantly impact the mechanical behavior of the proposed model, such as the number of openings. The FE simulations produced an acceptable degree of experimental value estimation, as demonstrated by the obtained experimental and numerical results. It is also noteworthy to demonstrate that the strength gained by specimens without openings reinforced with tensar meshes was, on average, 22% less than that of specimens reinforced with welded steel meshes. For specimens with openings, this value is become on average 10%.

Acoustic emission characteristics during damage-zone formation around a circular opening

  • Jong-Won Lee;Eui-Seob Park;Junhyung Choi;Tae-Min Oh;Min-Jun Kim
    • Geomechanics and Engineering
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    • 제36권5호
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    • pp.511-525
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    • 2024
  • Underground openings significantly affect the mechanical stability of underground spaces and create damaged zones. This study investigated the acoustic emission (AE) characteristics associated with the formation of damaged zones around circular openings. Uniaxial compression experiments were conducted on three types of rock specimens, namely, granite (GN-1 and GN-2), gabbro (GB), and slate (SL), containing a circular opening. AE and digital image correlation (DIC) techniques were used to monitor and evaluate the damaged zones near the circular openings. The AE characteristics were evaluated using AE parameters, including count, energy, amplitude, average frequency, and RA value. The DIC results revealed that the estimated diameters of the damaged zones of GN-1, GN-2, GB, and SL were 1.66D, 1.53D, 1.49D, and 1.9D, respectively. The average displacements at the surface of the damaged zones for these specimens were 0.814, 0.786, 0.661, and 0.673 mm, respectively, thus demonstrating a strong correlation with Young's modulus. The AE analysis with DIC revealed that tensile failure occurred in the direction parallel to the maximum compression axis as the load increased. Thus, this study provides fundamental data for a comprehensive analysis of damaged zones in underground openings and will facilitate the optimization of rock engineering projects and safety assessments thereof.

Mechanical performance analysis of an electromagnetic friction pendulum system based on Maxwell's principle

  • Mao Weikang;Li Xiaodong;Chen Enliang
    • Earthquakes and Structures
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    • 제27권2호
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    • pp.143-154
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    • 2024
  • Friction pendulums typically suffer from poor uplift-restraining. To improve the uplift-restraining and enhance the energy dissipation capacity, this article proposed a composite isolation device based on electromagnetic forces. The device was constructed based on a remote control system to achieve semi-active control of the composite isolation device. This article introduces the theory and design of an electromagnetic chuck-friction pendulum system (ECFPS) and derives the theoretical equation for the ECFPS based on Maxwell's electromagnetic attraction equation to construct the proposed model. By conducting 1:3 scale tests on the electromagnetic device, the gaps between the practical, theoretical, and simulation results were analyzed, and the accuracy and effectiveness of the theoretical equation for the ECFPS were investigated. The hysteresis and uplift-restraining performance of ECFPS were analyzed by adjusting the displacement amplitude, vertical load, and input current of the simulation model. The data obtained from the scale test were consistent with the theoretical and simulated data. Notably, the hysteresis area of the ECFPS was 35.11% larger than that of a conventional friction pendulum. Lastly, a six-story planar frame structure was established through SAP2000 for a time history analysis. The isolation performances of ECFPS and FPS were compared. The results revealed that, under horizontal seismic action, the horizontal seismic response of the bottom layer of the ECFPS isolation structure is greater than that of the FPS, the horizontal vibration response of the top layer of the ECFPS isolation structure is smaller than that of the FPS, and the axial force at the bottom of the columns of the ECFPS isolation structure is smaller than that of the FPS isolation structure. Therefore, the reliable uplift-restraining performance is facilitated by the electromagnetic force generated by the device.

Analytical study of elastic lateral-torsional buckling of castellated steel beams under combined axial and bending loads

  • Saoula Abdelkader;Abdelrahmane B. Benyamina;Meftah Sid Ahmed
    • Steel and Composite Structures
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    • 제52권3호
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    • pp.343-356
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    • 2024
  • This paper presents an analytical solution for correctly predicting the Lateral-Torsional Buckling critical moment of simply supported castellated beams, the solution covers uniformly distributed loads combined with compressive loads. For this purpose, the castellated beam section with hexagonal-type perforation is treated as an arrangement of double "T" sections, composed of an upper T section and a lower T section. The castellated beam with regular openings is considered as a periodic repeating structure of unit cells. According to the kinematic model, the energy principle is applied in the context of geometric nonlinearity and the linear elastic behavior of materials. The differential equilibrium equations are established using Galerkin's method and the tangential stiffness matrix is calculated to determine the critical lateral torsional buckling loads. A Finite Element simulation using ABAQUS software is performed to verify the accuracy of the suggested analytical solution, each castellated beam is modelled with appropriate sizes meshes by thin shell elements S8R, the chosen element has 8 nodes and six degrees of freedom per node, including five integration points through the thickness, the Lanczos eigen-solver of ABAQUS was used to conduct elastic buckling analysis. It has been demonstrated that the proposed analytical solution results are in good agreement with those of the finite element method. A parametric study involving geometric and mechanical parameters is carried out, the intensity of the compressive load is also included. In comparison with the linear solution, it has been found that the linear stability underestimates the lateral buckling resistance. It has been confirmed that when high axial loads are applied, an impressive reduction in critical loads has been observed. It can be concluded that the obtained analytical solution is efficient and simple, and offers a rapid and direct method for estimating the lateral torsional buckling critical moment of simply supported castellated beams.

낙동강 하구둑 방류수에 의한 하구역 수질의 시공간적 변화 (Spatiotemporal Variations of Seawater Quality due to the Inflow of Discharge from Nakdong River Barrage)

  • 윤한삼;박순;이인철;김헌태
    • 한국해양환경ㆍ에너지학회지
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    • 제11권2호
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    • pp.78-85
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    • 2008
  • 본 연구에서는 낙동강 하구둑으로 부터의 일별 하구둑 방류량을 고려한 최근 3년간의 유입오염부하량을 산정하고, 하구역내 수질의 시공간 특성을 평가하여 낙동강 하구둑 방류수의 유입오염부하량에 의한 하구역네 수질의 상호관련성을 평가해보고자 하였다. 본 연구를 통해 얻어진 주요 결과는 다음과 같이 요약할 수 있다. (1) 낙동강 하구둑의 11년간 총 방류량은 $224,576.8{\times}10^6m^3/day$이며, 8월이 23.4%인 $52,634.2{\times}10^6 m^3/day$로 가장 많고 다음으로는 7월 23.1%, 9월 17.0% 순이었다. (2) 낙동강 하구둑으로부터의 2005년 유입오염부하량은 각각 307,591.3 COD-kg/day, 128,746.1 TN-kg/day, 107,625.8 TP-kg/day로 산정되었다. (3)낙동강 하구 해역의 표층 수온이 저층보다 약 $2.137^{\circ}C$ 높고, 저층 염분이 표층보다 2.209%o 높게 나타났으며, 하구둑 방류로 인해 표층 염분이 최소 19.593%o까지 감소하였다. (4) DO, COD, TN, SS의 경우 표층이 저층보다 높은 경향을 나타낸 반면에, TP의 경우 저층이 표층보다 높게 나타났다 (5)갈수기와 홍수기시의 표층 및 저층에서의 수괴는 담수 유입에 따른 밀도차에 의해 수괴가 분리되는 현상이 발생하고 있음을 알 수 있다.

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시화호 산업지역 강우유출수 내 중금속 유출특성 및 위해성 평가 (Characteristics and Risk Assessment of Heavy Metals in the Stormwater Runoffs from Industrial Region Discharged into Shihwa Lake)

  • 나공태;김종근;이정무;이승용;김은수;김경태
    • 한국해양환경ㆍ에너지학회지
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    • 제17권4호
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    • pp.283-296
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    • 2014
  • 본 연구에서는 연안오염총량관리가 시행되고 있는 시화호 유역에서 비점오염 형태로 유입되는 중금속 유출 특성, 오염도 및 위해성을 평가하기 위하여 반월 스마트 허브(산업단지)에 위치한 강우유출수 내 용존성과 입자성 중금속(Co, Ni, Cu, Zn, Cd 및 Pb)을 조사하였다. 용존성 Co와 Ni은 강우초반에 농도가 높고 이후 감소하는 경향을 보였으나, 나머지 용존성 중금속과 입자성 중금속은 강우량 증가에 따라 농도가 큰 폭으로 증가하는 경향을 보였다. 총 중금속 중 입자성 중금속이 차지하는 상대적인 비율은 Pb이 97.2%로 가장 높고 Cu>Cd>Co>Zn>Ni순이었으며, 입자-용존 분배계수($K_d$) 결과는 강우유출수 내 존재하는 Pb는 다른 중금속에 비해 빠르게 입자형태로 제거되는 것으로 나타났다. 본 연구를 통해 1일의 강우 이벤트 동안 2개의 토구를 통해 유출되는 총 중금속의 유출량은 Co 2.21 kg, Ni 30.5 kg, Cu 278.3 kg, Zn 398.3 kg, Cd 0.39 kg 및 Pb 40.0 kg로 나타났다. 연안오염총량관리제도가 시행되고 있는 시화호의 유역면적, 연간 강우량 등을 고려할 때 막대한 양의 중금속이 비점오염의 형태로 시화호로 유입되고 있음을 알 수 있었다. 무엇보다 강우유출수 내 용존성 Ni, Cu 및 Zn의 평균농도는 급성 독성을 나타내는 수질기준(급성 단기기준)를 초과하고 있으며, 입자성 중금속 역시 모든 원소가 배경농도에 비해 농축도(오염도)가 매우 높고, 국내 퇴적물 관리기준(PEL)을 큰 폭으로 초과하고 있어, 주변 해역 환경 및 생태계에 악영향을 미칠 것으로 판단된다.