• 제목/요약/키워드: dissipation effects

검색결과 425건 처리시간 0.031초

LPL EGR 시스템용 압출 튜브 구조의 알루미늄 EGR 쿨러 성능 설계 (Performance Design of Aluminum EGR Cooler Consisting of Extruded Tubes for LPL EGR System)

  • 허형석;배석정;강태구;이준용;서형준
    • 한국자동차공학회논문집
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    • 제25권1호
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    • pp.42-50
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    • 2017
  • A study has been conducted to develop an aluminum EGR cooler for the LPL EGR system of a diesel engine. Aluminum has a much lower density and thermal conductivity that is about 12 times or more than that of stainless steel, so it is advantageous for use in an EGR cooler for weight reduction and cooling performance effects. A design process has been carried out to ensure heat dissipation performance in a restricted space to investigate the geometric parameters and satisfy the requirements for pressure drops at both fluid sides. The tubes of exhaust gas have been designed as extruded tubes. An aluminum EGR cooler consisting of extruded tubes entails a simpler manufacturing process compared to a stainless steel EGR cooler with conventional heat transfer fins. A prototype has been manufactured from the final model selected through the design process. The performance of the aluminum EGR cooler was evaluated and compared with that of the conventional one. The weight of the aluminum EGR cooler is reduced by 22.9%, while performance is significantly improved.

A numerical study on the seismic behavior of a composite shear wall

  • Naseri, Reza;Behfarnia, Kiachehr
    • Computers and Concrete
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    • 제22권3호
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    • pp.279-289
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    • 2018
  • Shear walls are one of the important structural elements for bearing loads imposed on buildings due to winds and earthquakes. Composite shear walls with high lateral resistance, and high energy dissipation capacity are considered as a lateral load system in such buildings. In this paper, a composite shear wall consisting of steel faceplates, infill concrete and tie bars which tied steel faceplates together, and concrete filled steel tubular (CFST) as boundary columns, was modeled numerically. Test results were compared with the existing experimental results in order to validate the proposed numerical model. Then, the effects of some parameters on the behavior of the composite shear wall were studied; so, the diameter and spacing of tie bars, thickness and compressive strength of infill concrete, thickness of steel faceplates, and the effect of strengthening the bottom region of the wall were considered. The seismic behavior of the modeled composite shear wall was evaluated in terms of stiffness, ductility, lateral strength, and energy dissipation capacity. The results of the study showed that the diameter of tie bars had a trivial effect on the performance of the composite shear wall, but increasing the tie bars spacing decreased ductility. Studying the effect of infill concrete thickness, concrete compressive strength, and thickness of steel faceplates also showed that the main role of infill concrete was to prevent buckling of steel faceplates. Also, by strengthening the bottom region of the wall, as long as the strengthened part did not provide a support performance for the upper part, the behavior of the composite shear wall was improved; otherwise, ductility of the wall could be reduced severely.

Effects of Chamber Pressure on Dielectric Properties of Sputtered MgTiO3 Films for Multilayer Ceramic Capacitors

  • Park, Sang-Shik
    • 한국재료학회지
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    • 제20권7호
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    • pp.374-378
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    • 2010
  • $MgTiO_3$ thin films were prepared by r.f. magnetron sputtering in order to prepare miniaturized NPO type MLCCs. $MgTiO_3$ films showed a polycrystalline structure of ilmenite characterized by the appearance of (110) and (202) peaks. The intensity of the peaks decreased with an increase in the chamber pressure due to the decrease of crystallinity which resulted from the decrease of kinetic energy of the sputtered atoms. The films annealed at $600^{\circ}C$ for 60min. showed a fine grained microstructure without micro-cracks. The grain size and roughness of the $MgTiO_3$ films decreased with the increase of chamber pressure. The average surface roughness was 1.425~0.313 nm for $MgTiO_3$ films prepared at 10~70 mTorr. $MgTiO_3$ films showed a dielectric constant of 17~19.7 and a dissipation factor of 2.1~4.9% at 1MHz. The dielectric constant of the films is similar to that of bulk ceramics. The dielectric constant and the dissipation factor decreased with the increase of the chamber pressure due to the decrease of grain size and crystallinity. The leakage current density was $10^{-5}\sim10^{-7}A/cm^2$ at 200kV/cm and this value decreased with the increase of the chamber pressure. The small grain size and smooth surface microstructure of the films deposited at high chamber pressure resulted in a low leakage current density. $MgTiO_3$ films showed a near zero temperature coefficient and satisfied the specifications for NPO type materials. The dielectric properties of the $MgTiO_3$ thin films prepared by sputtering suggest the feasibility of their application for MLCCs.

1/4-rate 클록을 이용한 이중 보간 방식 기반의 CDR (A CDR using 1/4-rate Clock based on Dual-Interpolator)

  • 안희선;박원기;이성철;정항근
    • 전자공학회논문지SC
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    • 제46권1호
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    • pp.68-75
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    • 2009
  • 본 논문에서는 이중 보간 방식을 기반으로 1/4-rate 클록을 이용하는 효율적인 CDR을 제안하였다. 제안한 CDR은 다채널 송수신기에서 다중 위상 클록을 이용하여 클록 주파수를 줄일 경우 필요한 클록의 수가 증가하여 이들 클록을 공급할 때 소모되는 전력과 하드웨어적 부담이 증가한다는 단점을 극복하는 것을 목표로 설계되었다. 이를 위해 1/2-rate 클록 방식과 동일한 공급 클록 수를 유지하면서 각각의 복원부에서 추가로 필요한 클록을 플립플롭을 이용하지 않고 인버터만으로 생성하였다. 이로 인해 보다 높은 전송률의 요구 시 장애 요인 중 하나인 클록 생성기의 주파수를 낮추어 고속 전송을 가능케 하였으며, 공급 클록의 수를 증가시키지 않고 1/4-rate 주파수의 클록을 이용함으로써 CDR을 저전력화하였다.

스트랩 브레이스를 갖는 내력벽식 모듈러건축 스틸스터드 벽체의 반복하중에 대한 거동 연구 (Experimental Study on the Cyclic Behavior of Modular Building with Strap Braced Load Bearing Steel Stud Walls)

  • 이두용;조봉호;김태형;하태휴
    • 한국강구조학회 논문집
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    • 제28권6호
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    • pp.415-425
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    • 2016
  • 스틸스터드 내력벽 시스템은 국외에서 중고층형 모듈러 건축에 널리 사용되는 구조형식이다. 국내의 중고층형 모듈러 시스템에 스틸 스터드 벽체를 적용하기 위해서는 내진성능 확보가 필수적이다. 본 연구에서는 스트랩브레이스를 갖는 모듈러 건축 스틸스터드 내력벽 시스템의 횡력저항성능 및 유효강성을 제안하였다. 스트랩 브레이스와 수직외측스터드의 사양을 달리하는 2개의 실물 실험체에 대해 주기하중에 대한 실험을 실시하여 제안된 설계식을 검증하였다. 수직외측스터드의 휨거동을 고려할 수 있는 설계식을 통해 실험체의 공칭강도, 탄성강성, 항복변위 등을 예측하고 실험을 통해 검증하였다. 실험에 의한 최대강도는 예측식 대비 1.11~1.18배 수준으로 평가되었다. 박판의 스트랩 브레이스를 갖는 스트랩 스터드패널은 일반적으로 에너지소산능력이 매우 낮은 것으로 평가되나, 본 연구에서 제안한 수직외측스터드의 유효높이를 줄이고 브레이스의 각도를 낮춘 시스템의 경우 등가점성감쇠비가 최대 9.42% 수준으로 충분한 에너지소산능력이 확보될 수 있음을 확인하였다.

유공판을 갖는 공진수로 내장형 방파제의 반사특성 (Wave Reflections from Breakwaters Having Resonance Channels with Perforated Plates)

  • 김정석;서지혜;이용훈;이중우;박우선
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2013년도 추계학술대회
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    • pp.149-150
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    • 2013
  • 최근 외해의 파랑을 막기 위한 방파시설로 유공방파제가 다수 설치되고 있다. 일반적으로 유공방파제는 전면에 유공격실을 설치하여 유공에서 난류를 발생을 유도하여 반사파를 저감하고, 최대 파력도 저감하는 목적을 지닌다. 유공벽은 폭풍파에 직접 노출되어 있어 쇄파 발생시 충격적인 파압이 작용될 수 있어 설계 시 유의하여야 한다. 본 논문에서는 이러한 문제가 없는 공진수로를 이용한 새로운 개념의 유공방파제를 제안하고, 중요 설계변수 변화에 대하여 제안한 시스템의 반사특성을 수치적으로 모의하였다. 수치해석은 유공판을 통과하면서 발생하는 난류에 의한 에너지 소모효과를 고려할 수 있는 선형 포텐셜 이론에 기초한 Galerkin 유한요소 모델을 이용하여 수행하였다. 유공판의 유공율에 따른 반사율 변화를 살펴보았다.

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Ductility and ductility reduction factor for MDOF systems

  • Reyes-Salazar, Alfredo
    • Structural Engineering and Mechanics
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    • 제13권4호
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    • pp.369-385
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    • 2002
  • Ductility capacity is comprehensively studied for steel moment-resisting frames. Local, story and global ductility are being considered. An appropriate measure of global ductility is suggested. A time domain nonlinear seismic response algorithm is used to evaluate several definitions of ductility. It is observed that for one-story structures, resembling a single degree of freedom (SDOF) system, all definitions of global ductility seem to give reasonable values. However, for complex structures it may give unreasonable values. It indicates that using SDOF systems to estimate the ductility capacity may be a very crude approximation. For multi degree of freedom (MDOF) systems some definitions may not be appropriate, even though they are used in the profession. Results also indicate that the structural global ductility of 4, commonly used for moment-resisting steel frames, cannot be justified based on this study. The ductility of MDOF structural systems and the corresponding equivalent SDOF systems is studied. The global ductility values are very different for the two representations. The ductility reduction factor $F_{\mu}$ is also estimated. For a given frame, the values of the $F_{\mu}$ parameter significantly vary from one earthquake to another, even though the maximum deformation in terms of the interstory displacement is roughly the same for all earthquakes. This is because the $F_{\mu}$ values depend on the amount of dissipated energy, which in turn depends on the plastic mechanism, formed in the frames as well as on the loading, unloading and reloading process at plastic hinges. Based on the results of this study, the Newmark and Hall procedure to relate the ductility reduction factor and the ductility parameter cannot be justified. The reason for this is that SDOF systems were used to model real frames in these studies. Higher mode effects were neglected and energy dissipation was not explicitly considered. In addition, it is not possible to observe the formation of a collapse mechanism in the equivalent SDOF systems. Therefore, the ductility parameter and the force reduction factor should be estimated by using the MDOF representation.

고에너지밀도 캐패시터를 위해 PET 기판에 증착한 TiO2 박막의 특성 (Properties of TiO2 Thin Films Deposited on PET Substrate for High Energy Density Capacitor)

  • 박상식
    • 한국재료학회지
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    • 제22권8호
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    • pp.409-415
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    • 2012
  • $TiO_2$ thin films for high energy density capacitors were prepared by r.f. magnetron sputtering at room temperature. Flexible PET (Polyethylene terephtalate) substrate was used to maintain the structure of the commercial film capacitors. The effects of deposition pressure on the crystallization and electrical properties of $TiO_2$ films were investigated. The crystal structure of $TiO_2$ films deposited on PET substrate at room temperature was unrelated to deposition pressure and showed an amorphous structure unlike that of films on Si substrate. The grain size and surface roughness of films decreased with increasing deposition pressure due to the difference of mean free path. X-ray photoelectron spectroscopy (XPS) analysis revealed the formation of chemically stable $TiO_2$ films. The dielectric constant of $TiO_2$ films was significantly changed with deposition pressure. $TiO_2$ films deposited at low pressure showed high dissipation factor due to the surface microstructure. The dielectric constant and dissipation factor of films deposited at 70 mTorr were found to be 100~120 and 0.83 at 1 kHz, respectively. The temperature dependence of the capacitance of $TiO_2$ films showed the properties of class I ceramic capacitors. $TiO_2$ films deposited at 10~30 mTorr showed dielectric breakdown at applied voltage of 7 V. However, the films of 500~300 nm thickness deposited at 50 and 70 mTorr showed a leakage current of ${\sim}10^{-8}{\sim}10^{-9}$ A at 100 V.

Seismic behavior of steel reinforced concrete (SRC) joints with new-type section steel under cyclic loading

  • Wang, Qiuwei;Shi, Qingxuan;Tian, Hehe
    • Steel and Composite Structures
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    • 제19권6호
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    • pp.1561-1580
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    • 2015
  • No significant improvement has been observed on the seismic performance of the ordinary steel reinforced concrete (SRC) columns compared with the reinforced concrete (RC) columns mainly because I, H or core cross-shaped steel cannot provide sufficient confinement for core concrete. Two improved SRC columns by constructing with new-type section steel were put forward on this background: a cross-shaped steel whose flanges are in contact with concrete cover by extending the geometry of webs, and a rotated cross-shaped steel whose webs coincide with diagonal line of the column's section. The advantages of new-type SRC columns have been proved theoretically and experimentally, while construction measures and seismic behavior remain unclear when the new-type columns are joined onto SRC beams. Seismic behavior of SRC joints with new-type section steel were experimentally investigated by testing 5 specimens subjected to low reversed cyclic loading, mainly including the failure patterns, hysteretic loops, skeleton curves, energy dissipation capacity, strength and stiffness degradation and ductility. Effects of steel shape, load angel and construction measures on seismic behavior of joints were also analyzed. The test results indicate that the new-type joints display shear failure pattern under seismic loading, and steel and concrete of core region could bear larger load and tend to be stable although the specimens are close to failure. The hysteretic curves of new-type joints are plumper whose equivalent viscous damping coefficients and ductility factors are over 0.38 and 3.2 respectively, and this illustrates the energy dissipation capacity and deformation ability of new-type SRC joints are better than that of ordinary ones with shear failure. Bearing capacity and ductility of new-type joints are superior when the diagonal cross-shaped steel is contained and beams are orthogonal to columns, and the two construction measures proposed have little effect on the seismic behavior of joints.

고강도 RC 보-기둥 접합부의 비탄성 거동에 대한 슬래브의 영향 (Slab Effect on Inelastic Behaviors of High Strength RC Beam-Column Joints)

  • 장극관;김윤일;오영훈
    • 콘크리트학회지
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    • 제9권2호
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    • pp.167-177
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    • 1997
  • 모멘트 연성골조의 접합부와 기둥은 적절한 에너지흡수 능력과 구조물의 횡붕괴를 방지하기 위하여 탄성적으로 거동해야 하며, "강한 기둥-약한 보"의 설계개념을 채택하고 있다. 접합부는 골조구조의 취약부분으로 인정되고 있지만 부재설계에서는 접합부를 구성하는 보와 기둥에 의해서 접합부의 치수가 결정되기 때문에 접합부가 부담해야 하는 하중조건과 보강방법을 결정하는데에 어려움이 있다. 또한 콘크리트의 고강도화, 경량화에 의해 부재단면은 작아지게 되고 상대적으로 철근량은 늘어나게 되므로 접합부 영역의 응력부담은 이전보다 훨씬 높아지게 되었다. 따라서 접합부의 적절한 구조성능 확보 및 시공상의 문제점을 개선하기 위하여 접합부의 설계 및 상세에 특별한 주의가 필요하다고 할 수 있다. 이에 본 연구에서는 슬래브의 기여도를 고려한 접합부의 적절한 보강방법을 제시하기 위한 기초자료로서 $\frac{2}{3}$의 실물크기로 4개의 고강도 콘크리트 보-기둥 접합부를 제작하고, 반복하중 실험을 수행하였다.실험을 수행하였다.