• 제목/요약/키워드: Special parameters

검색결과 643건 처리시간 0.065초

균형된 불완비 블록계획의 쌍대계획을 이용한 완전이면교배의 블록화 (Design of Block Complete Diallel Crosses using Dual Design of Blanced Incomplet Block Design)

  • 김진;배종성
    • Journal of the Korean Data and Information Science Society
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    • 제11권2호
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    • pp.247-255
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    • 2000
  • 완전이면교배를 블록화하는 매개디자인으로는 일반적으로 부분적으로 균형된 불완비 블록계획을 사용한다. 이때 블록화하는 매개디자인으로 삼각형 PBIBD를 사용하기 위해서는 대응되는 모수를 갖는 삼각형 PBIBD를 찾아야 한다. 특정한 모수를 갖는 균형된 불완비 블록계획의 쌍대계획이 삼각형 PBIBD가 되는 성질을 이용하면 삼각형 PBIBD를 새로 찾아야 하는 번거로움 없이 블록 완전이면교배를 설계할 수 있다. 이를 만족하는 블록 완전이면교배를 설계하는 방법과 디자인을 제시하였다.

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SRM의 토크리플을 고려한 극호형상의 최적설계 (Optimum Design of Pole arc shape Considering Torque Ripple of SRM)

  • 이진우;우경일;김홍석;권병일
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 춘계학술대회 논문집 전기기기 및 에너지변환시스템부문
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    • pp.30-32
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    • 2001
  • Switched reluctance motors have the advantage a high torque/weight ratio, as the large reluctance torque is made by salient poles of both start and rotor, and a high reliability. On the other hand, the switched reluctance motors have the disadvantage of a large ripple torque which is made by salient poles. So the application for the industrial fields have been limited to special cases. Geometric significant parameters are ${\beta}_r$ and ${\beta}_s$ respectively the rotor and stator pole arc while the significant electric parameters are the angles where the drive switches are turned on and off. It can be simulated that ${\beta}_r$ and ${\beta}_s$ must be chosen in a particular region of the plane (${\beta}_r,\;{\beta}_s$) called the feasible triangle. The aim of this paper is to simulate the minimum of the torque ripple by using finite element method and to determine the best choice of the rotor and stator pole arc.

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자율신경계에 관여하는 혈행동력학적 지수에 미치는 인삼의 효과 연구 (THE EFFICACY OF GINSENG TO HAEMODYNAMIC PARAMETERS DEPENDENT TO THE VEGETATIVE SYSTEM)

  • Bettermann A. A.;Bettermann C.
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1984년도 학술대회지
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    • pp.233-249
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    • 1984
  • 제 3 차 국제 인삼 심포지움 이래로, 첫번째 연구로서, 본 저자는 혈행동력학적 지수와 가스 교환 지수를 정상적인 개와(n=6) 뇌사상태의 개 (n= 6)를 사용하여 측정하였다. 뇌사상태를 자율 신경이 없는 상태라고 정의한다면, 지능이 낮은 개에 대하여 인삼 효능을 얻을 수 없을 것이다. 그러나 자율적으로 조절되는 순환 지표에 대한 인삼의 효과가 카테콜, 아드레날린${\cdot}$베타-차단제에 버금가는 놀라운 결과를 얻었다. 몇가지의 진세노사이드들의 위장관내 흡수에 의구심이 있어서, 저자들에 의하여 정제되고 표준화시킨 "주사용 인삼"을 처음으로 사용하였다. 이상과 같은 동물실험 결과, 부작용이 발견되지 않아서, "주사용 인삼"을 laporotomy 환자에 투여하여 혈행동력학적 지수와 가스 교환 지수에 미치는 영향을 조사하였다. 한번은 마취 상태에서 실험하였고, 정상 상태하의 1일후에 투여하여 실험하였다. 뇌사 상태의 개의 경우의 모델과 사람의 혈행동력학은 큰 차이를 보였다. 결론적으로 인삼은 순환계를 포함한 자율신경계에 직접 영향을 미친다고 할 수 있다.

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부등피치를 적용한 재생 블로워의 소음특성 연구 (Analysis of Noise Characteristic of Uneven Pitch Regenerative Blower)

  • 이경용;정욱희;김진혁;김철호;최영석;마재현;정경호;박운진
    • 한국유체기계학회 논문집
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    • 제18권6호
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    • pp.71-75
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    • 2015
  • The flow and noise characteristics of the regenerative blower are evaluated experimentally. To decrease the noise of regenerative blower at a high frequency, we arrange the impeller vanes unevenly by special formula. The uneven pitch formular consists of the combination of trigonometric function. The magnitude of degree between each vanes and the control parameters of trigonometric functions are main design parameters for the uneven pitch. The flow characteristics of even and uneven impellers are tested by the fan tester and compared each results. The efficiency of a blower is calculated by the axial power using a dynamo system. The noise property of designed impeller is measured in an anechoic room. In this study, we certify that the uneven pitch impeller is effective in the noise reduction at a high frequency.

Syntheses and Properties of the High-Tc Superconductive Bi_{2-x}Mo_xSr_2Ca_2Cu_3O_y$ System

  • Keu Hong Kim;Jong Tae Lim;Seung Koo Cho;Byoung Chan Kwak;Don Kim;Jae Shi Choi
    • Bulletin of the Korean Chemical Society
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    • 제11권1호
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    • pp.25-28
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    • 1990
  • The superconducting properties have been studied for high-Tc superconductors of the $Bi_{2-x}Mo_xSr_2Ca_2Cu_3O_y$ system (x = 0.03-0.30). The crystal structure is pseudo tetragonal with the average lattice parameters a = 5.38 ${\AA}$, b = 5.44 ${\AA}$ and c = 30.6 ${\AA}$. All samples exhibit superconductivity with Tc offset at 79 K and Tc onset at 90-115 K. The Tc onset point decreases with increasing x, but the Tc offset points are nearly the same for all samples. Scanning electron micrographs show a special growth behavior of the grains with a plate shape. It is suggested that the decrease in Tc onset points with substitution of Mo for Bi is due to the decrease in lattice parameters and to the p-orbital of Mo. It is concluded that Mo does not play a crucial role in the superconducting transition of the $Bi_2Sr_2Ca_2Cu_3O_y$ system.

GEANT4 characterization of the neutronic behavior of the active zone of the MEGAPIE spallation target

  • Lamrabet, Abdesslam;Maghnouj, Abdelmajid;Tajmouati, Jaouad;Bencheikh, Mohamed
    • Nuclear Engineering and Technology
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    • 제53권10호
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    • pp.3164-3170
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    • 2021
  • The increasing interest that GEANT4 is gaining nowadays, because of its special capabilities, prompted us to address its reliability in neutronic calculation for the realistic and complex spallation target MEGAPIE of the Paul Scherrer Institute of Switzerland. In this paper we have specifically addressed the neutronic characterization of the active zone of this target. Three physical quantities are evaluated: neutron flux spectra and total neutron fluxes on target's z-axis, and the neutron yield as a function of the target's altitude and radius. Comparison of the obtained results with those of the MCNPX reference code and some experimental measurements have confirmed the impact of the geometrical and proton beam models on the neutron fluxes. It has also allowed to reveal the intrinsic influence of the code type. The resulting differences reach a factor of ~2 for the beam model and 4-18% for the other parameters cumulated. The analysis of the neutron yield has led us to conclude that: 1) Increasing the productivity of the MEGAPIE target cannot be achieved simply by increasing the thickness of the target, if the irradiation parameters are not modified. 2) The size of the spallation area needs to be redefined more precisely.

Multi-objective optimization of double wishbone suspension of a kinestatic vehicle model for handling and stability improvement

  • Bagheri, Mohammad Reza;Mosayebi, Masoud;Mahdian, Asghar;Keshavarzi, Ahmad
    • Structural Engineering and Mechanics
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    • 제68권5호
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    • pp.633-638
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    • 2018
  • One of the important problems in the vehicle design is vehicle handling and stability. Effective parameters which should be considered in the vehicle handling and stability are roll angle, camber angle and scrub radius. In this paper, a planar vehicle model is considered that two right and left suspensions are double wishbone suspension system. For a better analysis of the suspension geometry, a kinestatic model of vehicle is considered which instantaneous kinematic and statics relations are analyzed simultaneously. In this model, suspension geometry is considered completely. In order to optimum design of double wishbones suspension system, a multi-objective genetic algorithm is applied. Three important parameters of suspension including roll angle, camber angle and scrub radius are taken into account as objective functions. Coordinates of suspension hard points are design variables of optimization which optimum values of them, corresponding to each optimum point, are obtained in the optimization process. Pareto solutions for three objective functions are derived. There are important optimum points in these Pareto solutions which each point represents an optimum status in the model. In other words, corresponding to any optimal point, a specific geometric position is determined for the suspension hard points. Each of the obtained points in the Pareto optimization can be selected for a special design purpose by designer to create an optimum condition in the vehicle handling and stability.

엔트로피 개념을 이용한 제주도 상시하천의 평균유속분포 추정 (Mean Velocity Distribution of Natural Stream using Entropy Concept in Jeju)

  • 양세창;양성기;김용석
    • 한국환경과학회지
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    • 제28권6호
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    • pp.535-544
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    • 2019
  • We computed parameters that affect velocity distribution by applying Chiu's two-dimensional velocity distribution equation based on the theory of entropy probability and acoustic doppler current profiler (ADCP) of Jungmun-stream, Akgeun-stream, and Yeonoe-stream among the nine streams in Jeju Province between July 2011 and June 2015. In addition, velocity and flow were calculated using a surface image velocimeter to evaluate the parameters estimated in the velocity observation section of the streams. The mean error rate of flow based on ADCP velocity data was 16.01% with flow calculated using the conventional depth-averaged velocity conversion factor (0.85), 6.02% with flow calculated using the surface velocity and mean velocity regression factor, and 4.58% with flow calculated using Chiu's two-dimensional velocity distribution equation. If surface velocity by a non-contact velocimeter is calculated as mean velocity, the error rate increases for large streams in the inland areas of Korea. Therefore, flow can be calculated precisely by utilizing the velocity distribution equation that accounts for stream flow characteristics and velocity distribution, instead of the conventional depth-averaged conversion factor (0.85).

Preliminary conceptual design of a small high-flux multi-purpose LBE cooled fast reactor

  • Xiong, Yangbin;Duan, Chengjie;Zeng, Qin;Ding, Peng;Song, Juqing;Zhou, Junjie;Xu, Jinggang;Yang, Jingchen;Li, Zhifeng
    • Nuclear Engineering and Technology
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    • 제54권8호
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    • pp.3085-3094
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    • 2022
  • The design concept of a Small High-flux Multipurpose LBE(Lead Bismuth Eutectic) cooled Fast Reactor (SHMLFR) was proposed in the paper. The primary cooling system of the reactor is forced circulation, and the fuel element form is arc-plate loaded high enrichment MOX fuel. The core is cylindrical with a flux trap set in the center of the core, which can be used as an irradiation channel. According to the requirements of the core physical design, a series of physical design criteria and constraints were given, and the steady and transient parameters of the reactor were calculated and analyzed. Regarding the thermal and hydraulic phenomena of the reactor, a simplified model was used to conduct a preliminary analysis of the fuel plates at special positions, and the temperature field distribution of the fuel plate with the highest power density under different coolant flow rates was simulated. The results show that the various parameters of SHMLFR meet the requirements and design criteria of the physical design of the core and the thermal design of the reactor. This implies that the conceptual design of SHMLFR is feasible.

Seismic performance of a building base-isolated by TFP susceptible to pound with a surrounding moat wall

  • Movahhed, Ataallah Sadeghi;Zardari, Saeid;Sadoglu, Erol
    • Earthquakes and Structures
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    • 제23권1호
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    • pp.87-100
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    • 2022
  • Limiting the displacement of seismic isolators causes a pounding phenomenon under severe earthquakes. Therefore, the ASCE 7-16 has provided minimum criteria for the design of the isolated building. In this research the seismic response of isolated buildings by Triple Friction Pendulum Isolator (TFPI) under the impact, expected, and unexpected mass eccentricity was evaluated. Also, the effect of different design parameters on the seismic behavior of structural and nonstructural elements was found. For this, a special steel moment frame structure with a surrounding moat wall was designed according to the criteria, by considering different response modification coefficients (RI), and 20% mass eccentricity in one direction. Then, different values of these parameters and the damping of the base isolation were evaluated. The results show that the structural elements have acceptable behavior after impact, but the nonstructural components are placed in a moderate damage range after impact and the used improved methods could not ameliorate the level of damage. The reduction in the RI and the enhancement of the isolator's damping are beneficial up to a certain point for improving the seismic response after impact. The moat wall reduces torque and maximum absolute acceleration (MAA) due to unexpected enhancement of mass eccentricity. However, drifts of some stories increase. Also, the difference between the response of story drift by expected and unexpected mass eccentricity is less. This indicates that the minimum requirement displacement according to ASCE 7-16 criteria lead to acceptable results under the unexpected enhancement of mass eccentricity.