• 제목/요약/키워드: simplified formula

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위상배열안테나를 이용한 단일 채널 모노펄스 추적 시스템의 최적화에 관한 연구 (A Study on Optimization of Single-Channel Monopulse Tracking System using Phased Array Antenna)

  • 정진우
    • 한국전자통신학회논문지
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    • 제13권4호
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    • pp.705-712
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    • 2018
  • 위상배열안테나는 빔 조향 각도에 따라 방사 특성이 변화한다. 모노펄스 추적 시스템은 합 및 차신호의 방사특성을 기반으로 추정 각을 산출하는 시스템이다. 따라서 위상배열안테나를 이용한 모노펄스 추적 시스템의 경우, 빔 조향 각도에 따라 모노펄스 비율 곡선이 변화하기 때문에 추적정확도가 낮아지는 문제가 발생한다. 단일 채널 모노펄스 시스템의 경우, 시스템 구성 변수의 변화를 통해 모노펄스 비율 곡선이 제어된다. 본 논문에서는 빔 조향 각도에 모노펄스 시스템 구성 변수를 적응형으로 제어하는데 참조할 수 있는 간소화된 수식을 제시하였다. 제시된 수식은 빔 조향 각도뿐만 아니라 방사 특성에 영향을 주는 위상배열안테나 설계 변수에 대응하여 균일한 모노펄스 비율 곡선을 유도할 수 있다.

Seismic behavior of deep-sea pipeline after global buckling under active control

  • Jianshuo Wang;Tinghao Meng;Zechao Zhang;Zhihua Chen;Hongbo Liu
    • Earthquakes and Structures
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    • 제26권4호
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    • pp.261-267
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    • 2024
  • With the increase in the exploitation depth of offshore oil and gas, it is possible to control the global buckling of deep-sea pipelines by the snake lay method. Previous studies mainly focused on the analysis of critical buckling force and critical temperature of pipelines under the snake-like laying method, and pipelines often suffer structural failure due to seismic disasters during operation. Therefore, seismic action is a necessary factor in the design and analysis of submarine pipelines. In this paper, the seismic action of steel pipes in the operation stage after global buckling has occurred under the active control method is analyzed. Firstly, we have established a simplified finite element model for the entire process cycle and found that this modeling method is accurate and efficient, solving the problem of difficult convergence of seismic wave and soil coupling in previous solid analysis, and improving the efficiency of calculations. Secondly, through parameter analysis, it was found that under seismic action, the pipe diameter mainly affects the stress amplitude of the pipeline. When the pipe wall thickness increases from 0.05 m to 0.09 m, the critical buckling force increases by 150%, and the maximum axial stress decreases by 56%. In the pipe soil interaction, the greater the soil viscosity, the greater the pipe soil interaction force, the greater the soil constraint on the pipeline, and the safer the pipeline. Finally, the pipeline failure determination formula was obtained through dimensionless analysis and verified, and it was found that the formula was accurate.

전동 유압 슬라이딩 데크 시스템 최적화를 위한 기구학 및 구조해석 (Kinematics and Structural Analysis for Optimization of an Electro-Hydraulic Sliding Deck Systems)

  • 문혁주;유범상;오영섭;김만중;이정훈
    • 한국산학기술학회논문지
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    • 제18권6호
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    • pp.21-28
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    • 2017
  • 농기계 상하차를 위한 전동 유압 슬라이딩 데크 시스템을 개발하는데 있어 경량화가 필수적이며, 이를 해결하기 위해 덤프 각도에 따른 슬라이딩 데크의 진출길이를 계산하고, 허용가능 각도 중 가강 큰 하중 받는 각도에서 재질과 두께를 변경하며 구조해석을 진행, 최적 두께와 재질을 선정하였다. 먼저 슬라이딩 데크 진출길이 계산식을 도출하기 위해 전체 시스템의 구성을 파악하고, 시스템을 단순화 하는 작업을 시행하였다. 또한 시스템의 입 출력 관계를 파악하기 위해 자유도 계산을 수행 하였고, 단순화한 모델을 이용하여 덤프각도에 따른 슬라이딩 데크의 진출길이 계산식을 도출하였다. 도출한 계산식을 수치해석 프로그램을 이용하여 덤프각도에 따른 슬라이딩 데크 진출길이 계산을 수행하였고, 시스템의 최대 최소 각도에서의 진출길이를 파악 하였다. 신뢰성 확보를 위해 시스템의 축소모형을 제작하여 실험을 통해 계산식을 검증하였다. 슬라이딩 데크 재질과 두께를 결정하기 위해 데크를 단순화 하였고, 데크 제작에 쓰이는 대표적인 재질 두 가지를 선정하였다. 단순화한 모델을 해석 프로그램을 사용하여 최대 하중을 받는 조건에서 두께와 재질에 따른 변형량과 응력을 비교하였다. 해석결과 ATOS80을 이용할 경우 두께를 줄이면서 더 적은 변형량을 가지게 되어 경량화를 이룰 수 있다.

잔골재율 변화에 따른 콘크리트 건조수축 모델링에 관한 연구 (A Study on Modelling for Prediction of Concrete Drying Shrinkage according to Aggregate Ratio of Concrete)

  • 박도경;윤여완;김광서
    • 한국건축시공학회지
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    • 제4권4호
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    • pp.71-77
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    • 2004
  • Drying Shrinkage has much complexity as it has relations with both internal elements of concrete and external factors. Therefore, experiments on Concrete Drying Shrinkage are carried out in this study under simplified circumstances applying temperature & Humidity test chamber which enables constant temperature and humidity. Comparative analyses have been made respectively according to the consequences aiming at modelling for prediction of Concrete Drying Shrinkage and making out measures to reduce it. Strain Rate of Drying Shrinkage of concrete under the condition of dry air appears to rise by about 20%-30% in proportion as the temperature rises $5^{\circ}C$ when the humidity was held below 10% compared under the condition of dry temperature & Humidity test chamber. Strain Rate of Drying Shrinkage in pit sand concrete increased 20% higher than measured when in river sand under the condition of 90-day material age. A general formula with two variables is derived as follow ${\varepsilon}={\alpha}_1+{\beta}_1x_1+{\beta}_2x_2+{\beta}_3x_1^2+{\beta}_5x_2^2$. and also graphed in 3 dimensions, enabling to apply to actual design and predict Strain Rate of Drying Shrinkage in concrete. The results of prediction of Rate of Drying Shrinkage by Response Surface Analysis are as follows. The coefficient of correlation of Drying Shrinkage in Concrete was over 90%.

온도분포 해석 해와 유한요소법을 이용한 대형 강판의 용접변형 해석 (Analysis of Welding Distortion of Large Steel Plate by Using Analytical Solution of Temperature Distribution and Finite Element Method)

  • 홍성빈;배강열;양영수
    • Journal of Welding and Joining
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    • 제32권4호
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    • pp.69-74
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    • 2014
  • Welding distortions of large steel structures had mainly been estimated with some simplified formula obtained by lots of experience and numerical analyses for small steel structures. However, the large structures would have different characteristics of distortion with welding because of their own stiffness coming from the size itself. Therefore, in order to find some measures for preventing welding distortion of large structure, it is requite in advance to precisely analysis thermal stress and distortion during welding of the structure. Numerical analysis for larger structure has been known to take large amount of calculation time and have a poor convergency problem during the thermo-elasto-plastic calculation. In this study, a hybrid method is proposed to analysis the thermal stress and distortion of a large steel plate with the finite element analysis by incorporating with temperature distribution of the plate calculated by an analytical solution. The proposed method revealed that the thermo-mechanical analysis for welding of the large structure could be performed with a good convergence and produced precise results with much reduced time consumption.

Vibration behavior of large span composite steel bar truss-reinforced concrete floor due to human activity

  • Cao, Liang;Li, Jiang;Zheng, Xing;Chen, Y. Frank
    • Steel and Composite Structures
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    • 제37권4호
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    • pp.391-404
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    • 2020
  • Human-induced vibration could present a serious serviceability problem for large-span and/or lightweight floors using the high-strength material. This paper presents the results of heel-drop, jumping, and walking tests on a large-span composite steel rebar truss-reinforced concrete (CSBTRC) floor. The effects of human activities on the floor vibration behavior were investigated considering the parameters of peak acceleration, root-mean-square acceleration, maximum transient vibration value (MTVV), fundamental frequency, and damping ratio. The measured field test data were validated with the finite element and theoretical analysis results. A comprehensive comparison between the test results and current design codes was carried out. Based on the classical plate theory, a rational and simplified formula for determining the fundamental frequency for the CSBTRC floor is derived. Secondly, appropriate coefficients (βrp) correlating the MTVV with peak acceleration are suggested for heel-drop, jumping, and walking excitations. Lastly, the linear oscillator model (LOM) is adopted to establish the governing equations for the human-structure interaction (HSI). The dynamic characteristics of the LOM (sprung mass, equivalent stiffness, and equivalent damping ratio) are determined by comparing the theoretical and experimental acceleration responses. The HSI effect will increase the acceleration response.

An Efficient Model to Calculate Axial Natural Vibration Frequency of Power Transformer Winding

  • Li, Kaiqi;Guo, Jian;Liu, Jun;Zhang, Anhong;Yu, Shaojia
    • Journal of Magnetics
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    • 제21권3호
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    • pp.431-436
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    • 2016
  • In the design of transformer winding, natural vibration frequency is an important parameter. This paper presents a 2D model to calculate axial vibration natural frequency of power transformer winding based on the elastic dynamics theory, and according to the elastic support equivalent principle of radial pressboards. The 3D model to calculate natural vibration frequency can be simplified as a 2D one as the support of pressboards on the winding is same. It is verified that results of the 2D model are consistent with those of 3D one, but the former can achieve much higher calculation efficiency. It shows that increasing the width and number of pressboards can improve axial natural frequency through formula analysis and simulation, and also the relations between the changes of axial pre-compression and axial natural vibration frequency on the windings are investigated. Finally, the proposed 2D model's effectiveness is proved when compared with tested ones.

기초저면(基礎底面)의 조도(粗度)의 영향을 고려한 얕은기초(基礎)의 지지력(支持力) 해석(解析) (Analysis of Bearing Capacity for Shallow Foundation Considering the Effect of Roughness of Base)

  • 황정규;신동훈
    • 대한토목학회논문집
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    • 제12권4호
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    • pp.167-177
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    • 1992
  • 본 연구에서는 얕은기초의 지지력을 해석함에 있어서 기초저면(基礎底面)의 조도(組度)의 영향을 고려하고, 기초지반(基礎地盤)의 활동면(滑動面)을 직선(直線)과 대수나선(對數螺線)이 복합된 형상으로 가정하여 지지력이론식을 유도하였으며, 흙의 내부마찰각(內部摩擦角) 및 기초의 저면마찰각(底面摩擦角)의 변화에 따른 영향과 대수나선(對數螺線)의 극점(極點)의 위치에 따른 지지력계수의 영향을 분석하였고, 지지력이론식(支持力理論式)을 간편화(簡便化)하여 Terzaghi, Meyerhof, Vesic 및 Yamaguchi 등의 지지력이론식과 비교분석하였다. 또한 분석한 결과를 토대로 하여, 실제의 얕은기초를 설계하거나 시공할 때 논란이 되고 있는 내부마찰각(內部摩擦角)을 ${\varphi}=40^{\circ}$로 제한하고, 저면조도(底面組度)의 적용범위(適用範圍)를 흙의 내부마찰각의 크기에 따라서 제한하여 사용할 것을 제안하였다.

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Cr-51 EDTA GFR 검사 결과의 분석 및 의의 (Estimation of Glomerular Filtration Rate using Chromium-51 EDTA)

  • 임수연;문형호;유선희;조시만
    • 핵의학기술
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    • 제13권1호
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    • pp.98-103
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    • 2009
  • Purpose: Correct estimation of Glomerular filtration rate (GFR) is very important for an accurate clinical assessment of the kidney function. This study compares four GFR markers, a serum creatinine-based estimation using MDRD formula, Cystatin-C, Cr-51 EDTA 2 samples and 6 samples. Materials and Methods: Serum creatinine concentrations, Cystatin-C serum concentrations and Cr-51 EDTA clearance are measured in 43 patients who received or donated kidney. Results: The correlation coefficient between serum based estimated GFR (MDRD) and Cr-51 EDTA 6 samples was 0.817 (p<0.01). The correlation coefficient between Cystatin-C based GFR and EDTA 6 samples was 0.7322 (p<0.01). Regression analysis showed a statistically significant correlation between Cr-51 EDTA 2 samples and 6 samples (r=0.971, p<0.01). Mean value and ${\pm}2SD$ for the difference between Cr-51 EDTA 2 samples and 6 samples were 4.7 mL/min and ${\pm}9.3$ respectively. Conclusions: The estimation of two samples Cr-51 EDTA showed that the method can be simplified by reducing blood samples without losing its high accuracy.

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The loss coefficient for fluctuating flow through a dominant opening in a building

  • Xu, Haiwei;Yu, Shice;Lou, Wenjuan
    • Wind and Structures
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    • 제24권1호
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    • pp.79-93
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    • 2017
  • Wind-induced fluctuating internal pressures in a building with a dominant opening can be described by a second-order non-linear differential equation. However, the accuracy and efficiency of the governing equation in predicting internal pressure fluctuations depend upon two ill-defined parameters: inertial coefficient $C_I$ and loss coefficient $C_L$, since $C_I$ determines the un-damped oscillation frequency of an air slug at the opening, while $C_L$ controls the decay ratio of the fluctuating internal pressure. This study particularly focused on the value of loss coefficient and its influence factors including: opening configuration and location, internal volumes, as well as wind speed and approaching flow turbulence. A simplified formula was presented to predict loss coefficient, therefore an approximate relationship between the standard deviation of internal and external pressures can be estimated using Vickery's approach. The study shows that the loss coefficient governs the peak response of the internal pressure spectrum which, in turn, will directly influence the standard deviation of the fluctuating internal pressure. The approaching flow characteristic and opening location have a remarkable effect on the parameter $C_L$.