• 제목/요약/키워드: Critical ratio

검색결과 2,028건 처리시간 0.028초

입경측정을 위한 영상처리기법에서 입자 초점면 존재 판단 기준의 설정 (Determination of In-focus Criteria In Image Processing Method for Particle Size Measurement)

  • 고광웅;김주연;이상용
    • 대한기계학회논문집B
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    • 제23권3호
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    • pp.398-407
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    • 1999
  • In the present image processing technique, the concept of the gradient indicator(GI) has been introduced to find out the depth-of-field in sizing large particles ranging from $30{\mu}m$ to $30{\mu}m$ where using of the concept of the normalized contrast value(VC) is not appropriate. The gradient indicator is defined as the ratio of the local value to the maximum possible value of the gray-level gradient in an image frame. The gradient indicator decreases with the increases of the particle size and the distance from the exact focal plane. A particle is considered to be in focus when the value of the gradient indicator at its image boundary stays above a critical value. This critical gradient indicator($GI_{critical}$) is defined as the maximum gradient indicator($GI_{max}$) subtracted by a constant ${\Delta}GI$ which is to account for the particle-size effect. In the present ca.so, the value of ${\Delta}GI$ was set to 0.28 to keep the standard deviation of the measured particles mostly within 0.1. It was also confirmed that, to find the depth-of-field for small particles(${\leq}30{\mu}m$) with the same measurement accuracy, tho concept of the critical normalized contrast($VC_{critical}$) is applicable with 85% of the maximum normalized contrast value($VC_{max}$). Finally, the depth-of-field was checked for the size range between $10{\mu}m$ and $300{\mu}m$ when the both in-focus criteria ($GI_{critical}$ and $VC_{critical}$) were adopted. The change of the depth-of-field with the particle size shows good linearity in both the VC-applicable and the GI-applicable ranges with a reasonable accuracy.

저속 2행정 디젤엔진의 종진동 댐퍼 동특성에 관한 연구 (A Study on the Dynamic Characteristics of Axial Vibration Damper for Two Stroke Low Speed Diesel Engine)

  • 이돈출;김정렬;김의간
    • Journal of Advanced Marine Engineering and Technology
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    • 제18권2호
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    • pp.113-121
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    • 1994
  • Since two oil shocks in 1970s, all of engine makers have persevered in their efforts to reduce specific fuel consumption and to increase engine power rate as much as possible in marine diesel engines. As a result, the maximum pressure in cylinders of these engines has been continuously increased. It causes direct axial vibration. The axial stiffness of crank shaft is low compared to old types of engine models by increasing the stroke/bore ratio and its major critical speed might occur within engine operation range. An axial damper, therefore, needs to be installed in order to reduce the axial vibration amplitude of the crankshaft. Usually the main critical speed of axial vibration for the propulsion shafting system with a 4-8 cylinder engine exists near the maximum continuous revolution(MCR). In this case, when the damping coefficient of the damper is increased within the allowance of the structural strength, its stiffness coefficient is also increased. Therefore, the main critical speed of axial vibration can be moved beyond the MCR. It has the same function as a conventional detuner. However, in the case of a 9-12 cylinder engine, the main critical speed of axial vibration for the propulsion shafting system exists below the MCR and thus the critical speed cannot be moved beyond the MCR by using an axial damper. In this case, the damping coefficient of an axial damper should be adjusted by considering the range of engine revolution, the location and vibration amplitude of the critical speed, the fore and aft vibration of the hull super structure. It needs to clarify the dynamic characteristics of the axial vibration damper to control the axial vibration appropriately. Therefore authors suggest the calculation method to analyse the dynamic characteristics of axial vibration damper. To confirm the calculation method proposed in this paper, it is applied to the propulsion shafting system of the actual ships and satisfactory results are obtained.

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파쇄성이 큰 제주해사의 한계상태 특성 (Critical State of Crushable Jeju Beach Sand)

  • 이문주;배경두;안성모;이우진
    • 대한토목학회논문집
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    • 제30권2C호
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    • pp.133-140
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    • 2010
  • 본 연구에서는 제주해사에 대한 일련의 삼축압축시험을 수행하여 파쇄성이 큰 제주 탄산염 모래의 한계상태정수를 결정하였다. 제주해사는 입자의 모난 정도가 크고 입자표면과 내부에 다수의 공극이 발달되어 전형적인 탄산염 모래의 특성을 보인다. 제주해사는 큰 최대, 최소 간극비와 큰 압축성 때문에 전단 시 압축거동이 지배적이었다. 구속압이 증가할수록 입자가 파쇄되어 제주해사의 첨두마찰각이 다소 감소하였으나, 일반적인 규산염 모래의 마찰각보다는 다소 큰 것이 관찰되었다. 제주해사의 한계상태 마찰각은 평균유효응력이 증가할수록 점차 감소하였으나, 시료의 간극비가 제주해사의 한계상태에 미치는 영향은 미미하였다. 제주해사의 한계상태 정수는 여타의 탄산염 모래와 유사하였으나, 일반적인 규산염 모래보다는 매우 크게 결정되었다.

내구성 설계 변수에 따른 최적 고로슬래그 미분말의 치환율 도출 (Derivation of Optimum GGBFS Replacement with Durability Design Parameters)

  • 장승엽;윤용식;권성준
    • 한국건설순환자원학회논문집
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    • 제6권1호
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    • pp.36-42
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    • 2018
  • 고로슬래그 미분말의 혼입은 염해에 노출된 콘크리트 구조물에 효과적인 염해 저항성을 나타내며 이로 인해 높은 내구수명을 확보할 수 있다. 본 연구에서는 피복두께, 표면염화물량, 임계염화물량, 슬래그 치환율 등의 내구성 설계인자들을 고려하여 내구수명을 평가하였으며, 목표내구수명에 따른 최적의 슬래그 치환율을 도출하였다. 표면염화물량은 3.16~3.38배의 영향을, 피복두께는 3.02~3.34배의 영향을 나타내어 내구수명에 가장 영향을 많이 미치는 인자로 평가되었으며, 임계염화물량은 1.53~1.57배 수준으로 물-결합재 비에 따라 큰 차이를 보이지 않았다. 100년의 목표내구수명에 대해 표면염화물량이 $18.0kg/m^3$의 매우 혹독한 조건에서는 피복두께를 70mm 이상, 물-결합재 비를 0.37 수준으로 낮추어야 치환율 42% 이상이 요구되었으며, $13.0kg/m^3$에서는 35% 이상의 슬래그 치환율이 요구되었다. 합리적인 내구성 설계를 위해서는 명확한 환경조건의 설정과 임계염화물량이 정의되어야 하며, 국내의 임계염화물량 기준은 매우 엄격한 조건임을 알 수 있다.

튜브 트레인 공력특성 해석 (Aerodynamic Characteristics of a Tube Train)

  • 김태경;김규홍;권혁빈
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2010년도 춘계학술대회 논문집
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    • pp.139-150
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    • 2010
  • 최근 한국에서는 세계적인 녹색기술을 맞아 향후 차세대 교통 시스템으로서 튜브 트레인 시스템의 본격적인 연구가 진행되고 있다. 한국 철도기술연구원(KRRI, Korea Railroad Research Institute)에서 튜브 트레인 시스템의 건설을 위한 목적으로 연구가 진행되고 있다. 본 논문에서는 기초연구의 일환으로 축대칭하며 긴 형상의 수송체가 가지는 다양한 튜브(터널) 내부의 압력, 막힘비율, 운행속도를 파라미터로 선정하여 전산해석을 수행하였다. 세부사항으로는 동일 형상의 운송체가 동일 운행속도를 가지고 일반적 압력의 개활지(오픈 시스템, 개활지 운행)를 운행할 때와, 다양한 환경(튜브 내 압력, 막힘비율, 운행속도)의 튜브 내부를 운행할 때에 대하여 튜브 트레인의 공력특성 연구를 수행하였다. 이를 통하여 다양한 운행속도-막힘비율 별로 개활지와 동일 에너지 효율 나오는 튜브 내 압력(P-D 관계)을 계산하였고, 막힘비율 증가에 따른 튜브 내 감압 정도(P-${\beta}$ 관계), 다양한 막힘비율-튜브 내 압력 별로 운행속도에 따른 전체 항력 양상(D-V 관계)을 보여 주었다. 그리고 개활지 운행시와 튜브 내부 운행시의 에너지 효율(주행저항)을 비교하였고, 튜브 내부 운행 시 트레인이 갖는 효율과 관계되는 충격파 발생의 임계속도(critical V-B 관계) 및 한계속도(V-P 관계)를 얻을 수 있었다. 이러한 연구의 결과는 튜브 시스템 설계 및 건설에 꼭 필요한 것이며 가이드라인을 제시했다.

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가압부상법(加壓浮上法)에 의한 활성(活性)슬러지 혼합액(混合液)의 고액분리(固液分離)에 관한 연구(研究) (A Study on the Separation of Activated Sludge by Dissolved Air Flotation)

  • 양상현;라덕관
    • 대한토목학회논문집
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    • 제5권3호
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    • pp.21-29
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    • 1985
  • 활성(活性)슬러지가 팽화(膨化)를 하였거나 환기조내(環氣槽內)의 MLSS 농도(濃度)가 높은 경우, 종래(從來)의 중력침전법(重力沈澱法)으로는 슬러지의 분리(分離)가 어렵다. 이 문제(問題)의 해결책으로 가압부상법(加壓浮上法)을 이용(利用)하는 방법(方法) 연구(硏究)하였다. 가압부상법(加壓浮上法)의 효과(效果)에 영향(影響) 주는 인자중(因子中) 중요(重要)하다고 생각되는 환기조내(環氣槽內)의 MLSS 온도(溫度), 슬러지의 성상( 性狀), 가압수량비(加壓水量比), 압력(壓力)의 변화(變化)에 따른 가압부상법(加壓浮上法)의 효율(效率)에 관하여 회분식(回分式) 실험(實險)과 연속식(連續式) 실허(實驗)을 실시하여 다음과 같은 결과(結果)를 얻었다. 활성(活性)슬러지가 혼합액(混合液)의 분리(分離)가 종래(從來)의 중력침전법(重力沈澱法)으로는 어려운 경우에도 가압부상법(加壓浮上法)은 매우 좋은 효과(效果)를 나타낸다. 가압부상법(加壓浮上法)에는 한계(限界) 가압수량비(加壓水量比)가 존재(存在)하며 이 한계치(限界値)는 압력(壓力)에 따라 변화(變化)한다. 압력(壓力)은 단지 가압수량비(加壓水量比)에만 영향(影響)을 미치고 그 외(外)의 가압부상(加壓浮上) 효율(效率)에는 거의 영향(影響)이 없다. 연속식(連續式) 실험(實驗)이 회분식(回分式) 실험(實驗)보다 다소 효율(效率)이 떨어진다.

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Dynamic Response of Dependency Ratio on Government Expenditures in Indonesia

  • ZULKARNAIN, Teuku;HAZMI, Yusri;NASIR, Muhammad;FAISAL, Faisal;HUSIN, Dasmi
    • The Journal of Asian Finance, Economics and Business
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    • 제9권2호
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    • pp.71-79
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    • 2022
  • The aim of this study is to see how government spending on education, health, and social security affects ratios in Indonesia. The third sector has a critical role to play in reducing the dependency ratio. It also aims to lower unemployment and poverty rates. This study uses the GMM panel data model. This model can determine the dynamic response of the ratio that comes from a number of variables. This study uses data from 33 provinces from 2010 to 2018. The results show that government spending in the education and health sectors has a positive effect on the dependency ratio, both in the short and long term. Social security has a significant effect on the dependency ratio in the long term, but not in the short term. Government spending in the education sector and health sector and social security sector have a positive and significant effect on disease and illness. The study's findings show a high level of poverty with a large standard deviation. The high ratio value is due to the large number of restrictions placed on a number of regions. Each province has made a significant contribution to overcoming these challenges, particularly in terms of the comparative ratio.

Development of Near-Critical Water Reaction System for Utilization of Lignin as Chemical Resources

  • 엄희준;홍윤기;박영무;정상호;이관영
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.251.2-251.2
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    • 2010
  • Plant biomass has been proposed to be an alternative source for petroleum-based chemical compounds. Especially, phenolic chemical compounds can be obtained from lignin by chemical depolymerization processes because lignin consists of complex aromatic polymer such as trans-p-coumaryl, coniferyl and sinapyl alcohols, etc. Phenolic chemical compounds from lignin were usually produced in super critical water. However, we applied Near-critical water (NCW) system because NCW is known as a good solvent for lignin depolymerization. Organic matter like lignin can be solved in NCW system and the system has a unique acid-base property without conventional non-eco-friendly chemicals such as sulfuric acid and sodium hydroxide. In this work, we tried to optimize the NCW depolymerization system by adjusting the processing variables such as reaction time, temperature and pressure. Moreover, the amount of additional phenol was optimized by changing the molar ratio between water and phenol. Phenol was used as capping agent to prevent re-polymerization of active fragment such as formaldehyde. Alkali-lignin was used as a starting material and characterized by a Solid State 13C-NMR, FT-IR and EA (Elemental Analysis). GC-MS analysis confirmed that o-cresol, p-cresol, anisole and 4-hydroxyphathalic acid were the main product and they were quantitatively analyzed by HPLC.

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Critical buckling analyses of nonlinear FG-CNT reinforced nano-composite beam

  • Zerrouki, Rachid;Karas, Abdelkader;Zidour, Mohamed
    • Advances in nano research
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    • 제9권3호
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    • pp.211-220
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    • 2020
  • This paper investigates the effect of linear and non-linear distribution of carbon nanotube volume fraction in the FG-CNTRC beams on the critical buckling by using higher-order shear deformation theories. Here, the material properties of the CNTRC beams are assumed to be graded in the thickness direction according to a new exponential power law distribution in terms of the carbon nanotube volume fractions. The single-walled carbon nanotube is aligned and distributed in the polymeric matrix with different patterns of reinforcement; the material properties of the CNTRC beams are described by using the rule of mixture. The governing equations are derived through using Hamilton's principle. The Navier solution method is used under the specified boundary conditions for simply supported CNTRC beams. The mathematical models provided in this work are numerically validated by comparison with some available results. New results of critical buckling with the non-linear distribution of CNT volume fraction in different patterns are presented and discussed in detail, and compared with the linear distribution. Several aspects of beam types, CNT volume fraction, exponent degree (n), aspect ratio, etc., are taken into this investigation. It is revealed that the influences of non-linearity distribution in the beam play an important role to improve the mechanical properties, especially in buckling behavior. The results show that the X-Beam configuration is the strongest among all different types of CNTRC beams in supporting the buckling loads.

Dynamics of the system consisting of the hollow cylinder and surrounding infinite elastic medium under action an oscillating moving ring load on the interior of the cylinder

  • Akbarov, Surkay D.;Mehdiyev, Mahir A.
    • Coupled systems mechanics
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    • 제7권5호
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    • pp.525-554
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    • 2018
  • The paper deals with the study of the dynamics of the oscillating moving ring load acting in the interior of the hollow circular cylinder surrounded by an elastic medium. The axisymmetric loading case is considered and the study is made by employing the exact equations and relations of linear elastodynamics. The focus is on the influence of the oscillation of the moving load and the problem parameters such as the cylinder's thickness/radius ratio on the critical velocities. At the same time, the dependence between the interface stresses and load moving velocity under various frequencies of this load, as well as the frequency response of the mentioned stresses under various load velocity are investigated. In particular, it is established that oscillation of the moving load can cause the values of the critical velocity to decrease significantly and at the same time the oscillation of the moving load can lead to parametric resonance. It is also established that the critical velocity decreases with decreasing of the cylinder's thickness/radiusratio.