• 제목/요약/키워드: Flow Inertia

검색결과 201건 처리시간 0.026초

수면 중 호흡의 조절 (Control of Ventilation during Sleep)

  • 김우성
    • 수면정신생리
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    • 제6권1호
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    • pp.19-25
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    • 1999
  • Sleep alters both breathing pattern and the ventilatory responses to external stimuli. These changes during sleep permit the development or aggravation of sleep-related hypoxemia in patients with respiratory disease and contribute to the pathogenesis of apneas in patients with the sleep apnea syndrome. Fundamental effects of sleep on the ventilatory control system are 1) removal of wakefulness input to the upper airway leading to the increase in upper airway resistance, 2) loss of wakefulness drive to the respiratory pump, 3) compromise of protective respiratory reflexes, and 4) additional sleep-induced compromise of ventilatory control initiated by reduced functional residual capacity on supine position assumed in sleep, decreased $CO_2$ production during sleep, and increased cerebral blood flow in especially rapid eye movement(REM) sleep. These effects resulted in periodic breathing during unsteady non-rapid eye movement(NREM) sleep even in normal subjects, regular but low ventilation during steady NREM sleep, and irregular breathing during REM sleep. Sleep-induced breathing instabilities are divided due primarily to transient increase in upper airway resistance and those that involve overshoots and undershoots in neural feedback mechanisms regulating the timing and/or amplitude of respiratory output. Following ventilatory overshoots, breathing stability will be maintained if excitatory short-term potentiation is the prevailing influence. On the other hand, apnea and hypopnea will occur if inhibitory mechanisms dominate following the ventilatory overshoot. These inhibitory mechanisms include 1) hypocapnia, 2) inhibitory effect from lung stretch, 3) baroreceptor stimulation, 4) upper airway mechanoreceptor reflexes, 5) central depression by hypoxia, and 6) central system inertia. While the respiratory control system functions well during wakefulness, the control of breathing is commonly disrupted during sleep. These changes in respiratory control resulting in breathing instability during sleep are related with the pathophysiologic mechanisms of obstructive and/or central apnea, and have the therapeutic implications for nocturnal hypoventilation in patients with chronic obstructive pulmonary disease or alveolar hypoventilation syndrome.

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심혈관 시스템의 압수용체에 의한 심박동 제어의 수학적 모델링 및 시뮬레이션 (Mathematical Modeling and Simulation on the Control of Heart rate by Baroreceptor Control System in the Cardiovascular System)

  • 최병철;이승진;엄상희;남기곤;이영우;전계록
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1996년도 추계학술대회
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    • pp.80-85
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    • 1996
  • The various function of the cardiovascular system(CVS) and the dynamic characteristics on each part of human body can be acquired in the electric analog circuit model. According to the performed outcome by other researchers, viscos resistance, flow inertia, and vascular compliance in the CVS are analogous to resister, inductor, and capacitor in electric circuit, so the CVS models were represented by the electric circuit models. these approaches were to propose the suitable models interest part of body and to simulate the various characteristics on the CVS. In this paper, the electric circuit model considering the characteristics of morphologic structure is represented, the parameter values of model is sotted up, and the dynamic characteristics of the the CVS is simulated using VisSim, one of the simulation tools. The observed simulation results are similar to the cardiovascular functions of nomal adults who have no heart failure. Besides, the simulation is operated to observe the pathophysiological abnomal symptoms(for example, bleeding within a certain period). The controller by baroreceptor, which is one of controllers to control the CVS, is appended in the model. and the dynamic response characteristics and the procedure to return normal state is observed in simulation when the bleeding last within a certain period.

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T-GDI 엔진의 속도 및 하중이 블로우바이 가스의 오일입자 크기와 오일분리기 성능에 미치는 영향에 대한 실험 및 수치적 연구 (Experimental and Numerical Investigation of the Effect of Load and Speed of T-GDI Engine on the Particle Size of Blow-by Gas and Performance of Oil Mist Separator)

  • 정수진;오광호
    • 한국분무공학회지
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    • 제25권4호
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    • pp.162-169
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    • 2020
  • The worldwide focus on reducing the emissions, fuel and lubricant consumption in T-GDI engines is leading engineers to consider the crankcase ventilation and oil mist separation system as an important means of control. In today's passenger cars, the oil mist separation systems mainly use the inertia effect (e.g. labyrinth, cyclone etc.). Therefore, this study has investigated high efficiency cylinder head-integrated oil-mist separator by using a compact multi-impactor type oil mist separator system to ensure adequate oil mist separation performance. For this purpose, engine dynamometer testing with oil particle efficiency measurement equipment and 3D two-phase flow simulation have been performed for various engine operating conditions. Tests with an actual engine on a dynamometer showed oil aerosol particle size distributions varied depending on operating conditions. For instance, high rpm and load increases bot only blow-by gases but the amount of small size oil droplets. Submicron-sized particles (less than 0.5 ㎛) were also observed. It is also found that the impactor type separator is able to separate nearly no droplets of diameter lower than 3 ㎛. CFD results showed that the complex aerodynamics processes that lead to strong impingement and break-up can strip out large droplets and generate more small size droplets.

Knowledge from recent investigations on sloshing motion in a liquid pool with solid particles for severe accident analyses of sodium-cooled fast reactor

  • Xu, Ruicong;Cheng, Songbai;Li, Shuo;Cheng, Hui
    • Nuclear Engineering and Technology
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    • 제54권2호
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    • pp.589-600
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    • 2022
  • Investigations on the molten-pool sloshing behavior are of essential value for improving nuclear safety evaluation of Core Disruptive Accidents (CDA) that would be possibly encountered for Sodium-cooled Fast Reactors (SFR). This paper is aimed at synthesizing the knowledge from our recent studies on molten-pool sloshing behavior with solid particles conducted at the Sun Yat-sen University. To better visualize and clarify the mechanism and characteristics of sloshing induced by local Fuel-Coolant Interaction (FCI), experiments were performed with various parameters by injecting nitrogen gas into a 2-dimensional liquid pool with accumulated solid particles. It was confirmed that under different particle-bed conditions, three representative flow regimes (i.e. the bubble-impulsion dominant, transitional and bed-inertia dominant regimes) are identifiable. Aimed at predicting the regime transitions during sloshing process, a predictive empirical model along with a regime map was proposed on the basis of experiments using single-sized spherical solid particles, and then was extended for covering more complex particle conditions (e.g. non-spherical, mixed-sized and mixed-density spherical particle conditions). To obtain more comprehensive understandings and verify the applicability and reliability of the predictive model under more realistic conditions (e.g. large-scale 3-dimensional condition), further experimental and modeling studies are also being prepared under other more complicated actual conditions.

수중운동체의 강제동요시험 및 포텐셜 계산에 의한 부가질량 추정 (Added Mass of Submerged Bodies Obtained by Forced Oscillation Tests and Numerical Calculations of Potential Flow)

  • 김동진;이경중;권창섭;김연규;박진영;전봉환
    • 대한조선학회논문집
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    • 제59권4호
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    • pp.214-224
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    • 2022
  • It is necessary to estimate manoeuvring characteristics of submerged bodies at the design stage in order to ensure the safe operations. In this study, added mass coefficients in the mathematical model of submerged bodies are estimated by captive model tests and numerical calculations. Two kinds of models, MARIN 'BB2'submarine model and AUV (Autonomous unmanned vehicle) model are utilized in the forced oscillation tests. Compared to BB2 submarine, AUV with cylindrical type hull form shows relatively small added masses in roll, pitch, and yaw directions. Next, numerical calculations based on potential theory are performed under the assumption that viscous effects on inertia forces are negligible. Added masses obtained by numerical calculations are in good agreements with forced oscillation test results. And if slow manoeuvres of submerged bodies are presumed, some of velocity coupled terms can be approximated by combinations of added mass coefficients.

Modeling and experimental verification of phase-control active tuned mass dampers applied to MDOF structures

  • Yong-An Lai;Pei-Tzu Chang;Yan-Liang Kuo
    • Smart Structures and Systems
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    • 제32권5호
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    • pp.281-295
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    • 2023
  • The purpose of this study is to demonstrate and verify the application of phase-control absolute-acceleration-feedback active tuned mass dampers (PCA-ATMD) to multiple-degree-of-freedom (MDOF) building structures. In addition, servo speed control technique has been developed as a replacement for force control in order to mitigate the negative effects caused by friction and inertia. The essence of the proposed PCA-ATMD is to achieve a 90° phase lag for a structure by implementing the desired control force so that the PCA-ATMD can receive the maximum power flow with which to effectively mitigate the structural vibration. An MDOF building structure with a PCA-ATMD and a real-time filter forming a complete system is modeled using a state-space representation and is presented in detail. The feedback measurement for the phase control algorithm of the MDOF structure is compact, with only the absolute acceleration of one structural floor and ATMD's velocity relative to the structure required. A discrete-time direct output-feedback optimization method is introduced to the PCA-ATMD to ensure that the control system is optimized and stable. Numerical simulation and shaking table experiments are conducted on a three-story steel shear building structure to verify the performance of the PCA-ATMD. The results indicate that the absolute acceleration of the structure is well suppressed whether considering peak or root-mean-square responses. The experiment also demonstrates that the control of the PCA-ATMD can be decentralized, so that it is convenient to apply and maintain to real high-rise building structures.

Analysis of activated colloidal crud in advanced and modular reactor under pump coastdown with kinetic corrosion

  • Khurram Mehboob;Yahya A. Al-Zahrani
    • Nuclear Engineering and Technology
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    • 제54권12호
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    • pp.4571-4584
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    • 2022
  • The analysis of rapid flow transients in Reactor Coolant Pumps (RCP) is essential for a reactor safety study. An accurate and precise analysis of the RCP coastdown is necessary for the reactor design. The coastdown of RCP affects the coolant temperature and the colloidal crud in the primary coolant. A realistic and kinetic model has been used to investigate the behavior of activated colloidal crud in the primary coolant and steam generator that solves the pump speed analytically. The analytic solution of the non-dimensional flow rate has been determined by the energy ratio β. The kinetic energy of the coolant fluid and the kinetic energy stored in the rotating parts of a pump are two essential parameters in the form of β. Under normal operation, the pump's speed and moment of inertia are constant. However, in a coastdown situation, kinetic damping in the interval has been implemented. A dynamic model ACCP-SMART has been developed for System Integrated Modular and Advanced Reactor (SMART) to investigate the corrosion due to activated colloidal crud. The Fickian diffusion model has been implemented as the reference corrosion model for the constituent component of the primary loop of the SMART reactor. The activated colloidal crud activity in the primary coolant and steam generator of the SMART reactor has been studied for different equilibrium corrosion rates, linear increase in corrosion rate, and dynamic RCP coastdown situation energy ratio b. The coolant specific activity of SMART reactor equilibrium corrosion (4.0 mg s-1) has been found 9.63×10-3 µCi cm-3, 3.53×10-3 µC cm-3, 2.39×10-2 µC cm-3, 8.10×10-3 µC cm-3, 6.77× 10-3 µC cm-3, 4.95×10-4 µC cm-3, 1.19×10-3 µC cm-3, and 7.87×10-4 µC cm-3 for 24Na, 54Mn, 56Mn, 59Fe, 58Co, 60Co, 99Mo, and 51Cr which are 14.95%, 5.48%, 37.08%, 12.57%, 10.51%, 0.77%, 18.50%, and 0.12% respectively. For linear and exponential coastdown with a constant corrosion rate, the total coolant and steam generator activity approaches a higher saturation value than the normal values. The coolant and steam generator activity changes considerably with kinetic corrosion rate, equilibrium corrosion, growth of corrosion rate (ΔC/Δt), and RCP coastdown situations. The effect of the RCP coastdown on the specific activity of the steam generators is smeared by linearly rising corrosion rates, equilibrium corrosion, and rapid coasting down of the RCP. However, the time taken to reach the saturation activity is also influenced by the slope of corrosion rate, coastdown situation, equilibrium corrosion rate, and energy ratio β.

청계천로변 전문상가의 신산업집적체형성과 사회적 자본의 특성 (Emerging New Industrial Cluster along the Cheonggyechon-ro and Its Social Capital)

  • 남기범
    • 한국경제지리학회지
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    • 제4권2호
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    • pp.79-96
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    • 2001
  • 일반적으로 클러스터는 첨단기술의 제조업, 특히 IT기반 산업이나 수직적으로 통합된 장인산업 등으로 이루어지며, 대개 벤처자본과 엔젤자몬 등과 함께 다양한 정부의 지원과 사업 인프라를 통해 이르게 성장하는 특성을 보인다. 대부분의 클러스터연구는 이러한 지식기반산업의 군집과 혁신의 특성을 연구한다. 이 연구는 서울 중심부에서 발달한 새로운 형태의 산업클러스터의 특성을 분석한다. 서울의 전형적인 도심주변부로서 지역의 쇠퇴와 교통 혼잡, 환경문제가 심각한 청계천로상의 전문상가로는 지식기반산업이 아니라 의류와 패션산업의 군집으로 인해 가장 역동적이고 혁신적인 지역으로 변모하고 있다. 이러한 새로운 형태의 산업클러스터의 특성과 사회적 자본의 형성에 대한 연구는 클러스터이론과 내분도시의 변화에 대해 새로운 시각을 제시할 수 있을 것이다. 이 글에서 먼저 청계천로 전문상가로의 성장에 대해 간략히 고찰한 후, 새로운 형태의 클러스터의 제도적, 공간적 특성을 살펴본다. 또한 생산-분배-판매-장소소비 등이 한 곳에서 이루어지는 청계천 클러스터의 핵심 구성요소들의 발달과정을, 지역적 네트워킹, 사회적 자본, 제도화, 장소성에 기반한 사회 문화경제적 기제 등의 개념으로 설명한다. 마지막으로 서울의 새로운 산업 클러스터 발전에 대한 전망과 향후 연구과제를 제시한다.

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정책실패의 반복과 관성에 관한 연구: 양양국제공항 사례를 중심으로 (Repetition and Inertia of Policy Failure -Focusing on the Case of Yangyang International Airport)

  • 허혁;최선미
    • 한국콘텐츠학회논문지
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    • 제18권12호
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    • pp.456-467
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    • 2018
  • 본 연구는 양양국제공항 사례를 중심으로 정책실패의 반복 원인에 대하여 분석하였다. 2002년 개항한 양양국제공항은 약 3,600억원을 들여 건설하였으나, 공항 이용 객수 확보 실패 및 활성화 실패로 지방공항의 대표적 실패사례로 거론되고 있다. 정책실패 이론에 따라 합리주의적 관점, 정치적 관점, 환경복잡성 관점에 따라 양양국제공항의 실패요인을 분석한 결과 첫째, 합리주의적 관점에서 양양공항은 이용객 확보와 지역경제 활성화라는 정책목표 달성에 실패하였으며, 이는 정치권의 압력에 의한 사업추진과 지리적 인프라 부족에 기인한 것으로 나타났다. 둘째, 정치의 흐름에서의 이해관계자들의 갈등 조정 실패 양상은 항공사와 공항 간 갈등과 저가항공인 플라이양양 허가 및 지원금에 대한 정부와 공항 간의 갈등 조정 실패로 볼 수 있다. 셋째, 환경복잡성 관점에서 양양국제공항은 주변 고속도로, 철도 노선 개통과 한한령으로 인한 중국인 관광객 급감이라는 환경변화에 적응 실패로 볼 수 있다. 즉, 양양국제공항은 정책계획단계에서부터 합리적인 분석에 의해 무산된 사업임에도 불구하고 정치적으로 선거결과에 따라 지리적 인프라가 부족한 지역에 건설되었으며 운영 과정에서 항공사 및 정부 간의 갈등 조정에 실패하였고, 주변 교통시설 확충과 외부 환경적 요인에 적응하지 못한 것으로 볼 수 있다. 본 연구를 통해, 대규모 국책사업의 경우 정책결정자의 무리한 사업 추진을 막을 수 있는 독립적 기구의 설치, 공항이나 철도와 같은 교통시설의 경우 주변 인프라 및 관련 사업과의 연계 및 고려를 통한 사업 추진, 이해관계자들 간의 갈등조정을 위한 협력적 거버넌스의 제도화 등을 제언하였다.

홍수 규모별 대청호에 유입하는 하천 밀도류의 특성 변화 (Variation of Inflow Density Currents with Different Flood Magnitude in Daecheong Reservoir)

  • 윤성완;정세웅;최정규
    • 한국수자원학회논문집
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    • 제41권12호
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    • pp.1219-1230
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    • 2008
  • 여름철 홍수시 성층화된 저수지로 유입하는 하천수는 저수지 표층수에 비해 낮은 수온과 높은 부유고형물질(SS) 농도를 가지므로 주변수에 비해 상대적으로 높은 밀도를 가지게 된다. 이러한 밀도차로 인해 형성된 밀도류의 저수지 내 진행과정은 수질과 수생태계에 큰 영향을 주게 된다. 따라서 하천수 밀도류의 거동분석은 저수지 수질관리를 위한 현장조사의 최적화, SS와 영양염류 등 오염물질의 이송 확산 해석에 중요한 요소이다. 본 연구의 목적은 기존 연구를 통해 검증된 2차원 수치모델을 이용하여 다양한 홍수규모에서 대청호로 유입하는 하천 밀도류의 거동 특성인 침강점 수심($d_p$)과 거리($X_p$), 분리점 수심($d_s$), 중층류 관입두께($h_i$), 댐축 도달시간($t_a$), 감소율(${\beta}$)을 분석함으로써 저수지 수질관리를 위한 기초정보를 제공하는데 있다. 모의조건은 평수년이었던 2004년 6월 13일부터 7월 3일 동안 발생한 홍수사상의 수문곡선을 기준으로 유입 유량의 규모를 10개의 등급으로 나누었으며, 초기 성층조건은 탁수가 유입되기 전의 발달된 성층구조를 적용하였다. 유입수와 저수지 성층구조의 특성치는 밀도 Froude 수(Fri)로 나타내었으며, 10개의 $Fr_i$ 조건별로 $d_p,\;X_p,\;d_s,\;h_i,\;t_a$, SS의 ${\beta}$값 등을 산정하였다. 연구결과 $d_p,\;X_p,\;d_s,\;h_i$는 대체로 $Fr_i$ 값과 비례하여 증가하였으며 중층류의 진행속도도 빨라지는 경향을 나타내었으나, 저수지 지형변화에 큰 영향을 받는 것으로 나타났다. 정상상태를 가정하는 Hebbert 식은 저수지 수위변화와 지형변화를 고려하지 못하기 때문에 수치모델 보다 $d_p$값을 과대 산정하였다. 유입 SS 농도의 감소율(${\beta}$)은 $Fr_i$가 클수록 작아지는 경향을 보였으나, $Fr_i$>9.0에서는 난류혼합효과 때문에 다시 증가하였다. 연구결과는 저수지운영 실무자들이 홍수규모별로 탁수의 초기 거동특성을 간단히 예측하는 목적으로 사용할 수 있다.