• Title/Summary/Keyword: 반대운동

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Development of a Preswirl Stator-Propeller System for Improvement of Propulsion Efficiency : a Symmetric Stator Propulsion System (추진 효율 향상을 위한 고정날개-프로펠러 추진시스템 개발: 대칭형 고정날개 추진 시스템)

  • Jin-Tae Lee;Moon-Chan Kim;Jung-Chun Suh;Soo-Hyung Kim;Jin-Keun Choi
    • Journal of the Society of Naval Architects of Korea
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    • v.29 no.4
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    • pp.132-145
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    • 1992
  • A series of design, theoretical analysis and model test procedures is presented for the development of an axisymmetric stator-propeller system. A preswirl stator is located in front of a propeller in order to improve the propulsion efficiency by cancellation of the slip stream rotational velocity due to the propeller. Model test results show that propulsion efficiency gain due to the symmetric stator-propeller system is about 3% compared to the single propeller. This efficiency gain would increase for full scale application since the pressure drag coefficient of the stator would decrease due to increasement of turbulent intensity behind the hull wake and increasement of Reynolds number.

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A Rehabilitation Method for Unilateral Neglect Patient using a Pressure Sensor (압력센서를 활용한 편측무시환자 재활치료방법)

  • Lee, Hyeon-Gi;Hyun, Hun-Beom;Hong, Ji-Heon;Lee, Hyun
    • Proceedings of the Korea Information Processing Society Conference
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    • 2015.04a
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    • pp.259-262
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    • 2015
  • 편측무시란 뇌졸중 환자에게서 나타나는 지각 손상의 한 종류로 말초 운동 및 감각 신경의 손상과 상관없이 손상된 대뇌반구 반대변의 공간과 신체의 지각이 감소된 증상이다. 현재 편측무시환자에 대한 치료는 환자가 책상에 앉아 팔과 손가락만으로 치료를 하는 소운동적인 방법으로 한 가지 치료효과만 기대할 수 있고, 환자들 또한 지루함과 피곤함을 쉽게 느끼게 된다. 또한, 서서 활동하기 힘든 편측무시환자들은 적당한 재활/치료방법이 없고, 안전성 측면에서도 여러 가지 문제가 발생할 수 있다. 따라서 본 논문에서는 편측무시환자들이 앉아서 안전하게 재활/치료할 수 있는 재활도구를 개발하고자 한다. 특히, 지루한 재활프로그램에 게임요소들로 동기 및 흥미 유발하여 지속적으로 재활/치료를 하며 압력센서 기반의 시각재활과 신체재활의 복합적인 재활을 연구하고자 한다.

Analysis of Wind Vorticity and Divergence in the High-latitude Lower Thermosphere: Dependence on the Interplanetary Magnetic Field (IMF) (고위도 하부 열권 바람의 소용돌이도와 발산 분석: 행성간 자기장(IMF)에 대한 의존도)

  • Kwak, Young-Sil;Lee, Jae-Jin;Ahn, Byung-Ho;Hwang, Jung-A;Kim, Khan-Hyuk;Cho, Kyung-Seok
    • Journal of Astronomy and Space Sciences
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    • v.25 no.4
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    • pp.405-414
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    • 2008
  • To better understand the physical processes that control the high-latitude lower thermospheric dynamics, we analyze the divergence and vorticity of the high-latitude neutral wind field in the lower thermosphere during the southern summertime for different IMF conditions. For this study the National Center for Atmospheric Research Thermosphere-Ionosphere Electrodynamics General Circulation Model (NCAR-TIEG CM) is used. The analysis of the large-scale vorticity and divergence provides basic understanding flow configurations to help elucidate the momentum sources that ulti-mately determine the total wind field in the lower polar thermosphere and provides insight into the relative strengths of the different sources of momentum responsible for driving winds. The mean neutral wind pattern in the high-latitude lower thermosphere is dominated by rotational flow, imparted primarily through the ion drag force, rather than by divergent flow, imparted primarily through Joule and solar heating. The difference vorticity, obtained by subtracting values with zero IMF from those with non-zero IMF, in the high-latitude lower thermosphere is much larger than the difference divergence for all IMF conditions, indicating that a larger response of the thermospheric wind system to enhancement in the momentum input generating the rotational motion with elevated IMF than the corresponding energy input generating the divergent motion. the difference vorticity in the high-latitude lower thermosphere depends on the direction of the IMF. The difference vorticity for negative and positive $B_y$ shows positive and negative, respectively, at higher magnetic latitudes than $-70^{\circ}$. For negative $B_z$, the difference vorticities have positive in the dusk sector and negative in the dawn sector. The difference vorticities for positive $B_z$ have opposite sign. Negative IMF $B_z$ has a stronger effect on the vorticity than does positive $B_z$.

The Effect of Community-based Health Intervention Program to Improve Metabolic Disease in Jeju Island (제주 지역주민기반 대사성질환 개선 프로그램 중재 효과)

  • Kim, Woo Jin;Kim, Sang Hoon;Park, Shin Young
    • Korean Journal of Clinical Laboratory Science
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    • v.50 no.3
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    • pp.297-303
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    • 2018
  • This study investigated the effect of community-based health intervention program to improve metabolic disease in Jeju island. There were 50 obese local residents in the experimental group (body mass index, $BMI{\geq}25kg/m^2$). They participated in cooking therapy with nutrition education (4 times), exercise program with proprioceptive neuromuscular facilitation (PNF) and stretching training (9 times), and alternative medicine program with healing touch massage (3 times) during a 3-week period. To evaluate the effectiveness of the program, body composition, blood lipid profiles, blood glucose, and waist circumference were assessed before and after the intervention program. After the program, the value of total cholesterol (TC), glycosylated hemoglobin (HbA1C), diastolic blood pressure, percent body fat, and waist circumference were decreased, and became the normal value. Especially, HbA1C, percent body fat, and waist circumference were significantly decreased (P<0.001) in the experimental group, while HbA1C, percent body fat, and waist circumference were significantly increased (P<0.001) in the control group (N=50), who had no intervention. Our results suggest that metabolic syndrome associated markers need intervention program for improving them. In conclusion, although this study did not analyze the effect of the health intervention program and cooking therapy separately, considering the result of this 3-week, short term program, the effect will be more profuse if cooking therapy and exercise program were performed concurrently.

Association between the C.O.G and E.O.G for Dynamic Postural Control of the Left Turn Motion on the Balance Beam (평균대 좌측 턴 동작시 동적 자세 조절에 미치는 C.O.G와 E.O.G 관계)

  • So, Jae-Moo;Kim, Yoon-Ji;Kim, Jae-Jung
    • Korean Journal of Applied Biomechanics
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    • v.19 no.1
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    • pp.49-58
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    • 2009
  • This study aims to analyze the association between the center of mass(C.O.G) and ocular movement(E.O.G) according to the success and failure in the left turn motion on the balance beam, targeting three female gymnasts. When successful, the left-right C.O.G was moved to the left, which was a rotational direction until such time as the body rotated $180^{\circ}$, whereas there appeared to be a greater movement during failure; thus, it was shown to affect the maintenance of dynamic postural control. In case of the subsequent left-right turning motion of E.O.G, this matches the previous theory that the eyeball moves against the direction of rotation of the body. However, there was a difference at the time of movement, and a clear difference emerged in the success and failure in this study. Also, in the E.O.G in the up-down direction, a movement during failure showed a pattern of down direction in most cases; thus, it is deemed to affect the failure. Therefore, the kinetic postural control and E.O.G are supposed to affect the success and failure in a landing, which is the most importantly evaluated movement on the balance beam, in mutual association.

Influence of Different Slope Analysis during Pitching Wedge Swing on Plantar Pressure Distribution Pattern (경사면에서 골프스윙 동작시 족저압력 분석)

  • Son, Dong-Ju;Yang, Jeong-Ok;Lee, Joong-Sook
    • Korean Journal of Applied Biomechanics
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    • v.19 no.2
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    • pp.297-309
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    • 2009
  • The study analyzed the mechanism of plantar foot pressure distribution during pitching wedge swinging on a flat, an up hill lie and a down hill lie to provide the fundamental information regarding biomechanical motion data by using plantar foot pressure measuring instrument. In the results, time factor spanning according to slope differences, plantar foot pressure factor and swing motion on the slope could have negative effect on the coiling of lower limbs during back swing, as well as the blocking of the lower limbs to minimize the dispersion of the weight and the release of the lower limbs after the impact during the down swing process. Moreover, since slope is one of many external factors affecting swing motion, address motion on an up hill lie limits the lower limbs movement, therefore, a relatively narrow stance is better on a down hill lie. It is estimated that a relatively wide stance would be better in order to limit the bigger activation of the lower limbs. Not only for the address motion but also during the down swing on an up hill lie it is concluded that the weight should be on the left foot in order to keep the body balance.

Yangkyuksanhwa-Tang Attenuates Ischemic Brain Injury in a Focal Photothrombosis Stroke Model (뇌허혈 마우스모델에서 양격산화탕이 뇌 손상 완화에 미치는 효과)

  • Han, Do-Kyung;Pak, Malk-Eun;Kwon, Ok-Sun;Choi, Byung-Tae
    • Journal of Life Science
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    • v.29 no.11
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    • pp.1258-1266
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    • 2019
  • Yangkyuksanhwa-Tang (YKSH), consisting of nine different herbs, is commonly used in Soyangin-type individuals with stroke, based on the Sasang Constitution Theory in Korea. However, no evidence has yet confirmed a beneficial effect of YKSH in ischemic stroke treatment. In this study, we investigated the effects of YKSH on ischemic brain injury in a mouse model of cerebral ischemia. Focal cerebral ischemia in mice was induced by photothrombosis, and behavioral recovery was evaluated. Infarct volume, inflammation, and newly generated cells were evaluated by histology and immunochemistry. YKSH treatment resulted in a significant recovery from the motor impairments induced by focal cerebral ischemia, as determined with wire grip and rotarod tests. YKSH treatment also decreased the infarct volume and the number of cells positive for tumor necrosis factor-${\alpha}$ and myeloperoxidase when compared with a vehicle-treated control group. By contrast, YKSH treatment considerably increased the number of cells positive for glial fibrillary acidic protein and ionized calcium-binding adapter molecule 1, as well as the number of cells doubly positive for Ki67/doublecortin when compared with the vehicle-treated group. These results suggest that YKSH treatment attenuated the infarct size by anti-inflammatory action, astrocyte and microglia activation, and neuronal proliferation, thereby facilitating neurofunctional recovery from a cerebral ischemic assault. YKSH could therefore be a potential treatment for neurofunctional restoration of the injured brains of patients with stroke.

The Study for Reduction Effect of Riverbed Scour due to Shape of Vanes (베인 형태에 따른 하상세굴 저감 효과에 관한 연구)

  • Hae Min Noh;Ho Jin Lee;Sung Duk Kim
    • Journal of Korean Society of Disaster and Security
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    • v.16 no.2
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    • pp.57-63
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    • 2023
  • Recently, Heavy rains and super typhoons occurred by climate change cause a lot of damage in Korea. In order to reduce such damage, various types of river maintenance projects are being promoted, but it is difficult to maintain the balance of rivers in Korea with distinct flood and dry seasons. In particular, river structures installed as a river maintenance project cause various problems such as scouring of structures and their foundations during floods and river bed changes. In order to reduce such bed scour, various vanes are installed in the bend of the river, and various bed scour reduction effects appear depending on the size, arrangement, and shape of the vanes. The vane regenerates the secondary flow in the opposite direction to the secondary flow generated by the centrifugal force, thereby reducing scour around the outer bed and promoting deposition. The theory of this study uses the governing equation applying the continuity equation that satisfies the law of conservation of mass and the momentum equation that satisfies the conservation of momentum, and measures the overall average flow velocity change rate according to design factors to investigate the effect of vanes under various conditions. Both the average and cross-sectional flow velocities decreased in both the trapezoidal vane and the square vane. In addition, vanes installed perpendicularly or inclined to the direction of river flow generate a secondary flow in the opposite direction to the secondary flow generated by centrifugal force, thereby canceling the secondary flow of centrifugal force, so the effect of the vane appears.

A Study of Korean Scientific Community's Groping for Scientific Ideology in the Period of Liberation, 1945-53 (해방 공간과 과학자 사회의 이념적 모색)

  • Kim Dong-Kwang
    • Journal of Science and Technology Studies
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    • v.6 no.1 s.11
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    • pp.89-118
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    • 2006
  • The formation of early korean scientific community is a dynamic process of korean modern history in which colonialization, liberation, United States Army Military Government and Korean War is included. Particularly, scientist's crossing over the border into north korea and south korea have profound effect on the early stage of our scientific community. This period is so important to understand the nature of korean scientific community that we need to re-interpret the role of 'ideology' in the development of scientific community. On the other hand, war is a important element in our formation of the image of the science. This study purported to interpret the problem of political ideology, it's role in the formation of early scientific society, it's implication on our idea of science positively. Also the study is a an attempt to re-construct the scientist's struggle(1945-1950) to demarcate new science from old, colonial science.

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New Drug Delivery System Based on a Laser-Induced Shockwave (레이저 유도 충격파를 이용한 첨단 약물전달시스템 개발)

  • Han, Tae-Hee;Lee, Hyun-Hee;Gojani, Ardian B.;Yoh, Jai-Ick
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.34 no.1
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    • pp.67-71
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    • 2010
  • Impingement of a high power laser pulse (above 1 GW/$cm^2$) on a metal foil causes its ablation, which is characterized by a rapid expulsion of matter and the initiation of a strong shock wave inside the solid metal. The shock propagates through the foil and reverberates on the rear side, causing its deformation and microparticle ejection, which were deposited on the foil prior to ablation. Based on this principle, we are developing a new drug delivery system - Biolistic gun. Current study is focused on the controllability, stability, efficiency of the system, and characterization of the penetration shapes in various conditions. We have tested the system by applying direct and confined ablation. Several different media combinations were used for confinement-BK7 glass, water, BK7 glass with water, and succulent jelly(ultrasono jelly, RHAPAPHRM). Biological tissue was replicated by a 3% gelatin solution. Present data shows that the confinement results in enhancement of penetration shape reached by 5 um cobalt microparticles. Based on the analysis of the experimental results we observe that the penetration shape of microparticles can be controlled by adjusting the thickness of confinement media.