• Title/Summary/Keyword: 이차목

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Thrust Vectoring Control by Injection of Secondary Jets Inside Supersonic Nozzle (초음속 노즐 내부 이차제트 분출을 통한 추력편향 제어에 관한 연구)

  • Yoon, Sang-Hoon;Kim, Kuk-Jin;Min, Seong-Kyu;Lee, Yeol;Chun, Dong-Yeon
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 2008.11a
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    • pp.349-352
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    • 2008
  • Thrust vectoring control by injection of secondary jet inside a convergent-divergent supersonic nozzle was studied by both experimentally and computationally. For various stagnation pressure of the secondary jet injected at a specific location(12 mm-downstream of throat) in the divergent section of nozzle, the characteristics of thrust vectoring were observed. Present numerical results were compared with previous investigators' results and Schlieren flow visualizations for the identical boundary conditions, and it showed a qualitatively good agreement. It was also noticed that the characteristics of thrust vectoring is strongly related to the reflection structure of oblique shock inside nozzle, ie., the pressure ratio of the secondary jet, SPR.

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유의의(儒醫) 개념정립과 장개빈(張介賓);유의적개념정립여장개빈(儒醫的槪念定立與張介賓)

  • Seong, Ho-Jun
    • Journal of Korean Medical classics
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    • v.20 no.1
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    • pp.125-136
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    • 2007
  • 본연구장이송대이후유의적성립화의이투과명대적대표적유의장개빈(本硏究將以宋代以後儒醫的成立和意而透過明代的代表的儒醫張介賓), 진행검시의론화의덕지중유학이론적투영과정화전개(進行檢詩醫論和醫德之中儒學理論的投影過程和展開). 송대이후유학적인산생유의적지중칭지위인술적개념(宋代以後儒學的仁産生儒醫的之中稱之爲仁術的槪念), 효화인성위의학적존립목적(孝和仁成爲醫學的存立目的). 저래원재어유학구유적도덕적생명의(這來源在於儒學具有的道德的生命議), 이차이생명도덕적해석위중심(而且以生命道德的解釋爲中心), 해석형기적문제(解釋形氣的問題). 생리적변화촉진심성변화적촉발(生理的變化促進心性變化的觸發), 심성적부중절조성병리(心性的不中節造成病理). 유의문장유학적절욕양생적의미전이도의학(儒醫們將儒學的節欲養生的意味轉移到醫學), 이차장욕구화감정절제주장적성리학화의학재어일개구조지중상통(而且將欲求和感情節制主張的性理學和醫學在於一個構造之中相通). 유학적추구시인간화자연이급사회적도덕주체적확립(儒學的追求是人間和自然以及社會的道德主體的確立), 이차전개장개빈이급유의문적유학이상(而且展開張介賓以及儒醫們的儒學理想). 유의적의의부지재어장의학적과학기술문제(儒醫的意義不只在於將醫學的科學技術問題), 장유추인간생명적도덕적의의(將類推人間生命的道德的意義), 재어의학적문화화도덕적해석적가능성(在於醫學的文化和道德的解釋的可能性).

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Analysis of Knowledge Base and Future Skills Needs through Patentometrics - Case of Battery Industry (특허정보분석을 활용한 지식단위의 변화와 미래숙련수요 분석 - 이차전지 사례를 중심으로)

  • Hwang, Gyu-Hee;Shim, We;Coh, Byoung-Youl
    • Journal of Korea Technology Innovation Society
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    • v.14 no.spc
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    • pp.1209-1231
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    • 2011
  • This study attempts to develop an analysis method on future skills needs for emerging new knowledge on the basis of technology outlook and patent analysis. It will extract knowledge base of patent classification for secondary battery, and will demonstrate that the density and centrality of knowledge base can be changed according to the paradigm shift of battery industry. Furthermore, on the basis of that, it will execute diagnosis on current related curriculum and present necessary improvement items of curriculum. This study tries not only to raise the utilizing level of patent analysis by demonstrating how patent analysis is used in future skills needs analysis, but also to advance the analysis method for future skills needs.

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Analysis of Characteristics and Internal Resistance of Seawater Secondary Battery according to its Usage Environment (해수이차전지의 사용 환경에 따른 특성 및 내부 저항 분석)

  • Seung-pyo Kang;Jang-mok Kim;Hyun-jun Cho
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.29 no.2
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    • pp.223-229
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    • 2023
  • Seawater batteries are next-generation secondary batteries that use seawater as a cathode. They utilize marine resources to provide competitive prices, high eco-friendliness, and a structure suitable for marine applications. Based on these advantages, pouch types and prismatic types have been studied and developed assuming natural seawater exposure. However, because of the electrical characteristics of the secondary battery, its capacity and internal resistance vary depending on the use environment. These characteristics are not only utilized for predicting the life of a battery but also have a direct effect on the capacity and power suitable for a specific situation. Therefore, the internal resistance was analyzed in this study by measuring the capacity depending on the seawater battery use environment and the state-of-charge-open-circuit-voltage measurement method.

Prediction of Old-Growth Development in Second-Growth Hardwood Forests using Computer Simulation (Computer Simulation을 이용(利用)한 이차활엽수림(二次闊葉樹林)의 노숙림(老熟林) 발달예측(發達豫測))

  • Choi, Jung-Kee
    • Journal of Korean Society of Forest Science
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    • v.89 no.4
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    • pp.502-512
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    • 2000
  • Old-growth development for two different second-growth northern hardwood stands in the North America was evaluated with a computer simulation. The two sites compared were a representative 77 year old even-aged stand (Phelps) with heavy dominance by pole size classes, and an older uneven-aged stand with some existing old-growth structural features (Wildcat Creek). Each stand was evaluated in its natural progress toward old-growth structural conditions with stand structure, size distribution of live and dead trees, percent stand area in canopy gaps, and visual canopy profile and overhead view. The Phelps stand reached the minimum structural threshold for the old-growth stage after 74 years. Only 13 years was required for Wildcat Creek stand to reach the old-growth threshold. During the 45 years of simulation, the diameter distributions of both stands became broader and flatter. DBH distribution of dead trees had a general descending trend over the simulation in each stand. Gaps at Phelps were typically small after 45 years. Gap area at Wildcat Creek was somewhat more constant over the 45 years of simulation but a big gap was formed because of the death of several adjacent large trees.

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Estimation of Secondary Flow Pressure of an Annular Injection Type Supersonic Ejector Using Fabri-Choking (패브리-초킹을 이용한 환형분사 초음속 이젝터 부유동 압력 예측)

  • Kim Sehoon;Jin Jungkun;Kwon Sejin
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • v.y2005m4
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    • pp.405-408
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    • 2005
  • A theoretical analysis is developed for an annular injection type supersonic ejector having a second-throat downstream under the assumption that the Fabri-chocking is placed in mixing chamber. Non-mixing theory is applied to formulate secondary flow pressure in the region between inlet of the mixing chamber and Fabri-chocking. To describe the shock standing at the inlet of the mixing chamber, two dimensional oblique shock relations are used and it is assumed that the shock affects only primary flow at Fabri-chocking plane. In conclusion, it agrees well with experiments in case of small contracting angle of mixing chamber, under 4degrees.

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Estimation of Secondary Flow Pressure of an Annular-Injection-Type Supersonic Ejector Using Fabri Choking (패브리 초킹을 이용한 환형분사 초음속 이젝터의 부유동 압력 예측)

  • Kim Sehoon;Kwon Sejin
    • Journal of the Korean Society of Propulsion Engineers
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    • v.9 no.1
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    • pp.61-66
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    • 2005
  • A theoretical analysis is developed for an annular-injection-type supersonic ejector having a second-throat downstream the ejector under the assumption that the Fabri choking is placed in mixing chamber. Non mixing theory is applied to formulate secondary flow pressure in the region between inlet of the mixing chamber and Fabri choking. To describe the shock standing at the inlet of the mixing chamber, two dimensional oblique shock relations are used and it is assumed that the shock affects only primary flow at Fabri choking plane. Physical constraint, which is that primary flow pressure and secondary flow pressure are same at Fabri choking plane, is added. In conclusion, it agrees well with experiments in case of small contracting angle of mixing chamber, under 4degrees.

Theoretical Analysis of an Annular Injection Supersonic Ejector Equipped with a Second-Throat (이차목을 갖는 환형 분사 초음속 이젝터 이론 해석)

  • Kim, Se-Hoon;Jin, Jung-Kun;Kwon, Se-Jin
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.29 no.12 s.243
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    • pp.1285-1290
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    • 2005
  • A theoretical analysis of an annular injection supersonic ejector equipped with a second-throat was developed under the assumption that the secondary flow is choked aerodynamically by interaction with primary flow in the mixing chamber. The predicted secondary flow pressure agrees reasonably well with the measurements. Using the analysis, the compression ratio, the secondary flow Mach number, and the location of the choking point were presented in terms of entrainment ratio.

Study of Starting Pressure of a Supersonic Ejector with a Second-Throat (이차목을 갖는 초음속 이젝터 작동압력에 대한 연구)

  • Jin, Jung-Kun;Kwon, Se-Jin;Kim, Se-Hoon
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.29 no.8 s.239
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    • pp.934-939
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    • 2005
  • Starting pressure of a supersonic ejector with a second-throat was investigated. In case of mixing chamber length longer than a critical length, starting pressure is in proportion to length of the mixing chamber. In this study, we assumed that the ejector starts when the primary supersonic flow reaches inlet of the second-throat and the distance of the supersonic flow traveling can be expressed by multiplying an empirical factor to the first diamond shock length of overexpanded flow. To calculate the overexpanded supersonic flow, a mixing model was employed to compute secondary flow pressure and the result was applied to back pressure condition of overexpanded flow calculation. In the result, for three cases of primary nozzle area ratio, we could get accurate model of predicting the starting pressure by selecting a suitable empirical factors around 3.

Numerical Study on Supersonic Flow in the Second Throat Ejector-Diffuser System (이차목 이젝터/디퓨저 시스템을 통하는 초음속 유동에 관한 수치해석적 연구)

  • 김희동;이영기;서태원;김윤곤
    • Proceedings of the Korean Society of Propulsion Engineers Conference
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    • 1998.04a
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    • pp.14-14
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    • 1998
  • The ejector is a device which employs a high-velocity primary motive fluid to entrain and accelerate a slower moving secondary suction fluid. The resulting kinetic energy of the mixture is subsequently used for self-compression to a higher pressure, thus performing the function of a compressor. The outstanding advantages of the ejectors are simplicity and reliability. However the industrial use of ejectors has been confined mainly to very particular cases of operation. The experimental results obtained so far were insufficient to be made use of general cases. Large-sized modern ejectors, mainly driven by high powered air-compressors and designed for very wide ranges of operating conditions, cannot be based on the earlier research results, if we wish to be sure of the final outcome.

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