• 제목/요약/키워드: DEMO

검색결과 152건 처리시간 0.029초

일본어 극어 dare-mo/-demo의 의미 연구 (A semantic analysis of Polarity Items dare-mo/-demo in Japanese)

  • 변현아;이정민;남승호;정대호;최진영
    • 한국인지과학회:학술대회논문집
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    • 한국인지과학회 2000년도 춘계 학술대회
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    • pp.114-120
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    • 2000
  • 본고는 일본어 극어 dare-mo/-demo의 의미를 밝히고 나아가 그 허용맥락을 제시하는 것에 목적을 둔다. 이를 위해 본고는 dare-mo/-demo의 의미가 다음 네 가지 요인에 의해 결정된다고 주장한다: 첫째는 변항적 성격의 비한정사 dare이고 둘째는 고저강세 유형, 셋째는 가능성의 척도(Likelyhood Scale)에 기반한 -mo/demo의 의미, 마지막으로는 이러한 척도를 형성시켜주는 맥락(context)이다. 이 네 가지 요인이 상호 작용하여, daRE-MO/DAre-mo/daRE-DEMO/DAre-demo 각각의 의미를 만들어 낸다. 또한 본고는 dare-mo/-demo의 분포를 통해 드러나는 극어들 사이의 의미 차이를 척도(scale)상의 양(quantity)과 질(quality)이라는 측면에서 제시하였다. 즉 -mo 결합형의 경우 양에 민감한 가능성의 척도가 고려되는 것에 비해, -demo 결합형에서는 양뿐 아니라 질에도 민감한 척도가 고려된다. 그 결과 -demo 결합형들은, 양적 측면과 연관하여 조건/명령/외연적 맥락 등에서 존재 양화의 의미로 해석될 수 있다. 또한 질적인 면에서 하한가(lower bound)까지 허용하는 강한 양보의 의미(derogative sense)를 갖는다는 점에서 특징적이다.

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TRL과 AHP를 적용한 핵융합 실증로 핵심기술 도출 (Core Technologies Derivation of Fusion DEMO Reactor Applying TRL and AHP)

  • 장한수;김유빈;최원재;도현수
    • 기술혁신연구
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    • 제22권4호
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    • pp.145-164
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    • 2014
  • 미래의 궁극에너지로 인식되고 있는 핵융합에너지 개발을 위해서는 DEMO라는 최종 실증 단계를 거쳐야만 한다. 특히 중국, EU, 일본 등의 주요 국가는 DEMO 건설에 대한 구체적 계획을 수립하고 이를 실행 중에 있다. 한국도 1995년부터 KSTAR 사업을 시작으로 핵융합 연구개발에 착수한 점을 감안하면, 핵융합에너지 상용화라는 최종 목표달성 뿐만 아니라, 주요 국가와 DEMO 경쟁 상황에서 주도권을 확보하기 위한 본격적 연구개발이 필요하다. 이에 본 논문에서는 DEMO 개발을 위한 핵심기술을 파악하기 위하여 준정량적 방법론을 적용, 해당 분야의 핵심기술을 도출함으로써 우선적으로 연구개발이 필요한 기술을 식별하여 향후 연구개발 추진시 기술별 우선순위를 제안하고자 한다. 이를 위한 핵융합 에너지 개발과 관련하여 핵융합의 과학적 원리, 주요국가의 DEMO 개발 동향 등을 파악한다. 다음으로 핵융합 실증로와 관련된 기술분류 체계를 검토하여 분석할 기술분류 체계를 선정한다. 선정된 기술체계에 준정량적 방법론으로 기술수준(TRL)을 파악하고 이를 보완하기 위하여 분석적 계층화 과정(AHP)을 적용한다. TRL과 AHP의 결과를 종합하여 우선적으로 확보해야 할 핵융합 실증로의 핵심기술은 실증로용 연소 플라즈마 기술, 대면재료기술, 구조재기술, 고주파 가열장치 기술, 중성입자빔 장치기술, 안전기술, 연소플라즈마 진단장치기술, 핵융합로 시뮬레이터기술 등으로 나타났다.

TOKAMAK REACTOR SYSTEM ANALYSIS CODE FOR THE CONCEPTUAL DEVELOPMENT OF DEMO REACTOR

  • Hong, Bong-Guen;Lee, Dong-Won;In, Sang-Ryul
    • Nuclear Engineering and Technology
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    • 제40권1호
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    • pp.87-92
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    • 2008
  • Tokamak reactor system analysis code was developed at KAERI (Korea Atomic Energy Research Institute) and is used here for the conceptual development of a DEMO reactor. In the system analysis code, prospects of the development of plasma physics and the relevant technology are included in a simple mathematical model, i.e., the overall plant power balance equation and the plasma power balance equation. This system analysis code provides satisfactory results for developing the concept of a DEMO reactor and for identifying the necessary R&D areas, both in the physics and technology areas for the realization of the concept. With this system analysis code, the performance of a DEMO reactor with a limited extension of the plasma physics and technology adopted in the ITER design. The main requirements for the DEMO reactor were selected as: 1) demonstrate tritium self-sufficiency, 2) generate net electricity, and 3) achieve a steady-state operation. It was shown that to access an operational region for higher performance, the main restrictions are presented by the divertor heat load and the steady-state operation requirements.

DEMO: Deep MR Parametric Mapping with Unsupervised Multi-Tasking Framework

  • Cheng, Jing;Liu, Yuanyuan;Zhu, Yanjie;Liang, Dong
    • Investigative Magnetic Resonance Imaging
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    • 제25권4호
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    • pp.300-312
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    • 2021
  • Compressed sensing (CS) has been investigated in magnetic resonance (MR) parametric mapping to reduce scan time. However, the relatively long reconstruction time restricts its widespread applications in the clinic. Recently, deep learning-based methods have shown great potential in accelerating reconstruction time and improving imaging quality in fast MR imaging, although their adaptation to parametric mapping is still in an early stage. In this paper, we proposed a novel deep learning-based framework DEMO for fast and robust MR parametric mapping. Different from current deep learning-based methods, DEMO trains the network in an unsupervised way, which is more practical given that it is difficult to acquire large fully sampled training data of parametric-weighted images. Specifically, a CS-based loss function is used in DEMO to avoid the necessity of using fully sampled k-space data as the label, thus making it an unsupervised learning approach. DEMO reconstructs parametric weighted images and generates a parametric map simultaneously by unrolling an interaction approach in conventional fast MR parametric mapping, which enables multi-tasking learning. Experimental results showed promising performance of the proposed DEMO framework in quantitative MR T1ρ mapping.

Comparisons and analysis on the prototype EU-DEMO TF CICC with Nb3Sn cable

  • Kwon, Soun Pil
    • 한국초전도ㆍ저온공학회논문지
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    • 제19권4호
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    • pp.31-39
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    • 2017
  • European R&D on designing their version of a DEMO fusion tokamak has recently resulted in the testing of a prototype $Nb_3Sn$ Cable-in-Conduit Conductor (CICC) for the DEMO TF coil. The characteristics and reported results of low temperature performance tests with the prototype CICC sample are compared with those from CICC samples incorporating other recent $Nb_3Sn$ cable designs. The EU-DEMO TF CICC prototype shows performance characteristics similar to that of the ITER CS CICC with short twist pitch. This is a first for a CICC sample that does not have a circular cross section. Assessment of its internal magnetostatic self-field suggests that a reduction in the internal self-field due to the rectangular geometry of the EU-DEMO TF CICC prototype compared to one with a circular geometry may have contributed to the performance characteristics showing current sharing temperature ($T_{cs}$) initially increase then stabilize with repeated electromagnetic loading, similarly to ITER CS CICC results. However, constraints on the internal self-field are not a sufficient condition for this $T_{cs}$ characteristic to occur.

PRELIMINARY ESTIMATION OF ACTIVATED CORROSION PRODUCTS IN THE COOLANT SYSTEM OF FUSION DEMO REACTOR

  • Noh, Si-Wan;Lee, Jai-Ki;Shin, Chang-Ho;Kwon, Tae-Je;Kim, Jong-Kyung;Lee, Young-Seok
    • Journal of Radiation Protection and Research
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    • 제37권2호
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    • pp.63-69
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    • 2012
  • The second phase of the national program for fusion energy development in Korea starts from 2012 for design and construction of the fusion DEMO reactor. Radiological assessment for the fusion reactor is one of the key tasks to assure its licensability and the starting point of the assessment is determination of the source terms. As the first effort, the activities of the coolant due to activated corrosion product (ACP) were estimated. Data and experiences from fission reactors were used, in part, in the calculations of the ACP concentrations because of lack of operating experience for fusion reactors. The MCNPX code was used to determine neutron spectra and intensities at the coolant locations and the FISPACT code was used to estimate the ACP activities in the coolant of the fusion DEMO reactor. The calculated specific activities of the most nuclides in the fusion DEMO reactor coolant were 2-15 times lower than those in the PWR coolant, but the specific activities of $^{57}Co$ and $^{57}Ni$ were expected to be much higher than in the PWR coolant. The preliminary results of this study can be used to figure out the approximate radiological conditions and to establish a tentative set of radiological design criteria for the systems carrying coolant in the design phase of the fusion DEMO reactor.

건축설계 학습부진자들의 건축적 사고 개선을 위한 데모 기반 설계수업 운영모형 개발 및 활용 사례연구 (A Study on Development and Use of a Demonstration-Based Architectural Design Class Operation Model for Improving Architectural Thinking Abilities of Under-Motivated Learners)

  • 이도영;정현미
    • 대한건축학회논문집:계획계
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    • 제36권3호
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    • pp.49-58
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    • 2020
  • Based on Merrill's instructional theory, this study pursued to develop a demonstration-based architectural design class operation model for the 3rd year undergraduate students taking a Spring semester design studio class. The model was designed and used particularly to improve architectural thinking abilities of under-motivated learners. Learning effects of the model were examined based on the preliminary data obtained for 3 consecutive years, 2017 through 2019. A total of 52 students were participated in the class and observed by the instructor. Once developed, the model has been continually updated and improved based on results of each class operation. Five types of demo. were used in the model. First, direct contacts of the instructor with under-motivated learners were turned out to be the most preferred demo(demo. 4), while watching and listening of the demo(demo.3) between the instructor and motivated learners taking place in class was ranked at the second place. Belief of under-motivated learners on the instructor as a professional should be highly valued for improving their architectural thinking abilities. Second, motivated peers' direct help for under-motivated ones was placed in the third rank. Social attitudes of under-motivated learners towards accepting motivated ones' helps were determined the particular demo's appropriateness. Third, a set of guidelines for operating the model in undergraduate design studio classes were developed and suggested.

일일 10톤 DME 생산 Demo Plant에서의 분리정제 공정 (SEPARATION AND PURIFICATION PROCESS OF DEMO PLANT FOR 10TON PER DAY DME PRODUCTION)

  • 나영진;조원일;신동근;임계규
    • 한국가스학회:학술대회논문집
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    • 한국가스학회 2005년도 추계학술발표회 논문집
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    • pp.141-145
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    • 2005
  • DME (Di-Methyl Ether) is a new clean fuel and an environmental-friendly energy resource, also is recently increasing with an alternative interest because of the industrial use. DME has been shown to have excellent properties as a diesel fuel giving emission level better than ULEV standard. So it has been attracting considerable as an alternative diesel fuel. In this study, we carried out simulation of separation and purification process of demo plant for 101on per day DME production, which cause the effect that is important in productivity, from operation results of pilot plant for 50kg per day DME production. The liquefied stream, which was separated by gas-liquid separator after DME reactor, includes $CO_2$, DME, Methanol and $H_2O$. We established three distillation columns for separation and purification of the stream. $CO_2$ was extracted from the stream by first distillation column, DME was extracted by second column and Methanol was extracted by third column. We investigated and analyzed the effect which the actual operation variables cause in efficiency of process and optimized process, finally we got the DME of purity $100\%$.

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