• 제목/요약/키워드: simulation of concrete structure

검색결과 273건 처리시간 0.022초

A study on the action mechanism of internal pressures in straight-cone steel cooling tower under two-way coupling between wind and rain

  • Ke, S.T.;Du, L.Y.;Ge, Y.J.;Yang, Q.;Wang, H.;Tamura, Y.
    • Wind and Structures
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    • 제27권1호
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    • pp.11-27
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    • 2018
  • The straight-cone steel cooling tower is a novel type of structure, which has a distinct aerodynamic distribution on the internal surface of the tower cylinder compared with conventional hyperbolic concrete cooling towers. Especially in the extreme weather conditions of strong wind and heavy rain, heavy rain also has a direct impact on aerodynamic force on the internal surface and changes the turbulence effect of pulsating wind, but existing studies mainly focus on the impact effect brought by wind-driven rain to structure surface. In addition, for the indirect air cooled cooling tower, different additional ventilation rate of shutters produces a considerable interference to air movement inside the tower and also to the action mechanism of loads. To solve the problem, a straight-cone steel cooling towerstanding 189 m high and currently being constructed is taken as the research object in this study. The algorithm for two-way coupling between wind and rain is adopted. Simulation of wind field and raindrops is performed with continuous phase and discrete phase models, respectively, under the general principles of computational fluid dynamics (CFD). Firstly, the rule of influence of 9 combinations of wind sped and rainfall intensity on flow field mechanism, the volume of wind-driven rain, additional action force of raindrops and equivalent internal pressure coefficient of the tower cylinder is analyzed. On this basis, the internal pressures of the cooling tower under the most unfavorable working condition are compared between four ventilation rates of shutters (0%, 15%, 30% and 100%). The results show that the 3D effect of equivalent internal pressure coefficient is the most significant when considering two-way coupling between wind and rain. Additional load imposed by raindrops on the internal surface of the tower accounts for an extremely small proportion of total wind load, the maximum being only 0.245%. This occurs under the combination of 20 m/s wind velocity and 200 mm/h rainfall intensity. Ventilation rate of shutters not only changes the air movement inside the tower, but also affects the accumulated amount and distribution of raindrops on the internal surface.

컨테이너 보안 검색용 9 MeV 전자 선형가속기에서 발생한 방사화 특성평가에 관한 연구 (A Study on Activation Characteristics Generated by 9 MeV Electron Linear Accelerator for Container Security Inspection)

  • 이창호;김장오;이윤지;전찬희;이지은;민병인
    • 한국방사선학회논문지
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    • 제14권5호
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    • pp.563-575
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    • 2020
  • 본 연구 목적은 컨테이너 보안 검색용 선형가속기에서 발생하는 방사화 특성을 평가하는 것이다. 전산모사 설계는 첫째, 표적은 텅스텐(Z=74) 단일물질 표적 및 텅스텐(Z=74)과 구리(Z=29) 복합물질 표적으로 구성하였다. 둘째, 부채꼴(Fan beam) 조준기는 물질에 따라 납(Z=82) 단일 물질과 텅스텐(Z-74)과 납(Z=82)의 복합물질로 구성하였다. 셋째 선형가속기가 위치한 방(Room)의 콘크리트는 Magnetite type 및 불순물(Impurity)을 포함하였다. 연구 방법은 첫째, MCNP6 코드를 이용하여 선형가속기 및 구조물을 F4 Tally로 광중성자 플럭스(Flux)를 계산하였다. 둘째, MCNP6 코드에서 계산된 광중성자 플럭스를 FISPACT-II에 적용하여 방사화 생성물을 평가하였다. 셋째, 방사화 생성물의 비방사능을 통해 해체 평가를 진행하였다. 그 결과 첫째, 광중성자 분포는 표적에서 가장 높게 나왔으며, 조준기 및 10 cm 깊이의 콘크리트 순으로 나타났다. 둘째, 방사화 생성물은 텅스텐 표적 및 조준기에서 W-181, 불순물이 포함된 콘크리트에서 Co-60, Ni-63, Cs-134, Eu-152, Eu-154 핵종이 부산물(by-product)로 생성되었다. 셋째, 해체 시 텅스텐 표적은 90일 이후 자체 처분 허용 농도를 만족하는 것으로 보였다. 이러한 결과는 9 MeV 에너지에서의 광중성자 수율(Yield) 및 방사화 정도가 미미한 것으로 확인할 수 있었다. 하지만, 선형가속기 텅스텐 표적 및 조준기에서 발생한 W-181은 수리를 위한 분해 시 피폭의 영향을 줄 수 있을 것으로 생각된다. 따라서, 본 연구는 컨테이너 보안검색용 선형가속기 방사화된 부품관리에 관한 기초 자료를 제시한 것이다. 또한, 컨테이너 보안 검색용 선형 가속기 해체 시 자체처분을 만족하는 농도 기준을 입증하는데 활용될 수 있을 것으로 기대한다.

중학교용 에너지 교육 자료 개발 연구 (A Study on Development of Energy Education Materials for Middle School Students)

  • 최돈형;이양락
    • 한국환경교육학회지:환경교육
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    • 제7권1호
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    • pp.46-87
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    • 1994
  • Our country has been consuming a huge amount of energy in the course of industrialization and its demand is expected to increase enormously in the future. However, the deposits of energy resources are so limited that the settlement of energy problem comes up the essential subject. To solve the energy problem, it is requested that new resources to gain energy stably should be developed and also energy should be economized and used effectively. The effective use of energy and an the wisdom of economy in energy are requested to everybody and these things should be habitualized from very young age through education. Nevertheless, almost every school in our country hasn’t been concerned about energy education. Even though they have a concern, they are very short of the energy education materials and the quality of the materials is not so good. Therefore it is very meaningful to the settlement of energy problem of the country to make the students who will lead our country to make the students who will lead our country in the future realize the seriousness of energy problem and to provide them the necessary knowledge and methods to solve this problem so that they practice those things in everyday life. Having these necessities, this research, supported by The Korea Energy Management Corporation(KEMCO), was performed for 8 months from April 17, 1994 to December 17, 1994. Many peoples participated in this study such as 30 staffs of researchers and authors, 5 staffs of photographers and illustrators, and 3 VCR program producers developing an energy education material set for middle school students that includes a printed material for student, a diskette for computer simulation, a teacher's guidebook, VCR material and its guidebook. The following main development direction was established : First, the material for student should be consisted of units that let students know the seriousness of energy problem. Second, the focus should be put on the necessary method and practice to economize energy actually in real life based on the basic knowledge learned in elementary school. Third, material for student should be consisted of modules to be student activity-oriented teaching-learning rather than lecture-oriented one. The activity, to maximize student's interests, should be presented in various forms such as experiments, investigation, play, data interpretation, computer simulation, visits, expression and appreciation, etc. To develop the energy education materials for middle school students, a research plan was made first. After literature review about domestic and foreign energy education materials, several research trips home and abroad, and discussion meetings, the basic theory of energy education such as the principle, objective, contents, teaching-learning method, and evaluation method was established. Material for student was developed through the following procedures : The activities in the existing energy education materials were analysed and were divided into four categories related to energy using places of home, school, community, and country, and which were again divided into three categories related to time of past, present, and future, Considering these division, nine modules which are structure units of material for student were chosen, Each module comprises 2-4 activities. Totally 31 activities were designed in this way. The syllabi were made out for each activity and writing was asked for to experts related to each activity after several discussions and revision. To complement the draft, another several discussions and revision were also made on it and then pictures and illustrations were asked for. All these procedures complete the material for student, titled ; Energy Inquiry of Middle School Students', which totals 129 pages and is all in color. As the manuscript of material for student was fixed, writing for teacher's guidebook was asked for to the same writers. The draft of teacher's guidebook was also complemented through the several concentrated works and discussions. Teacher's guidebook focused on the teaching-learning principle and methods of energy education and on the concrete instruction cases for effective instruction of material for student. It is organized with two parts : the one is 'general outline' which introduces theoretical contents and the other is 'details' which are practically helpful to teaching-learning. It is totally 131 pages including both 'general outline' and 'details'. The VCR material and its guidebook consist of contents that cultivate the good attitude trying to economize energy and raise student's interests with a purpose of strong motivation to recognize the necessity of economy and practice it. After establishing development direction of VCR material through discussion meetings and research trips, its script was made by relevant experts. Then the script was also reviewed two times. The drafted VCR material made by a video material developing expert was examined and modified by previews twice. After completion of VCR material, the VCR guidebook was made. All these procedures led to the development of VCR material which runs 20 minutes in VHS type. The VCR guidebook shows a production purpose of the program, structure of contents, evaluation methods, and contents of the program in detail to give help to instructors when they use this VCR material, When these energy education materials are used, it is desirable that the VCR material should be presented first to induce student's motive, and then material for student is introduced Since the material for student is composed of activity-oriented modules and each module is independent one another in general, and each activity is, too. the necessary module or activity can be chosen and utilized in any order according to school or class conditions. This energy education materials will contribute to the development of student's ability to solve energy problem in everyday life and teacher's ability to teach the fundamental knowledge and method in solving energy problem.

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