• Title/Summary/Keyword: Standard facility

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Development and Validation of MARS-KS Input Model for SBLOCA Using PHWR Test Facility (중수로 실증 실험설비를 이용한 소형냉각재상실사고의 MARS-KS 입력모델 개발 및 검증계산)

  • Baek, Kyung Lok;Yu, Seon Oh
    • Journal of the Korean Society of Safety
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    • v.36 no.2
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    • pp.111-119
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    • 2021
  • Multi-dimensional analysis of reactor safety-KINS standard (MARS-KS) is a thermal-hydraulic code to simulate multiple design basis accidents in reactors. The code has been essential to assess nuclear safety, but has mainly focused on light water reactors, which are in the majority in South Korea. Few previous studies considered pressurized heavy water reactor (PHWR) applications. To verify the code applicability for PHWRs, it is necessary to develop MARS-KS input decks under various transient conditions. This study proposes an input model to simulate small-break loss of coolant accidents for PHWRs. The input model includes major equipment and experimental conditions for test B9802. Calculation results for selected variables during steady-state closely follow test data within ±4%. We adopted the Henry-Fauske model to simulate break flow, with coefficients having similar trends to integrated break mass and trip time for the power supply. Transient calculation results for major thermal-hydraulic factors showed good agreement with experimental data, but further study is required to analyze heat transfer and void condensation inside steam generator u-tubes.

Experimental testing and evaluation of coating on cables in container fire test facility

  • Aurtherson, P. Babu;Hemanandh, J.;Devarajan, Yuvarajan;Mishra, Ruby;Abraham, Biju Cherian
    • Nuclear Engineering and Technology
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    • v.54 no.5
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    • pp.1652-1656
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    • 2022
  • Fire tests were conducted on cables using fire-retardant paint employed in nuclear power plants that transmit electrical power, control and instrument signals. The failure criteria of various power and control cables coated with fire retardant coating at three different coating thicknesses (~0.5 mm, 1.0 mm & 1.5 mm) were studied under direct flame test using Container Fire Test Facility (CFTF) based on standard tests for bare cables. A direct flame fire test was conducted for 10 min with an LPG ribbon burner rated at ten by fixing the cable samples in a vertical cable track. Inner sheath temperature was measured until ambient conditions were achieved by natural convection. The cables are visually evaluated for damage and the mass loss percentage. Cable functionality is ascertained by checking for electrical continuity for each sample. The thickness of cable coating on fire exposure is also studied by comparing the transient variation of inner sheath temperature along the Cable length. This study also evaluated the adequacy of fire-retardant coating on cables used for safety-critical equipment in nuclear power plants.

Airborne Fine Particle Measurement Data Analysis and Statistical Significance Analysis (공기중 미세입자 측정 데이터 분석 및 통계 유의차 분석)

  • Sung Jun An;Moon Suk Hwan
    • Journal of the Semiconductor & Display Technology
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    • v.22 no.1
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    • pp.1-5
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    • 2023
  • Most of the production process is performed in a cleanroom in the case of facilities that produce semiconductor chips or display panels. Therefore, environmental management of cleanrooms is very important for product yield and quality control. Among them, airborne particles are a representative management item enough to be the standard for the actual cleanroom rating, and it is a part of the Fab or Facility monitoring system, and the sequential particle monitoring system is mainly used. However, this method has a problem in that measurement efficiency decreases as the length of the sampling tube increases. In addition, a statistically significant test of deterioration in efficiency has rarely been performed. Therefore, in this study, the statistically significant test between the number of particles measured by InSitu and the number of particles measured for each sampling tube ends(Remote). Through this, the efficiency degradation problem of the sequential particle monitoring system was confirmed by a statistical method.

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Analysis of the needs of forest healing facilities for female cancer survivors

  • Eun Kum Lee;Bum Jin Park
    • Korean Journal of Agricultural Science
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    • v.50 no.4
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    • pp.735-747
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    • 2023
  • This study was conducted to identify the appropriate space requirements for forest healing program for physical and mental health care of female cancer survivors in their 40s and 60s. From September to November 2023, 12 cancer survivors were surveyed at Chungnam National University Forest and Daejeon Healing Forest. One Forest Therapy instructor and two researchers conducted a forest healing program once a week for eight sessions of two hours each, Perceptions and satisfaction with the program and space were assessed using pre and post program questionnaires, and the effect of participation in the forest healing program on mood status was evaluated. The satisfaction survey results were supplemented by qualitative studies conducted through post-interviews. Result of the analysis showed that the satisfaction of the participants was very high (4.8/5.0). There was a notable increase in vigor and a decrease in total mood disturbance after participation in the program. Toilets and water facilities (11), tool boxes (9), pest control facilities (3), deck facilities (3), forest hut (3), electrical outlets (2), shade shelters (2), and shoe hairy (1) were proposed as required facilities for cancer survivors. This study demonstrated that the forest healing program is effective in reducing distress in female cancer survivors in their 40s and 60s and appropriate facility standards for the forest healing space are needed to increase the satisfaction of cancer survivors.

Economic implications of optimal operating conditions in a full-scale continuous intermittent cycle extended aeration system (ICEAS) (실규모 연속유입간헐폭기 공정(ICEAS)에서 최적운전조건이 경제성에 미치는 영향)

  • Yong-jae Jeong;Yun-Seong Choi;Seung-Hwan Lee
    • Journal of Korean Society of Water and Wastewater
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    • v.38 no.1
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    • pp.29-38
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    • 2024
  • Wastewater management is increasingly emphasizing economic and environmental sustainability. Traditional methods in sewage treatment plants have significant implications for the environment and the economy due to power and chemical consumption, and sludge generation. To address these challenges, a study was conducted to develop the Intermittent Cycle Extended Aeration System (ICEAS). This approach was implemented as the primary technique in a full-scale wastewater treatment facility, utilizing key operational factors within the standard Sequencing Batch Reactor (SBR) process. The optimal operational approach, identified in this study, was put into practice at the research facility from January 2020 to December 2022. By implementing management strategies within the biological reactor, it was shown that maintaining and reducing chemical quantities, sludge generation, power consumption, and related costs could yield economic benefits. Moreover, adapting operations to influent characteristics and seasonal conditions allowed for efficient blower operation, reducing unnecessary electricity consumption and ensuring proper dissolved oxygen levels. Despite annual increases in influent flow rate and concentration, this study demonstrated the ability to maintain and reduce sludge production, electricity consumption, and chemical usage. Additionally, systematic responses to emergencies and abnormal situations significantly contributed to economic, technical, and environmental benefits.

A Study on Method to Decide Location to Install Integrated Standard Controller Utilizing Centroid Method (센트로이드기법을 활용한 통합표준제어기 설치위치 결정방법에 관한 연구)

  • Kim, Gyeong-Seok
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.14 no.4
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    • pp.1-9
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    • 2015
  • Since logical ground and method to deduct location to install Integrated Standard Controller under development to combine physically and functionally multiple enclosures of controllers for various ITS equipments on streets into one enclosure, there are much difficulty to apply it to site. Particularly we need to establish standardized methodology to deduct optimal location to integrate individual controllers installed dispersedly on streets such as node part and line part. Accordingly this study has the purpose of suggesting more reasonable and efficient methodology to determine location for Integrated Standard Controller to be developed newly. For this, new solution has been searched by using centroid which is utilized to decide facility location in urban planning. As the result of analysis, central point among centroid, in which equal connection to each equipment is possible is proved to be the most reasonable and correct coordinate and zone is proposed as installation location through designating coordinate system. The methodology suggested by this study seems to have high degree of utilization in site according to expansion of integrated standard controller market.

Design and fabrication of a standard plastic garbage bag recognition system at automatic garbage facility (자동 쓰레기 집하 시설용 종량제 봉투 인식 장치 설계 및 제작)

  • Kim, Gye-Kuk;Seo, Chang-Ok
    • Journal of the Korea Society of Computer and Information
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    • v.17 no.9
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    • pp.85-90
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    • 2012
  • Today many people are greatly interested in the environment. Especially increasing affluent of food causes a great amount of food waste. To handle this effectively, we now have a lot of problems of disposing garbage all over the world. In Korea, in order to reduce this garbage, we should use a standard plastic garbage bag in which we have to throw away our garbage. So it has an effect on significantly reducing the waste amount every year. Now, there are a lot of cases that residents use several times a standard plastic garbage bag. The purpose of this study is to develop the recognition device preventing the re-cycling of a standard plastic garbage bag. As a result, we obtain 1% error rate.

A Case Study on the Establishment of Assessment Standards for the Site Selection of Waste Treatment Facility (폐기물 처리시설 입지선정 평가기준 설정에 관한 사례연구)

  • Jung, Jong-Gwan;Jang, Won
    • Journal of Environmental Impact Assessment
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    • v.6 no.2
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    • pp.137-152
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    • 1997
  • The siting process of municipal solid waste treatment facility consists of a structured set of policies that guide the implementation of waste management goals. The main problems of siting process are the social and political context or the community opposition. During the past, the traditional siting process has been obsolete in most pans of the country, so public officials and researchers have tried to experiment with new policies and procedures. A number of controversial issues offer insight into the factors that are related to the local residents opposition to new waste treatment facilities. The purpose of this case study focused on the establishment of criteria in the site selection of waste treatment facilities which can carry out resources recovery. incineration and landfill simultaneously. That is to say. the main points are to make concrete the quantification standards of assignment and take an objective allotment scale according to the assessment factors. The summarized results are as follows; 1. To promote the site selection based on the guideline such as rational. objective and due process of law, it is desirable to inform the local residents the methods of assessment in advance. 2. Totally 20 factors for the site selection are divided into 3 categories such as living environment characteristics, technological location characteristics and socio-economic factors. And the supposed magnitude of weight in all items are equally applied. 3. In regard to 20 assessment factors, the allotment of point is distributed by the specific location characteristics. Namely to make the assessment easily, each factors are set the scale from 1 to 5 points en masse along the data which are acquired in the region.

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The Development of a Quality Measurement Tool for a Contract-Managed Hospital Foodservice (병원 위탁급식 품질관리를 위한 품질평가도구 개발)

  • 양일선;김현아;이영은;박문경;박수연
    • Korean Journal of Community Nutrition
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    • v.8 no.3
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    • pp.319-326
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    • 2003
  • The purposes of this study were: a) to develop the a quality measurement tool for the contract-managed hospital foodservice, and b) to evaluate their performance with the developed quality measurement tool, and c) to verify the reliability and validity of the quality measurement tool. The developed quality measurement tool comprised two parts, which were foodservice management and medical nutrition care service. The foodservice management part was classified into six functional categories which were Menu, Procurement and Storage, Production and Distribution, Facility and Utility, Sanitation and Safety, and Management and Evaluation. The medical nutrition care service part indicated the medical nutrition care provided. Quality measurement tool had 91 standards and 324 indicators. The quality measurement tools were distributed to the hospital foodservice manager employed by the foodservice company. The 324 indicators were measured by foodservice manager on the 5-Likert-type scales, and then adapted to a 100 point scale. The SPSS Ver. 11.0 was used for statistical analysis. The categories whose scores were evaluated as being high were Procurement', General Sanitation', Personal sanitation' and Waste' and the categories whose scores were evaluated as being low were Diet Order Manual', Standard Recipe', Appropriateness (Facility and Utility)', Check (Facility and Utility)'and Information Management'. All the categories of medical nutrition service were evaluated as having seriously low scores. Therefore, it was necessary for the contract-managed hospital foodservice to improve its performance in the area of medical nutrition care service. For the verification of the developed quality measurement tool, the reliability obtained by calculating Cronbach's α was 0.8747, and the content validity was also proved by scrutiny of the modification of the Professional group's techniques. (Korean J Community Nutrition 8(3) : 319∼326, 2003)

Cost-Effectiveness Analysis of Low-Impact Development Facilities to Improve Hydrologic Cycle and Water Quality in Urban Watershed (도시유역의 물순환 및 수질 개선을 위한 저영향개발 시설의 비용 효율 분석)

  • Choi, Jeonghyeon;Kim, Kyungmin;Sim, Inkyeong;Lee, Okjeong;Kim, Sangdan
    • Journal of Korean Society on Water Environment
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    • v.36 no.3
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    • pp.206-219
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    • 2020
  • As urbanization and impermeable areas have increased, stormwater and non-point pollutants entering the stream have increased. Additionally, in the case of the old town comprising a combined sewer pipe system, there is a problem of stream water pollution caused by the combined sewer overflow. To resolve this problem, many cities globally are pursuing an environmentally friendly low impact development strategy that can infiltrate, evaporate, and store rainwater. This study analyzed the expected effects and efficiency when the LID facility was installed as a measure to improve hydrologic cycle and water quality in the Oncheon stream in Busan. The EPA-SWMM, previously calibrated for hydrological and water quality parameters, was used, and standard parameters of the LID facilities supported by the EPA-SWMM were set. Benchmarking the green infrastructure plan in New York City, USA, has created various installation scenarios for the LID facilities in the Oncheon stream drainage area. The installation and maintenance cost of the LID facility for scenarios were estimated, and the effect of each LID facility was analyzed through a long-term EPA-SWMM simulation. Among the applied LID facilities, the infiltration trench showed the best effect, and the bio-retention cell and permeable pavement system followed. Conversely, in terms of cost-efficiency, the permeable pavement systems showed the best efficiency, followed by the infiltration trenches and bio-retention cells.