• Title/Summary/Keyword: Evaluation of Circulation

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Development and validation of a portable gas chromatograph method for quantitative determination of oxygen and toxic gas impurities in medical oxygen using planar microchromatographic columns and detectors

  • Ekaterina V. Galeeva;Roman R. Galeev;Prachi Sharma;Alexander l. Khokhlov;Dmitry V. Somov;Dmitry A. Semanov;Ilshat R. Aryslanov;Natalia А. Lezhnina;Vladimir Platonov;Nishant Tripathi
    • Analytical Science and Technology
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    • v.37 no.5
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    • pp.261-270
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    • 2024
  • This study examines portable Gas Chromatography (GC) for the quantitative analysis of oxygen and impurities, focusing on the development and validation of a method to determine oxygen, carbon monoxide, carbon dioxide, methane, and nitrogen in medical compressed oxygen gas. The goal is to ensure the quality of medicalgrade oxygen. The method's validation assessed its metrological characteristics, demonstrating specificity through clear chromatographic separation of the target gases and the absence of these peaks in the carrier gas chromatogram. It exhibited linearity within the designated concentration ranges, while precision met permissible standards, with the relative standard deviation for intermediate precision being less than 4% for carbon monoxide (0.00025 - 0.00099 %), less than 3 % for methane (0.0005 - 0.00246%) and carbon dioxide (0.0050 - 0.0150 %), less than 2% for nitrogen (0.1 - 0.7 %), and less than 0.01% for oxygen (99.27 - 99.98%). Overall, the validation results confirm the suitability of this analytical method for the quantitative determination of the aforementioned gases in medical compressed oxygen using portable GC with microchromatographic columns and detectors.

Evaluation of Transient Natural Circulation Behavior during Accident in Low Power /Shutdown Condition of YGN Units 3/4

  • Bang, Young-Seok;Kim, Kap;Seul, Kwang-Won;Kim, Hho-Jung
    • Proceedings of the Korean Nuclear Society Conference
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    • 1997.05a
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    • pp.458-463
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    • 1997
  • A transient natural circulation behavior during a LOCA at hot-standby operation is evaluated for YGN Units 3/4. The plant initial condition is determined within the EOP limitation as suitable to hot-standby mode and the transient scenario is prepared as relevant to evaluation of transient natural circulation. A 0.4% cold leg break with loss of off-site power is calculated with RELAP5/MOD3.2, whose predictability has been verified for SBLOCA natural circulation test, S-NC-8B. Through one hour transient analysis, it is found that the plant has its own decay heat removal capability by natural circulation following a LOCA, at hot-standby mode. Additional calculation is performed to investigate an effect of HPSI flow on natural circulation.

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Assessment of MARS-KS prediction capability for natural circulation flow in passive heat removal system

  • Jehee Lee;Youngjae Park;Seong-Su Jeon;Ju-Yeop Park;Hyoung Kyu Cho
    • Nuclear Engineering and Technology
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    • v.56 no.8
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    • pp.3435-3449
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    • 2024
  • Considering that system analysis codes are used for the evaluation of the performance of Passive Safety Systems (PSSs), it is important to investigate the capability of the system analysis code to reliably predict the heat transfer and natural circulation flow, which are the main phenomena governing the performance of a PSS. Since MARS-KS has been widely validated for heat transfer models, this study focuses on evaluating its capability to predict the single and two-phase pressure drops and natural circulation flow. The straight pipe simulation results indicate that the pressure drop predictions are reliable within ±5 % error margin for the single-phase flow and the errors of pressure drop up to - 30 % for the two-phase flow. Through single-phase natural circulation flow analysis, it is concluded that the use of the appropriate K-factor modeling based on the flow regimes is important since the natural circulation flow rate in MARS-KS is mainly affected by the form loss factor modeling. With two-phase natural circulation flow analysis, this study emphasizes the behavior of the system could change significantly depending on the two-phase wall friction and pressure loss modeling. With the analysis results, modeling considerations for the PSS performance evaluation with the system analysis codes are proposed.

BIM-enabled Quantitative Indicators for Analyzing Building Circulation in Early Phase of Design (설계초기 동선 분석을 위한 BIM기반 정량 평가지표 및 평가체계에 관한 연구)

  • Shin, Jaeyoung;Lee, Jin-Kook
    • Korean Institute of Interior Design Journal
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    • v.25 no.4
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    • pp.147-155
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    • 2016
  • In order to ensure a certain level of the quality of design, standardized evaluation indicators are being used as an objective criterion. Even though the evaluation indicators are quantifiable, limitations such as inefficiency and inconsistency caused by manual task in the evaluation process still have been found. BIM (Building Information Modeling) technology that is commonly adopted in architectural design process provides an environment which enables us to figure out a building model to be interpreted quantitatively with the basis of the building information model. It supports quantitative, consistent, accurate and quick evaluations so as to improve quality of design even in the initial design phase. This paper aims to establish BIM-enabled quantitative indicators and an evaluation framework to analyze building circulation even in early phase of design. The indicators are composed of 4 types (relative distance, accessibility, simplicity, pedestrian friendliness) and 7 sub-types. The evaluation framework is the process to derive Parameterized Path Value (PPV) as weighting on each indicator. For demonstrating the scalability of the suggested evaluation indicators and the framework, the authors implemented an evaluation tool and a case study has been carried out by using an actual building remodel project.

Impact Assessment of Agricultural Reservoir and Landuse Changes on Water Circulation in Watershed (농업용 저수지와 토지이용변화가 유역 물순환에 미치는 영향 평가)

  • Kim, Seokhyeon;Song, Jung-Hun;Hwang, Soonho;Kang, Moon Seong
    • Journal of The Korean Society of Agricultural Engineers
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    • v.63 no.2
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    • pp.1-10
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    • 2021
  • Agricultural reservoirs have a great influence on the water circulation in the watershed. It is necessary to evaluate the impact on water circulation by the agricultural reservoir. Therefore, in this study, we simulated the agricultural watershed through linkage of Hydrological Simulation Program Fortran (HSPF) and Module-based hydrologic Analysis for Agricultural watershed (MASA) and evaluated the contribution of the agricultural reservoir to water circulation by watershed water circulation index. As a result of simulating the Idong reservoir watershed through the HSPF-MASA linkage model, the model performance during the validation period was R2 0.74 upstream, 0.78 downstream, and 0.76 reservoir water level, respectively. To evaluate the contribution of agricultural reservoirs, three scenarios (baseline, present state, and present state without reservoir) were simulated, and the water balance differences for each scenario were analyzed. In the evaluation through the agricultural water circulation rate in the watershed, it was found that the water circulation rate increased by 1.1%, and the direct flow rate decreased by 13.6 mm due to the agricultural reservoir. In the evaluation through the Budyko curve, the evaporation index increased by 0.01. Agricultural reservoirs reduce direct runoff and increase evapotranspiration, which has a positive effect on the water circulation.

Criteria for Evaluating the Architectural Planning of Rapidly Converted Negative Pressure Isolation Unit (중증환자 긴급치료병상의 건축계획 평가를 위한 기준 도출)

  • Park, Seowon;Kwon, Soonjung
    • Journal of The Korea Institute of Healthcare Architecture
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    • v.30 no.4
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    • pp.25-32
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    • 2024
  • Purpose: This study aims to establish evaluation criteria for rapidly converted negative pressure isolation unit(RCNIU) by converting general wards into infectious disease isolation wards, addressing the lack of standards for evaluating existing facilities. The goal is to provide reference data for facility planning and improve the performance of rapidly converted negative pressure isolation units. Methods: Installation standards and existing evaluation criteria for infectious disease isolation wards in Korea were analyzed to create a framework for RCNIU evaluation. An evaluation table was developed, categorizing items into importance levels. Expert surveys in hospital architecture and medical welfare provided average values for scoring each item. Results: Evaluation criteria were organized into 'required provision of space, installation conditions, proper location, and circulation plan.' Key items included 'installation of inpatient rooms and attached toilets in the negative pressure area' and 'securing a single bed room area of 11.6m2 or more'. The "separation of clean and contaminated circulation was also highlighted as critical. Overall, room size, negative pressure conditions, and circulation planning were the most significant factors. Implications: Systematic evaluation criteria can enhance the functionality of RCNIU. Further research should analyze hospital layouts and apply the framework to assess existing facilities, guiding future improvements.

Evaluation of Thermal Performance in a Stadium with Air Circulation System (공기순환 시스템이 설치된 경기장 공간의 열성능 평가)

  • Kim, Kyung-Hwan;Im, Yoon-Chul;Lee, Jae-Heon;Oh, Myung-Do;Park, Myung-Sig;Lee, Dae-Woo;Park, Young-Woo
    • Proceedings of the KSME Conference
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    • 2001.06d
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    • pp.170-174
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    • 2001
  • In this paper, CFD technique has been used at design stage to predict space air distribution in a cycle stadium with air circulation system. An air circulation flow of 0.67 rev./min was observed at computed results in the stadium space with and without air circulation system. Comparing the thermal comfort of the two models with or without air circulation system showed that the thermal environment in the former was superior in the latter. Energy savings could be achieved for the model with air circulation due to its lower air inflow temperature.

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A Study on the Circulation Planning of Multi Shopping Mall with User Evaluation (사용자 평가를 통한 복합쇼핑몰 동선 계획 연구)

  • Kim, Ji Soo;Hwang, Yeon Sook
    • Design Convergence Study
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    • v.15 no.5
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    • pp.55-70
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    • 2016
  • Multi shopping malls provide us new life-style nowadays with the term, malling. Multi shopping malls are consisted of selling space, entertainment space and convenience space so that arrangement and circulation planning of each facilities have large influence to users. Based on this influences, this study aims to provide basic data for multi shopping malls' circulation planning. Therefore, this study selected 6 multi shopping malls in Seoul and conducted survey that satisfaction of circulation planning of multi shopping malls. For user satisfaction investigation, we studied concept of multi shopping mall following Korean building act and selected composition and characteristics of circulation. Also, we classified the malls to size and circulation shapes for comparison of the satisfaction results. Classified types are high-rise and low-rise and they are separated to small size and big size. In addition, classified circulation shapes are categorized to net type, loop type, cyclical loop type and multi type by forms of central space and main stream of the malls.

Development and evaluation of women's leggings prototype for improvement of blood circulation through flexible heating surface and gradual compression (점진적 컴프레션 및 유연면상발열을 통한 혈액순환 개선 여성 레깅스 프로토타입 개발 및 평가)

  • Jin Hee Hwang;Yun Ah Lee;Seung Hyun Jee;Sun Hee Kim
    • Journal of the Korea Fashion and Costume Design Association
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    • v.25 no.3
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    • pp.53-67
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    • 2023
  • Blood circulation is one of the most important life support functions of our body. It is essential to maintain healthy blood circulation as problems with blood circulation can lead to numerous diseases and serious complications. This study developed women's leggings with gradual compression and soft surface heating functions to improve blood circulation, and evaluated their performance and wearability. A silicon print pattern was developed to provide gradual compression, and a flexible heating surface coated with MWCNT (multi-walled carbon nanotube) conductive ink was fabricated for comfort and thermal effect. For the design, incision lines and materials were applied in consideration of aesthetic aspects, and design lines and colors were altered using a 3D program. The developed leggings showed that blood circulation can be improved when gradual compression and heating functions are simultaneously applied. Results were confirmed through measurements of clothing pressure, blood flow, and surface temperature. In the subjective wearability evaluation, it was confirmed that wearers felt gradual pressure, and they showed high satisfaction with wearability and design.