• Title/Summary/Keyword: 지표 질량

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The Effects of Mass-size Relationship for Snow on the Simulated Surface Precipitation (눈송이의 크기와 질량 관계가 지표 강수 모의에 미치는 영향)

  • Lim, Kyo-Sun Sunny
    • Journal of the Korean earth science society
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    • v.41 no.1
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    • pp.1-18
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    • 2020
  • This study presented the effects of the assumed mass-size relationship for snow on the simulated surface precipitation by using cloud microphysics parameterizations in Weather Research and Forecasting (WRF) model. The selected cloud microphysics parameterizations are WRF Double-Moment 6-class (WDM6) and WRF Single-Moment 6-class (WSM6) in the WRF model. We replaced the mass-size relationship for snow in WDM6 and WSM6 with Thompson's mass-size relationship retrieved from measurement data. The sensitivity of the modified WDM6 and WSM6 was tested for the idealized 2-dimensional squall line and winter precipitation system over the Korean peninsula, respectively. The modified WDM6 and WSM6 resulted in the increase of graupel/rain mixing ratios and the decrease of snow mixing ratio in the low atmosphere. The changes of hydrometeor mixing ratio and surface precipitation could be due to the collision-coalescence process between raindrops and snow and the graupel melting process.

Recovery of Mass Changes in Antarctic Ice-Sheet based on the Regional Climate Model, RACMO (RACMO 기후 모델에 기반한 남극 빙상 질량 변동의 재현)

  • Eom, Jooyoung;Rim, Hyoungrea
    • Economic and Environmental Geology
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    • v.53 no.2
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    • pp.147-157
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    • 2020
  • Mass change in the Antarctic Ice Sheet(AIS) is the most important indicator of changes in Earth's climate system including global mean sea level rise that are largely affected by ongoing global warming. In this study, AIS mass variations are examined with satellite gravity data and outputs from a regional climate model. The analysis of gravity data shows that along the coastal region the Western AIS has experienced a continuous and significant ice loss while a slight increasing in the Eastern AIS during the study period (2002.08-2016.08). The temporal and spatial variations in ice mass changes are recovered by a regional climate model, but the recovered amplitudes are much smaller than those of observations. This under-estimation is remarkably resolved by modifying a base flow field for the ice discharge. The recovered estimates based on the ice-flow field can explain about 97% of the rate of mass change in observations before 2009. This implies that changes in ice flow dynamics along the coast line plays a pivotal role in regulating long-term budget of ice mass in AIS.

Development of FEA-based Metal Sphere Signal Map for Nuclear Power Plant Structure (유한요소해석 기반 원전 기계구조물 충격-질량지표 개발)

  • Moon, Seongin;Kang, To;Han, Soonwoo
    • Transactions of the Korean Society of Pressure Vessels and Piping
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    • v.14 no.1
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    • pp.38-47
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    • 2018
  • For safe operation of nuclear power plants, a loose-part monitoring system (LPMS) is used to detect and locate loose-parts within the reactor coolant system, and to estimate their mass and damage potential. There are several methods to estimate mass, such as the center frequency method based on the Hertz's impact theory, a frequency ratio method and so on, but it is known that these methods cannot provide accurate information on impact response for identifying the impact source. Thanks to increasing computing power, finite element analysis (FEA) method recently become an available option to calculate reliably impact response behavior. In this paper, a finite element analysis model to simulate the propagation behavior of the bending wave, generated by a metal ball impact, is validated by performing a series of impact tests and the corresponding finite element analyses for flat plate and shell structures. Also, a FEA-based metal sphere signal map is developed, and then blind tests are performed to verify the map. This study provides an accurate simulation method for predicting the metal impact behavior and for building a metal sphere signal map, which can be used to estimate the mass of loose-parts on site in nuclear power plants.

Structural determination of triterpenic acids in Prunellae Spica by fast atom bombardment tandem mass spectrometry (하고초의 생리활성 성분 Triterpenic Acids의 FAB-MS를 이용한 구조 규명)

  • Ahn, Young Min;Lee, Kang Ro;Hong, Jongki
    • Analytical Science and Technology
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    • v.21 no.4
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    • pp.245-258
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    • 2008
  • Five triterpenic acids as marker compounds were extracted and isolated from Prunellae Spica by column chromatography and reversed-phase high-performance liquid chromatography (HPLC), and their purity was determinated by HPLC (purity ${\geq}90%$). Molecular weight and elemental compositions of the five marker compounds were determined by fast atom bombardment high-resolution mass spectrometry (FAB-HRMS). The structural determination of the five marker compounds was carried out fast atom bombardment collision-induced dissociation tandem mass spectrometry (FAB-CID-MS/MS). The collision-induced dissociation (CID) of protonated molecules $[M+H]^+$ and deprotonated molecules $[M-H]^-$ produced diverse product ions due mainly to retro Diels-Alder reaction (RDA), dehydration and decarboxylation. Moreover, the CID-MS/MS spectra of the $[M-H]^-$ ions were observed charge-remote fragmentation (CRF) patterns. On the basis of interpretation of CID-MS/MS spectra, structural elucidation of triterpenic acids isolated from Prunellae Spica was clearly performed.

A Combustion Analysis of Surface Fuel Burning Experiment According to Density Variation (밀도에 따른 지표 연료의 연소실험 분석)

  • Kim, Eung-Sik;Kim, Jang-Hwan;Kim, Dong-Hyun;Park, Hyung-Ju;Kim, Jeong-Hun
    • Fire Science and Engineering
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    • v.24 no.1
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    • pp.1-7
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    • 2010
  • This paper shows combustion characteristics of fallen leaves of Quercus variabilis and Pinus densiflora according to variation of mass densities. Combustion temperature, mass loss rate, flame height, duration of combustion and velocity of hot gas are measured and analyzed. For the experiment 10cm heighted baskets with varying diameters of 20, 30, 40 and 50cm are used for the combustion and the pilot ignition is carried on the top of the fuel. In case of Pinus densiflora mass loss rate, duration of flame, flame height and combustion time become larger as the mass density and diameter of basket increase, on the other hand Quercus variabilis shows saturation characteristics in mass loss rate and flame height. Velocity of hot gas is proportional to flame height.

A Development of Method for Surface and Subsurface Runoff Analysis in Urban Composite Watershed (I) - Theory and Development of Module - (대도시 복합유역의 지표 및 지표하 유출해석기법 개발 (I)- 이론 및 모듈의 개발 -)

  • Kwak, Chang-Jae;Lee, Jae-Joon
    • Journal of Korea Water Resources Association
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    • v.45 no.1
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    • pp.39-52
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    • 2012
  • Surface-subsurface interactions are an intrinsic component of the hydrologic response within a watershed. In general, these interactions are considered to be one of the most difficult areas of the discipline, particularly for the modeler who intends simulate the dynamic relations between these two major domains of the hydrological cycle. In essence, one major complexity is the spatial and temporal variations in the dynamically interacting system behavior. The proper simulation of these variations requires the need for providing an appropriate coupling mechanism between the surface and subsurface components of the system. In this study, an approach for modelling surface-subsurface flow and transport in a fully intergrated way is presented. The model uses the 2-dimensional diffusion wave equation for sheet surface water flow, and the Boussinesq equation with the Darcy's law and Dupuit-Forchheimer's assumption for variably saturated subsurface water flow. The coupled system of equations governing surface and subsurface flows is discretized using the finite volume method with central differencing in space and the Crank-Nicolson method in time. The interactions between surface and subsurface flows are considered mass balance based on the continuity conditions of pressure head and exchange flux. The major module consists of four sub-module (SUBFA, SFA, IA and NS module) is developed.

Insulation Performance Evaluation through Insulation Test and Transient Heat Transfer Analysis of Cryogenic Common Bulkhead Propellant Tanks (극저온 공통격벽 추진제 탱크의 단열 시험과 과도 열전달 해석을 통한 단열 성능 평가)

  • Yeji Kim;Gyeong-Han Lee;Sang Min Choi;Sang-Woo Kim;Soo-Yong Lee
    • Journal of Aerospace System Engineering
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    • v.18 no.4
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    • pp.109-116
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    • 2024
  • The validity of the analysis results was confirmed based on the insulation test results, and the vaporization mass generated in the common bulkhead was calculated to evaluate the common bulkhead propellant tank's insulation performance. The analysis results were validated by comparing the transient heat transfer analysis with the insulation test results. A transient heat transfer analysis was subsequently conducted on the common bulkhead propellant tank, considering the internal heat conduction in the propellant tank and natural convection heat transfer due to the outside air. This analysis extracted the heat flux generated in the common bulkhead and quantified the vaporization mass, a key indicator of insulation performance. Consequently, the vaporization mass was calculated at 0.09 kg, below the insulation design standard of 0.12 kg for the common bulkhead propellant tank, confirming it meets the insulation performance standard.

Temporal Variation of Particulate Matters and PAHs in Seoul (서울지역에서 대기 중 분진 및 입자상 PAHs 농도의 시간적 분포 특성)

  • 송은주;이유진;최지예;이지이;김용표
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.341-342
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    • 2003
  • 대기 중의 부유분진 (suspended particulate matters)은 대기오염을 측정하는 일반지표 중의 한 항목으로, 보통 대기의 단위부피당 질량으로 그 오염정도를 판단하고 있다. 대기 중 부유분진은 입경별 농도분포에 따라 통해 오염원의 특성을 파악할 수 있고, 여러 오염원에서 배출되어지는 여러 화학물질들로 구성되어 있기 때문에 인체 위해성 측면에서 많은 관심의 대상이 되어 왔다. 또한 다환방향족탄화수소 (Polycyclic Aromatic Hydrocarbons, PAHs)는 환경에 존재하는 중요한 발암물질이자 돌연변이 유도체이다.(중략)

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원격탐사 자료를 이용한 미계측 유역의 수문정보 추출

  • 채효석;김성준;고덕구
    • Water for future
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    • v.37 no.3
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    • pp.44-49
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    • 2004
  • 지표 수문학(surface hydrology)은 강수에 의한 수자원의 발생, 육지나 하천, 그리고 해양에서 발생하는 증발이나 유출 등에 의한 수자원의 손실과 저수지나 댐에서 수위 상승, 토양수분이나 적설의 증가, 그리고 지하수면의 상승 등에 의한 저류량의 증가 등을 종합적으로 설명하는 과학이다. 수자원의 발생이나 손실, 그리고 저류량의 증가를 설명하기 위해서는 질량보존의 법칙과 같은 단순한 물수지 방정식을 이용한다. 그러나, 지표면에서 발생되는 증발이나 식물에 의해서 발생되는 증산 등과 같은 증발산 작용은 에너지를 수반하기 때문에 수문학적인 수지를 규명하기 위해서는 물수지와 에너지수지를 동시에 이용해야 한다.(중략)

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Analysis of digital monitoring of TOC using a spectrometer in river (하천에서의 분광측정기를 이용한 TOC 디지털 모니터링 분석 연구)

  • Soo Bin Yoon;Chang Hyun Lee;Ho Soo Lee;Ye Lim Park;Young Do Kim
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.195-195
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    • 2023
  • 유기물오염은 호수와 하천에서 가장 흔히 나타나는 오염의 형태이다. 개발도상국에서는 하수처리시설이나 생활용수처리시설에서 유기물이 처리되지 않아 수중의 유기물함량이 증가하여 피해가 나타난다. 물환경보전법에 따라 유기물질을 측정하는 지표에는 BOD, COD, TOC가 있다. 그 중 BOD, COD 측정은 절차가 복잡하고 오래 걸리며, 생물분해가 불가능하거나 유독물질이 존재하는 유기물질인 경우에는 낮은 결과 또는 측정이 불가능하다. 이러한 이유로 환경부에서는 TOC중심관리로 전환되고 있다. 대부분의 수질항목 측정의 경우 현장시료를 채취하여 실험실에서 분석하는 수분석을 이용한다. 하지만 수분석의 경우 인력이 많이 투입되고 분석수가 한정적이며, 정교한 과학 장치를 갖춘 전문 실험실을 필요로 한다. 반면에 TOC는 짧은 시간 내에 측정이 가능하고, 안정적인 산화로 유기물질 총량을 정확하게 측정이 가능하다. 또한 위해성 물질을 발생시키지 않는 친환경적 방법이라 환경오염 감시에 많이 활용된다. 본 연구에서 분광측정기 중 하나인 S-CAN을 통해 하천의 TOC분석을 진행하였다. 대상지는 안동에 위치한 하천실험센터와 금호강 진천천으로 S-CAN측정과 채취한 시료의 수분석 결과를 비교하였다. 이를 통해 TOC측정 및 기기에 대한 정확도분석을 실시하였다. 본 연구를 통해 S-CAN을 활용한 TOC중심의 수질모니터링하여 수질의 특성을 탐구하고, TOC기초연구를 통한 유기물오염도 지표로서 해석할 수 있다. 수분석 자료를 활용한 정확도 비교를 통해 하천 TOC센서 측정 적용에 대한 기초자료 제공과 측정기기의 현장적용성을 판단 할 수 있다. TOC측정 및 분석을 통해 유기물질량을 실시간으로 정확하게 측정하게 되면 수질관리 효율성이 높아지고, 하천에 유입되는 유기물질량과 농도를 정확하게 파악하여 실효성 있는 정책 수립 및 효율적인 수질관리를 할 수 있다.

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