• Title/Summary/Keyword: Neuman approach

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The Modified Eulerian-Lagrangian Formulation for Cauchy Boundary Condition Under Dispersion Dominated Flow Regimes: A Novel Numerical Approach and its Implication on Radioactive Nuclide Migration or Solute Transport in the Subsurface Environment

  • Sruthi, K.V.;Suk, Heejun;Lakshmanan, Elango;Chae, Byung-Gon;Kim, Hyun-su
    • Journal of Soil and Groundwater Environment
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    • v.20 no.2
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    • pp.10-21
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    • 2015
  • The present study introduces a novel numerical approach for solving dispersion dominated problems with Cauchy boundary condition in an Eulerian-Lagrangian scheme. The study reveals the incapability of traditional Neuman approach to address the dispersion dominated problems with Cauchy boundary condition, even though it can produce reliable solution in the advection dominated regime. Also, the proposed numerical approach is applied to a real field problem of radioactive contaminant migration from radioactive waste repository which is a major current waste management issue. The performance of the proposed numerical approach is evaluated by comparing the results with numerical solutions of traditional FDM (Finite Difference Method), Neuman approach, and the analytical solution. The results show that the proposed numerical approach yields better and reliable solution for dispersion dominated regime, specifically for Peclet Numbers of less than 0.1. The proposed numerical approach is validated by applying to a real field problem of radioactive contaminant migration from radioactive waste repository of varying Peclet Number from 0.003 to 34.5. The numerical results of Neuman approach overestimates the concentration value with an order of 100 than the proposed approach during the assessment of radioactive contaminant transport from nuclear waste repository. The overestimation of concentration value could be due to the assumption that dispersion is negligible. Also our application problem confirms the existence of real field situation with advection dominated condition and dispersion dominated condition simultaneously as well as the significance or advantage of the proposed approach in the real field problem.

The Study for a Model Development of School Health Diagnosis (학교건강진단모형 개발을 위한 연구)

  • Im Mee Young
    • Journal of Korean Public Health Nursing
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    • v.11 no.2
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    • pp.131-140
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    • 1997
  • School health aims to guide and manage growing students in order to grow healthily through the formation of healthy life habits, the self-control health management guide and the making of pleasant school health environments. The purpose of this study is to clarify the concepts, to draw common features, and develop a new approach for school health diagnosis through literature review. School health diagnosis is defined as the identification of actual and potential health problems in school health problems in population. It is a label that both describes a situation and implies an ethiology. Although it is widely acknowledeged that school health diagnosis is an essential precursor to school health nursing intervention, it still has ambiguous definition, unmeasurable goal. and a tenuous structure. In addition, the eclipse of school health diagnosis theory in the literature is so complete that some texts even exclude diagnosis as a stage of the nursing theory has not developed sufficiently to guide school nurses in the application of the nursing diagnosis with in the school. The Neuman's systems model provided the conceptual framework for this study and offered school health nursing the sort of clear structure that will assist them to clarify their work to nursing colleges and also to the client group with whom they will work. The Neuman model is fully congruent with today's health care philosophy by taking a wellness-orientaed approach, involving clients III their health care with prevention as intervention.

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A Preliminary Architecture for a Data Flow Machine Model with Node Labelling (Node Label에 의한 기본적 Data Flow Machine 모델)

  • 김원섭;박희순
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.34 no.8
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    • pp.301-307
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    • 1985
  • The first four generations of computers are all based on a single basic design: the Von Neuman Processor, which is sequential and does one operation at a time. Efforts to develop concurrent or parallel computers have been carried on for many years. Data flow approach is significant in these efforts to make high speed parallel machines and expected a great deal of parallelism. In this paper we propose a preliminary data Flow Machine Model operating asynchronously on the base of Node Labelling. We introduce a concept of Node Labeling for this purpose which is relevant to the Data dependency and Parallelism. And we explain how the Node Tokens are fired in the proposed system.

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