• Title/Summary/Keyword: 엔트로피이론

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Adsorption on Solid Surface from Binary Liquid Solution (이성분 용액에서의 고체 표면에 대한 흡착)

  • Seihun Chang;Hyungsuk Pak;Sangyoun Park
    • Journal of the Korean Chemical Society
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    • v.17 no.2
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    • pp.80-84
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    • 1973
  • In treating solid-liquid interfaces, it is assumed that the adsorbed layer consists of monolayer and the molecules of the adsorbed layer behave as two dimensional liquid and oscillate harmonically in the vertical direction to the adsorbent. Applying the transition state theory of significant liquid structure to the adsorbed molecules, the adsorption isotherm, entropy and heat of adsorption for cyclohexane-benzene solutions adsorbed on silica-gel G are calculated. The calculated values are in good agreements with those of the observed ones.

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Significant Structure of Liquid Ethylene Chloride (액체 염화에틸렌의 구조에 관하여)

  • Ahn Woon Sun;Chang Seihun
    • Journal of the Korean Chemical Society
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    • v.8 no.3
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    • pp.125-127
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    • 1964
  • Upon melting, a part of ethylene-chloride molecules in trans-form in the solid state changes into gauche-form. The partition function for the material was developed according to the significant structure theory of liquid proposed by H. Eyring and his co-workers, and the parameters $E_s$, ${\theta}$, $V_s$, and a, therein, are determined by the manner developed by Chang, et al. The molar volume, vapor pressure, vaporization entropy, critical point properties and surface tension of the liquid were calculated. The results are in good agreement with experimental values.

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The Significant Structures of Liquid Fluorine (액체 풀루오르의 구조에 관하여)

  • Jhon, Mu-Shik;Chang, Sei-Hun
    • Journal of the Korean Chemical Society
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    • v.8 no.2
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    • pp.65-67
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    • 1964
  • The partition function of liquid fluorine were developed by applying the theory of significant structures in liquids. The molar volume, vapor pressure, entropy of vaporization and surface tension of the liquid were calculated over a wide temperature range. The critical properties for the liquid were also calculated. The results show good agreement with experimental observations.

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Aerodynamic Analysis of Converging-Diverging Nozzle by changing in shape (Converging-Diverging Nozzle의 형상 변화에 따른 공력 해석)

  • Park, Cha-Ryeom;Park, Gyeong-Su
    • Proceeding of EDISON Challenge
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    • 2013.04a
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    • pp.327-330
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    • 2013
  • Converging-diverging 노즐은 시스템 내부 유동에 적용되는 속도면적 법칙을 통해, 아음속 유동을 초음속으로 만드는 장치이며, 항공기 엔진 등에서 추력을 얻기 위해 쓰인다. 이상기체, 등 엔트로피를 가정한 동일 입구 조건에서, 출구로 빠져나오는 유동의 속도는 오직 면적 비에만 관계한다. 그러나 실제현상에서는, 출구에서의 유속이 유동의 압축성 효과 및 벽면에서의 전단력 등으로 인해 노즐 형상마다 상이한 결과를 낳는다. 본 연구에서는 EDISON Simulation을 활용하여 다양한 노즐 형상에 따른 출구에서의 Mach number를 구하고, 각각의 결과로부터 경향성을 찾는다. 또, 계산 결과를 이론식을 통해 도출되는 결과와 비교한다.

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A Study on Measuring Sequential Dependencies in Denial of Service Attacks (DoS 공격의 순차의존성 측정에 관한 연구)

  • 홍동호;유황빈
    • Proceedings of the Korean Information Science Society Conference
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    • 2003.04a
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    • pp.395-397
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    • 2003
  • 서비스거부공격(DoS)은 공격의 목표가 되는 호스트에 악의적인 패킷을 단지 하나만 보냄으로써 공격이 이루어 질 수 없다. 그렇기 때문에 침입탐지시스템에서는 패킷에 대한 일련의 순차성을 알아냄으로써 연속적인 패킷을 보내는 DoS 공격으로서의 침입을 탐지해 내는 것이 가능하다. 본 연구에서는 네트워크 패킷에 대한 송신지의 주소와 서비스, 목적지의 주소와 서비스를 이용하여 이벤트를 정의 하였으며. 이렇게 정의된 이벤트를 이용하여 정상적인 상황에서의 이벤트에 대한 순차의존성과 DoS 공격 상황에서의 이벤트에 대한 순차의존성을 알아내었다. 이벤트에 대한 순차의존성을 측정하기 위해서 정상 이벤트가 발생하는 확률을 이용하였으며. 더 나아가서는 정보이론 분야에서의 조건부 엔트로피의 사용도 제안하였다.

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영광1호기 원자로 냉각재 평균 온도 조정에 따른 터빈 사이클 열성능 변화 분석

  • Choi, Kwang-Hui;Hong, Seung-Yeol;Park, Bu-Seong;Kim, Yu
    • Proceedings of the Korean Nuclear Society Conference
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    • 1996.05a
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    • pp.532-537
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    • 1996
  • 영광 1호기의 일차계통인 원자로 냉각재 평균온도( $T_{avg}$)를 적정값으로 미세조정하여 운전할 때, 2차계통 주요 운전변수인 주증기압력이 상승하고 터빈출력이 상승함을 발견하여 이에 대한 터빈사이클 열성능 변화를 발전소 전체 열평형 계산에 의해 정량적으로 파악하고, 그 원인을 열역학 2법칙에서의 엔트로피개념을 이용한 유용에너지의 최대값인 엑서지이론을 적용하여 분석하고자하였다. 분석 결과 열평형 계산에서는 전체 열량의 대부분인 63.2%가 복수기에서 손실되는 것으로 나타나는 반면, 열역학 제2법칙의 엑서지를 이용한 분석에서는 비가역손실이 주로 터빈(전체 엑서지의 12.7%)에서 일어나고 그 다음이 복수기(5.7%), 급수가열기(2.1%) 그리고 1,2단 재열기 (1.0%)의 순으로 전체 사이클에서 일어나며, 주증기 압력이 상승할 때 터빈 출력이 상승하는 주원인은 주증기의 유용성(엑서지)이 크게 증가하는 것에 비해 터빈사이클에서의 비가역손실은 적게 증가하기 때문으로 나타났다.다.

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Evaluations of the Equations of State and Thermodynamic Quantities of Fluid Metal at High Temperatures and Densities

  • Shin, Hyun-Joon;Hong, Jong-Ha;Oh, Byung-Wan
    • Nuclear Engineering and Technology
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    • v.10 no.3
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    • pp.127-136
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    • 1978
  • We have applied the temperature dependent Thomas-Fermi theory to evaluate the equations of state, chemical potentials, entropies, % ionizations, total energies and kinetic energies of an atom, and seveal thermodynamic quantifies of one of metallic substance, Na, for a density range of 0.1$\rho$$_{0}$ ~ 10$\rho$$_{0}$, where $\rho$$_{0}$ is the normal density of Na at its melting point, and for a temperature range of 60.88Ryd. ~0.0216 Ryd., where the system is expected to be in a gaseous or liquid state. The main interest of present work lies in physical quantities at high temperatures and high densities, however, we have included those quantities of Na at sufficiently low temperatures and low densities to show that the approximation is not so crude as one might expect. Particularly, at high temperatures, the calculated equations of state, kinetic energies of an atom, chemical potentials and entropies are compared with those, of an ideal Fermi gas. The results show that, at high temperatures, the agreement seems good for chemical Potentials. However, the differences in, entropy, kinetic energy of an atom, and equation of state are not negligible even at such high temperature as $textsc{k}$T=60.88Ryd.

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Optimization of Stream Gauge Network Using the Entropy Theory (엔트로피 이론을 이용한 수위관측망의 최적화)

  • Yoo, Chul-Sang;Kim, In-Bae
    • Journal of Korea Water Resources Association
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    • v.36 no.2
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    • pp.161-172
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    • 2003
  • This study has evaluated the stream gauge network with the main emphasis on if the current stream gauge network can catch the runoff characteristics of the basin. As the evaluation of the stream gauge network in this study does not consider a special purpose of a stream gauge, nor the effect from a hydraulic structure, it becomes an optimization of current stream gauge network under the condition that each stream gauge measures the natural runoff volume. This study has been applied to the Nam-Han River Basin for the optimization of total 31 stream gauge stations using the entropy concept. Summarizing the results are as follows. (1) The unit hydrograph representing the basin response from rainfall can be transferred into a probability density function for the application of the entropy concept to optimize the stream gauge network. (2) Accurate derivation of unit hydrographs representing stream gauge sites was found the most important part for the evaluation of stream gauge network, which was assured in this research by comparing the measured and derived unit hydrographs. (3) The Nam-Han River Basin was found to need at least 28 stream gauge stations, which was derived by considering both the shape of the unit hydrograph and the runoff volume. If considering only the shape of the unit hydrograph, the number of stream gauges required decreases to 23.

Coupling Detection in Sea Ice of Bering Sea and Chukchi Sea: Information Entropy Approach (베링해 해빙 상태와 척치해 해빙 변화 간의 연관성 분석: 정보 엔트로피 접근)

  • Oh, Mingi;Kim, Hyun-cheol
    • Korean Journal of Remote Sensing
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    • v.34 no.6_2
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    • pp.1229-1238
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    • 2018
  • We examined if a state of sea-ice in Bering Sea acts as a prelude of variation in that of Chukchi Sea by using satellites-based Arctic sea-ice concentration time series. Datasets consist of monthly values of sea-ice concentration during 36 years (1982-2017). Time series analysis armed with Transfer entropy is performed to describe how sea-ice data in Chukchi Sea is affected by that in Bering Sea, and to explain the relationship. The transfer entropy is a measure which identifies a nonlinear coupling between two random variables or signals and estimates causality using modification of time delay. We verified this measure checked a nonlinear coupling for simulated signals. With sea-ice concentration datasets, we found that sea-ice in Bering Sea is influenced by that in Chukchi Sea 3, 5, 6 months ago through the transfer entropy measure suitable for nonlinear system. Particularly, when a sea-ice concentration of Bering Sea has a local minimum, sea ice concentration around Chukchi Sea tends to decline 5 months later with about 70% chance. This finding is considered to be a process that inflow of Pacific water through Bering strait reduces sea-ice in Chukchi Sea after lowering the concentration of sea-ice in Bering Sea. This approach based on information theory will continue to investigate a timing and time scale of interesting patterns, and thus, a coupling inherent in sea-ice concentration of two remote areas will be verified by studying ocean-atmosphere patterns or events in the period.

CRARQ: A Cooperative Routing using ARQ-based Transmission in Mobile Ad-hoc Wireless Sensor Networks (CRARQ: 모바일 Ad-hoc 무선 센서 네트워크를 위한 ARQ 전송기반 협력도움 라우팅 프로토콜)

  • Duy, Tran-Trung;An, Beong-Ku;Kong, Hyung-Yun
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.46 no.2
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    • pp.36-43
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    • 2009
  • In this paper, we propose a Cooperative Routing using ARQ-based Transmission (CRARQ) in Mobile Ad-hoc Wireless Sensor Networks (MAWSN). The goals of the CRARQ are to improve both the efficiency of transmission and the reliability of transmission together. The main features and contributions of the proposed CRARQ for supporting these goals are as follows. First, CRARQ uses a reactive concept to construct a route from a source to a destination. Second, CRARQ chooses the most stable relay at each hop along the route by mobility-based strategy. Third, cooperative transmission using the ARQ technique which can improve reliability is used at each hop to send data packets from source to destination. Finally, we present a theoretical analysis model for the proposed CRARQ. The performance evaluation of our protocol is implemented via simulation using Optimized Network Engineering Tool (OPNET) and analysis. The results of both simulation and analysis show that CRARQ achieves the improved packet delivery ratio (PDR) and outage probability.