• Title/Summary/Keyword: 엑서지 손실

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Suggestions for Energy Utilization Improvement of Fractionation and Hydrodealkylation Units Based on Exergy Analysis (엑서지 해석에 근거한 분별증류 및 수소첨가알킬제거 공정의 에너지 이용 개선 방안)

  • Chung, Yonsoo
    • Clean Technology
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    • v.12 no.2
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    • pp.95-100
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    • 2006
  • Fractionation and hydrodealkylation (HDA) units, subparts of BTX plant, were thermodynamically analyzed using the notion of exergy. Exergy values were calculated as the sum of physical and chemical exergies due to the existence of chemical reactions. The analysis was based on the simulation results with the aid of real operating data. Driving and material exergy losses were separately defined and quantified. Locations and the reason of major exergy losses were identified and improvement strategies were suggested. It was noted that the exergy analysis could provide a sound base for adopting the concept of industrial ecology and developing loss prevention schemes.

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A Study of Loss Prevention for Methanol Synthesis Process Based on Exergy Analysis (엑서지 해석에 기초한 메탄올합성공정의 손실예방책 연구)

  • Cho, Hyo-Eun;Chung, Yonsoo
    • Clean Technology
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    • v.6 no.2
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    • pp.129-137
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    • 2000
  • A methanol synthesis process via reverse-water-gas-shift and methanol formation reactions has been analyzed using the notion of exergy. The analysis has been based on the simulation results with the aid of real operating data. Driving and material exergy losses have been defined and quantified, respectively. Locations and the reason of major exergy losses have been pinpointed and improvement strategies have been suggested. It had been noted that the exergy analysis can provide a sound scientific base for adopting the concept of industrial ecology and developing loss prevention schemes.

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Application of Exergy to the Analysis and Optimization of Heat Transfer Processes (열전달 과정의 해석과 최적화를 위한 엑서지의 응용)

  • Auracher H.
    • The Magazine of the Society of Air-Conditioning and Refrigerating Engineers of Korea
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    • v.16 no.6
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    • pp.542-549
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    • 1987
  • 중요한 기본을 요약하고 엑서지를 에너지 변환에서 가장 중요한 기본 과정에 응용하는 열전달 문제를 제시한다. 열전달로 인한 엑서지 손실과 고온체, 저온체의 단열, 열교환기의 설계와 관련된 결과를 논의한다. 또한 비아제오트로픽(non-azeotropic) 혼합물을 응용한 열펌프 열교환기에서의 엑서지 절약에 대한 연구를 설명한다. 열전달과 압력강하로 인한 손실의 합인 총엑서지 손실이 최소로 되는 최적의 Reymolds 수가 존재함을 보여준다.

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Exergy Analysis of Regenerative Wet-Compression Gas-Turbine Cycles (습식 압축을 채용한 재생 가스터빈 사이클의 엑서지 해석)

  • Kim, Kyoung-Hoon;Kim, Se-Woong;Ko, Hyung-Jong
    • Journal of Energy Engineering
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    • v.18 no.2
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    • pp.93-100
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    • 2009
  • An exergy analysis is carried out for the regenerative wet-compression Brayton cycle which has a potential of enhanced thermal efficiency owing to the reduced compression power consumption and the recuperation of exhaust energy. Using the analysis model, the effects of pressure ratio and water injection ratio are investigated on the exergy efficiency of system, exergy destruction ratio for each component of the system, and exergy loss ratio due to exhaust gas. The results of computation for the typical cases show that the regenerative wet-compression gas turbine cycle can make a notable enhancement of exergy efficiency. The injection of water results in a decrease of exergy loss of exhaust gas and an increase of net power output.

A Performance Analysis of a Spark Ignition Engine Using Gasoline, Methanol and M90 by the Thermodynamic Second Law (가솔린, 메탄올, M90 연료를 사용한 전기점화기관에서의 열역학 제 2법칙적 성능해석)

  • Kim, S.S.
    • Journal of Power System Engineering
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    • v.13 no.6
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    • pp.22-28
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    • 2009
  • 열역학 제 2법칙의 관점의 열역학적 가용에너지인 엑서지 해석법을 적용하여 가솔린, 메탄올, M90 연료를 사용한 전기점화 기관의 성능해석을 수행하였다. 열역학적 사이클 해석을 위하여 사이클을 구성하는 각 과정은 열역학적 모델로 단순화하였고, 크랭크 각도에 따른 실린더의 압력과 작동유체를 구성하는 연료, 공기 및 연소생성물의 열역학적 물성 값들을 이용하여 각 과정에서의 엑서지와 손실 일을 계산하였다. 실험데이터는 단기통 전기점화기관을 가솔린, 메탄올과 M90(메탄을 90%+부탄 10%의 혼합연료)을 연료로 WOT(Wide Open Throttle), MBT(Minimum advanced spark timing for Best Torque), 2500rpm 조건으로 운전하여 측정하였다. 계산에 이용한 자료는 실험으로 측정한 크랭크 각도에 따른 연소실의 압력, 흡입공기와 연료유량, 흡입공기 온도, 냉각수 온도와 배출가스 온도 등이다. 이를 이용하여 각 과정에서의 엑서지와 손실 일을 계산하였으며 각 과정에서의 손실 일은 연소과정에서 가장 크며 팽창과정, 배출과정, 압축과정 및 흡입과정 순으로 크게 나타났다.

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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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Exergy analysis on the power recovery of LNG supply system (냉열 에너지의 동력 회수에 대한 엑서지 해석 방법에 관한 연구)

  • Park, Il-Hwan;Kim, Choon-Seong
    • The Journal of Korean Institute for Practical Engineering Education
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    • v.3 no.1
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    • pp.9-14
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    • 2011
  • The expansion work that is wasted through the irreversible expansion through the PC valve of decompression process of the natural gas governor station can be recovered by replacing the process by an isentropic expansion. The energy and exergy analyses for the two decompression process models of power producing and current decompression process model are presented. Analysis results showed that the exergy by gas supply is 56.29%, the exergy by producing power is 32.12 % in case of preheating system and 22.52% in case of non-preheating system. The dead exergy at the PCV is generated much more network. As these results, the usefulness of exergy analysis is verified.

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Energy Conservation and Exergy Comparison of a Fully Thermally Coupled Distillation Column (열복합 증류탑의 에너지 절감과 엑서지 비교)

  • Kim, Byoung Chul;Kim, Young Han
    • Korean Chemical Engineering Research
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    • v.50 no.1
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    • pp.55-60
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    • 2012
  • The energy conservation and exergy loss of a fully thermally coupled distillation commercialized as the divided wall column are compared with those of a conventional two-column system for ternary separation. The used example for the comparison is the benzene-toluene-m-xylene separation process widely used in a petrochemical plant. The design procedure of the fully thermally coupled distillation column is explained, and the energy requirement is compared using the HYSYS. When the same numbers of trays are utilized, the fully thermally coupled distillation column uses 28.2% less energy and 10.4% more exergy loss. The increase of the exergy loss is due to the additional mixing from the bidirectional inter-linking and the temperature elevation in the reboiler from the increased pressure at the bottom of the main column.

A Study on the Performance Improvement for The Coal Filing Power Station (엑서지분석을 통한 대용량 석탄화력 발전소의 성능개선 연구)

  • 서주오
    • Journal of Energy Engineering
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    • v.12 no.3
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    • pp.165-176
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    • 2003
  • In this study, the exergy analysis is conducted on the well known performance of already developed system and then compared with the efficiency of each equipment to propose optimum operation of the system. The system used in this study is 500 MW coal firing power plant. The efficiency of the boiler is 67% and the condenser is 99% by exergy analysis. The exergy consumption of the boiler was 32.95% at 100% load. The exergy consumption of the high pressure turbine and the low pressure turbine is 8.31% and 8.12%, respectively. Together with the concrete study on the object of performance revision of the low efficient development system proved in this study, if detailed exergy analysis on the operation condition of the equipments of the development system presently being operated is continued, then it is expected to help minimize the exergy consumption of relatively low efficient parts that are worn-out or miss-installed.

The Analysis on Exergy Loss and its Reduction Methods in Steam Desuperheating and Depressurizing Process (증기의 감온·감압과정에서의 엑서지 손실 및 저감방안 분석)

  • Yi, Joong Yong;Lee, Chan
    • The KSFM Journal of Fluid Machinery
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    • v.18 no.6
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    • pp.19-26
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    • 2015
  • The present paper presented and applied an exergy analysis method to evaluate the magnitudes and the locations of exergy losses in the conventional desuperheating and depressurizing process of high pressure and temperature steam delivery system. In addition, for the reduction of exergy losses occurred in conventional process, the present study proposed new alternative processes in which the pressure reducing valve and the desuperheater of conventional process are substituted with steam turbine and heat exchanger, and their effects on exergy loss reduction and exergy efficiency improvement are theoretically investigated and compared. From the present analysis results, the total exergy loss caused in conventional desuperheating and depressurizing process accounted for 66.5% of exergy input and 85% of the total exergy loss was due to the mixing between steam and cold water(e.g desuperheating). However, it was shown from the present analysis results that the present alternative processes can additionally reduce exergy loss by maximum 92.7% of the total exergy loss in conventional process, and can also produce additional and useful energy, the electricity of 220.6 kWh and the heat of 54.3 MJ/hr.