• 제목/요약/키워드: Diesel Generator

검색결과 315건 처리시간 0.022초

신뢰도 분석에 근거한 SIS 평가 방법론 개발 (Development of the SIS Evaluation Method Based on Reliability Analysis)

  • 김인원;진상화;송광호;여영구
    • 한국가스학회지
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    • 제6권1호
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    • pp.66-73
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    • 2002
  • 본 연구에서는 결함수목 분석법을 이용하여 Safety Integrity Level(SIL)을 평가하고 시스템의 목표한 SIL에 도달하지 못할 경우에 신뢰도 분석과 시스템 retrofit을 통해서 목표한 SIL을 만족시키게 하는 방법을 개발하였다. 신뢰도 분석에 근거한 SIL 평가 방법을 검증하기 위해서 415V Diesel BUS에 대해서 위험성 분석을 수행하였다. 기존의 415V Diesel BUS에 대한 이용가능 상태는 $99.40\%$로 SIL 2등급에 해당된다. 개발된 평가방법을 이용하여 diesel generator와 isolator switch의 교체후 시스템의 이용가능 상태는 $99.94\%$ SIL 3등급으로 상승되었다. 본 연구에서 제시한 신뢰도에 근거한 SIL 평가 방법을 적용하면 사고 예방과 손실감소로 일어나는 유지보수 비용의 절감 등을 가져오면 물론 시스템의 신뢰도를 극대화 할 수 있다.

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An application of LAPO: Optimal design of a stand alone hybrid system consisting of WTG/PV/diesel generator/battery

  • Shiva, Navid;Rahiminejad, Abolfazl;Nematollahi, Amin Foroughi;Vahidi, Behrooz
    • Advances in Energy Research
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    • 제7권1호
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    • pp.67-84
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    • 2020
  • Given the recent surge of interest towards utilization of renewable distributed energy resources (DER), in particular in remote areas, this paper aims at designing an optimal hybrid system in order to supply loads of a village located in Esfarayen, North Khorasan, Iran. This paper illustrates the optimal design procedure of a standalone hybrid system which consists of Wind Turbine Generator (WTG), Photo Voltaic (PV), Diesel-generator, and Battery denoting as the Energy Storage System (ESS). The WTGs and PVs are considered as the main producers since the site's ambient conditions are suitable for such producers. Moreover, batteries are employed to smooth out the variable outputs of these renewable resources. To this end, whenever the available power generation is higher than the demanded amount, the excess energy will be stored in ESS to be injected into the system in the time of insufficient power generation. Since the standalone system is assumed to have no connection to the upstream network, it must be able to supply the loads without any load curtailment. In this regard, a Diesel-Generator can also be integrated to achieve zero loss of load. The optimal hybrid system design problem is a discrete optimization problem that is solved, here, by means of a recently-introduced meta-heuristic optimization algorithm known as Lightning Attachment Procedure Optimization (LAPO). The results are compared to those of some other methods and discussed in detail. The results also show that the total cost of the designed stand-alone system in 25 years is around 92M€ which is much less than the grid-connected system with the total cost of 205M€. In summary, the obtained simulation results demonstrate the effectiveness of the utilized optimization algorithm in finding the best results, and the designed hybrid system in serving the remote loads.

독립형 마이크로그리드 내 분산전원별 최적용량 결정 방법 (Determining the Optimal Capacities of Distributed Generators Installed in A Stand-alone Microgrid Power System)

  • 고은영;백자현;강태혁;한동화;조수환
    • 전기학회논문지
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    • 제65권2호
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    • pp.239-246
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    • 2016
  • In recent years, the power demand has been increasing steadily and the occurrence of maximum power demand has been moving from the summer season to the winter season in Korea. And since the control of electric power supply and demand is more important under those situations, a micro-grid system began to emerge as a keyword for the sTable operation of electric power system. A micro-gird power system is composed of various kinds of distributed generators(DG) such as small diesel generator, wind turbine, photo-voltaic generator and energy storage system(ESS). This paper introduces a method to determine the optimal capacities of the distributed generators which are installed in a stand-alone type of microgrid power system based on the fundamental proportion of diesel generator. At first, the fundamental proportion of diesel generator will be determined by changing from 0 to 50 percent. And then we will optimize the capacities of renewable energy resources and ESS according to load patterns. Lastly, after recalculating the capacity of ESS with consideration for SOC constraints, the optimal capacities of distributed generators will be decided.

선박용 디젤발전기에서 바이오연료의 연소 및 배기배출물 특성에 관한 연구 (저부하 영역 중심으로) (A study on characteristics of combustion and exhaust emissions on bio-diesel fuel in marine diesel generator engine (Low load centering))

  • 조상곤
    • Journal of Advanced Marine Engineering and Technology
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    • 제39권7호
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    • pp.716-721
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    • 2015
  • 환경오염에 대한 심각성이 대두되면서 대기오염에 대한 규제가 강화되고 있다. 육상에서 사용하는 자동차 및 산업용 발전설비 뿐만아니라 선박용 디젤기관에서도 규제를 시행하고 있어, 대체연료로서 바이오연료에 대한 많은 연구가 진행되고 있다. 따라서 실습선의 발전기관에 직접 바이오연료를 적용하여 기초적인 연구를 하고자 한다. 다만 실습선 안전을 위해 바이오연료의 비율을 많이 하지 못하지만 그래도 실험실에서 하는 작은 기관보다는 대형이면서, 큰 출력기관의 상태를 알아보는 중요한 기초자료가 될 것이다. 선박디젤발전기에서 바이오연료가 연소특성 및 배기배출물특성에 어떤 영향을 미치는지 연구하였다. 그 주요한 결과를 요약하면 다음과 같다. 바이오연료는 물리적 화학적 성분이 디젤경유와 비슷하여 실용 선박기관에 사용이 가능함을 알 수 있었다. 그리고 연료소비율과 NOx는 약간 증가하였으나, 일산화탄소와 매연은 감소하는 경향이 확인되었다. 또한 연소압력은 디젤경유와 바이오연료의 사용에 따라 크게 변화하지 않음을 알 수 있었다.

초음파 에너지 조사에 따른 바이오 디젤 특성 (Characteristics of Bio-diesel according to Irradiation for Ultrasonic Energy)

  • 박충열;최두석
    • 한국자동차공학회논문집
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    • 제23권2호
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    • pp.214-220
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    • 2015
  • Since resources of fossil fuels are limited, development of alternative energies is emphasized and research on new-regenerative energy is actively in progress worldwide. In present research, physical and chemical characteristics of mixed fuel are analyzed in detail for the different mixture rate of conventional and bio-diesel and ultrasonic irradiation time. Experimental setup consists of ultrasonic generator, vibrator, horn, and reflector. Various physical and chemical characteristics of fuel are investigated for volumetric mixture rate of bio-diesel from 0 to 100%. As results, viscosity and surface tension is increased as mixture rate of bio-diesel is increased. Also, molecular splits and reunions are increased and decreased repeatedly after some period of time as ultrasonic energy irradiation time is increased. As conclusion of experiments, Olefin rate, Branch index, and Aromatic rate are influenced by ultrasonic irradiation time.

퍼지 PI제어기를 이용한 중속 디젤 기관의 속도제어에 관한 연구 (A Study on the Speed Control of Medium Diesel Engine using a Fuzzy-PI Controller)

  • 김영일;천행춘;서인호;유영호
    • Journal of Advanced Marine Engineering and Technology
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    • 제24권4호
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    • pp.435-440
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    • 2000
  • The speed control system of diesel engine is considerably nonlinear. Therefore, a countermeasure such as gain scheduling used to be incorporated to compensate this nonlinearity. On the other hand, it is said that fuzzy control is very robust against nonlinearity. But it is difficult to get a satisfactory response with only fuzzy control in real system. In this paper authors design a fuzzy-PI controller for the speed control of Medium diesel engine and carry out experiments with dedicate system implemented by Intel 80916KC to real diesel engine, Deawoo MAN 6Cyl., 1800rpm driving 3$\psi$220V, 150KW generator. We confirm the effectiveness of proposed control system.

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부하를 분담하고 있는 디젤발전기의 무한대 모선과의 병렬운전 시스템 (Parallel Running System of the Loaded Diesel Generator to Infinite Bus)

  • 천행춘
    • Journal of Advanced Marine Engineering and Technology
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    • 제28권6호
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    • pp.1017-1025
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    • 2004
  • Generally generator is connected to the bus with no load. After the connection to the bus. the frequency of generator system with no load has to be increased for preventing the reverse power. But in a few case of parallel running with infinite bus system, we have to synchronize the loaded generator to the infinite bus. The frequency of generator system with load has to be lowered for prevention of load shift to the bus system. The blackout of infinite bus decreases the parallel running generator's frequency because of load increasing. In this paper we propose a method that the generator with load maintains the frequency constantly after the blackout of infinite bus. With the constant speed control and load control method of parallel running system to the infinite bus we apply the method to the industrial generating system.

디젤기관차 연료사용량 측정장치 개발 (Development of ECO Driving Meter System for Diesel Locomotives)

  • 박태기;이을재
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.2357-2364
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    • 2011
  • Diesel locomotive operates the generator with the power from the diesel engine, and it consists of the typical serial-hybrid system which operates the train wheels by converting its generated electric energy into the torque of DC (or AC) motor. However, the technology of locomotives is only focused on trains' controlling power generation mechanism. Hence, it is a current issue that the efficiency of its engine and its generator is relatively lower than that of auto vehicles'. Particularly, since there are no proper equipment to measure the amount of fuel which is essentially necessary for the efficient use of fuel, it is not easy to confirm the instant amount of fuel use as well as the exact average fuel consumption per an hour. Due to those difficulties, it is urgent to develop the device that measures the fuel consumption. Plus, this use of the developed measuring device allows the various and useful analysis relating to the fuel consumption, and this could lead to establishing the efficient driving pattern regarding to fuel saving. This device consists of two flux (fuel level) measuring censors, MCU for calculating the measured values, the information recorder for saving measured values, and the display device for indicating the fuel amount consumed during driving.

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8kW급 디젤발전기 소음기 내부 유동에 관한 수치해석 (Numerical analysis of the Internal Flow of 8kW Grade Diesel Generator Muffler)

  • 이중섭;이태의;이치우
    • 한국기계가공학회지
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    • 제17권3호
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    • pp.45-50
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    • 2018
  • From the flow analysis of the silencer for 8 kW diesel generators, the following results were obtained. For silencer-1, it was confirmed that the holes formed at the inlet-side portion connect into the exhaust pipe in the chamber. The exhaust pipe installed inside silencer-1 was integrally connected through the holes in the chamber. As a result, it was confirmed that the pressure inside the chamber was kept stable. It was confirmed that the pressure loss generated inside an absorptive type silencer such as silencer-2 was small. The differential pressure of the inlet-outlet of silencer-1 and silencer-2 was confirmed to be 494 Pa at 15 m/s, 859 Pa at 20 m/s, 1326 Pa at 25 m/s, and 1911 Pa at 30 m/s.