• Title/Summary/Keyword: 전기설비

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Feasibility of a Solar Thermal Organic Rankine Cycle Power Plant for an Apartment Complex with Aspen Plus® (ASPEN PLUS®를 이용한 태양열 유기랭킨사이클 열병합 발전시스템의 공동주택 적합도 분석)

  • Im, Seokyeon;Kim, Hyung-Geun;Yu, Sangseok
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.39 no.4
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    • pp.317-324
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    • 2015
  • In this study, a solar thermal system is designed to provide hot water and electricity for improvement of solar thermal energy availability in an apartment complex. The electricity is generated with Organic Rankine Cycle (ORC) by the solar thermal energy. R134a, R141b and R245fa are selected for operating fluid of the solar thermal ORC system. ORC with R245fa shows the best performance based on the variation of pressure. The irreversibility of component showed that the technology advance of the evaporator ensures a performance improvement. The sensitivity study results indicate that the turbine performance is most effective way to improve the performance of ORC system. An economic analysis showed that approximately 50% more income could be achieved by a solar thermal ORC system with a hot water supply.

A Study on Automatic Switching System for Fault Locator (고장점 표정반 자동절체 시스템에 대한 연구)

  • Park, Yong-Bum;Lho, Young-Hwan
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.12
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    • pp.8927-8932
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    • 2015
  • A directional feeding method at the railway transformer is applied for supplying the power to the electric railway substations, and the pre-installed facilities with common feeder are utilized in preparation for the failure of feeding system and in finding a fault location in case that the catenary failure occurs. However, it is some difficulty in finding the fault location since there is an interface problem with the facilities when the supplying power system operates. In this paper, Auto Fault Locator Transfer Drive System (ALTDS) is designed to search for the fault location efficiently, and the measuring data are obtained and compared with the KORAIL standards. Further, the ground connection test is accomplished 24 times as the verification method, and it is shown that the methodology provides better performance than the existing traditional one.

Fire Detection of a Building Using Wireless Multi-point Temperature Sensors (무선 다점 온도센서에 의한 빌딩의 화재 탐지)

  • Kim, Chi-Yeop;Kwon, Il-Bum
    • Journal of the Korean Society for Nondestructive Testing
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    • v.24 no.5
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    • pp.494-498
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    • 2004
  • Fire accidents often happen in large buildings because large buildings are equipped with heavy electrical wiring and piping. When fire is to be occurred in those buildings, it is very dangerous to People and building structures. Therefore, multi-point wireless temperature sensors for large buildings are necessary in order to detect fire in the early time and thus to minimize the loss. A wireless device was composed of the transmitter and receiver. The specification of this device was as follows: 915MHz of transmitted frequency, 4 channels, 9600bps of the transmitted speed, and 10mW of the transmitted power. We confirmed through experiment that the temperature was well sensed and fire location was determined by the 4 channel sensors of the developed sensor system.

A Study on the Thermal Designs of 300 MW-Class IGCC Plant (300 MW급 IGCC 플랜트의 열 설계 연구)

  • 이윤경;서석빈;김종진
    • Journal of Energy Engineering
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    • v.11 no.2
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    • pp.81-89
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    • 2002
  • IGCC (Integrated Coal Gasification Combined Cycle) is a technology that generates electric power using coal gasification and gasified fuel. Carbon conversion value of IGCC is higher and the influence on the environment is lower than the pulverized coal power plant. Especially, in the nations where the weight of fossil fuel for power generation is remarkably high like in Korea, IGCC stands out as an alternative plan to cope with sudden limitation for the emissions. In this paper, system design study for the commercial IGCC system which the introduction is imminent to Korea was performed. Two cases of entrained gasification process are adapted, one is FHR(full heat recovery) type IGCC system for high efficiency and the other is Quench type IGCC system for low cost. System simulations using common codes like AspenPlus were performed for each system. In the case of Quench system, system option study and sensitivity analysis of the air extraction rate was performed. Thermal performance result for the FHR system is 42.6% (HHV, Net) and for the quench system is 40% (HHV, net) when 75% air is extracted.

Development of 1MW Organic Rankine Cycle System (1 MW급 유기랭킨 사이클 시스템 개발)

  • 박흥수;조한창;이용국
    • Journal of Energy Engineering
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    • v.10 no.4
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    • pp.318-326
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    • 2001
  • To enhance thermal efficiency of thermal facility through recovery of low and medium temperature waste heat, 1 MW organic Rankine cycle system was designed and developed. The exhaust gases of 175$^{\circ}C$ at two 100 MW power plants in pohang steel works were selected as the representative of low and medium temperature waste heat in industrial process for the heat source of the organic Rankine cycle system. HCFC-123, a kind of harmless refrigerant, was chosen as the working fluid for Rankine cycle. The organic Rankine cycle system with selected exhaust gases and working fluid was designed and constructed. From the operation, it was confirmed that the organic Rankine cycle system is available for low and medium temperature waste heat recovery in industrial process. The optimum operating manuals, such as heat-up of hot water, turbine start-up, and the process of electric power generation, were derived. However, electric power generated was not 1 MW as designed but only 670 kW. It is due to deficiency of pump capacity for supply of HCFC-123. So it is necessary to increase the pump capacity or to decrease the pressure loss in pipe for more improved HCFC-123 supply.

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A Study on the Integrated Fusion Technology Between a Carbon Dioxide Emission and a District Cooling Energy Using a Cold Energy ($CO_2$ 배출문제와 냉열이용 지역집단 냉방에너지에 관한 통합적 융합기술 연구)

  • Kim, Chung-Kyun
    • Journal of the Korean Institute of Gas
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    • v.10 no.4 s.33
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    • pp.34-40
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    • 2006
  • This paper provides a fusion technology between a district cooling energy system and an environment conservation policy based on the energy savings and reusable cold energy resources. The district heating and cooling systems are very effective ways for an energy saving, a cost reduction and a safety control. It is necessary to equalize the energy savings and an environmental preservation policy for an improved human lift. A gasification process of a liquefied natural gas, cooling water from deep seawater and an ice water thermal storage system may produce a cold energy. A district cooling system is used to cool an apartment, office buildings and factory facilities with a cooling energy supply pipeline. LNG cooling energy will switch a conventional air-conditioning system, which is operated by on electrical energy and a Freon refrigerant. Coincident with significant clean energy and operating cost savings, LNG cold energy system owen radical reductions in an air-borne pollutant, $CO_2$ and the release of environmentally harmful refrigerants compared with that of the conventional air-conditioning system. This study provides useful information on the fusion technology of a LNG cold energy usage and energy savings, and environmental conservation.

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A Study on the BEMS Installation and performance Evaluation Method for Energy Monitoring(Measuring) of New Building (신축건물 에너지효율관리를 위한 환경 및 에너지모니터링(계측) 방법론)

  • Kwon, Won Jung;Yoon, Ji Hye;Kwon, Dong Myung
    • Journal of Energy Engineering
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    • v.27 no.2
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    • pp.32-48
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    • 2018
  • Monitoring of energy use should be a priority in order to efficiently manage building energy use. Energy use in buildings can be managed by dividing them into energy sources, uses, and ZONE. By energy source, electricity, gas, fuel, and district heating are supplied to run the building's facilities. The purpose can be divided into five main applications, including cooling, heating, lighting, hot water and ventilation, but not many elevators and electric heaters that are difficult to include in the five applications are classified. ZONE Star refers to the comparison or separate management of areas for which the purpose of the building is similar or different. In addition, energy efficiency management requires control of the temperature, humidity, and people who will be measuring energy in the building, and the recent problem of fine dust should directly affect the ventilation of the building.

BEF Detection Algorithm to Improve Reliability of Three-Wire-Unigrounded Distribution Line (3선-단접지배전선로의 신뢰도개선을 위한 BEF 검출 알고리즘)

  • Wan-Ki Min;Myeong-Ho Yoo;Seong-Hwa Kang
    • Journal of the Korean Society of Safety
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    • v.12 no.3
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    • pp.166-172
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    • 1997
  • The BEF on the radial distribution line refers to a class of ground faults in which the load-side power line only is grounded, with the distribution line broken into two parts, the source-side and the load-side. Because its mechanism is remarkably different from that of other earth faults, the fault current is very low, and then difficult to detect the BEF. Thus, it is necessary to analyze its properties and to find an appropriate method that can economically protect the BEF of nonautomation area in the substation. As a result of analyzing the BEF data obtained by the RTDS, EMTP simulation, and the field test data of ETSA, we believe that it is the dominant factor in distinguishing the BEF from normal conditions by a criterion value that is appropriately handled from the zero-sequence current. Thus, with this criterion value, a BEF detecting algorithm is constructed which measures the variations of the zero-sequence current and processes then properly so as to make the fault decision. To prove the accuracy of this algorithm, it is compared with the field test data of ETSA under various conditions. The results show that the proposed algorithm is accurate.

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A Study on the Pump Efficiency Measurement Using the Thermodynamic Method (열역학적 방법을 사용한 펌프 효율 측정에 관한 연구)

  • Bae, Cherl-O;Vuong, Duc-Phuc;Lee, Hwi-Il
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.18 no.3
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    • pp.267-272
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    • 2012
  • Carbon emission generated by energy issues is one of the major problems which all countries concern. The International Energy Agency recommends to improve 15-30[%] of energy efficiency than now. Government has pushed the domestic energy saving policies and incentives and penalties were also given in that direction. Pumps are widely used to transfer fluids and they consume at least 20[%] power of each nation. Their loss of energy is huge if they have been operated at low efficiency for long time. Low efficiency of these pumps is often due to incorrect design or degradation. Pump efficiency can be measured to estimate energy loss. If it is low, the pump may be repaired or replaced with new one. This paper introduces thermodynamic method to measure pump efficiency using only two kinds of sensors for temperature and pressure. It can calculate best efficiency point(BEP) of actual systems easily and fast. Its values were compared with the real performance curve provided by pump maker and we got almost similar performance curves from the repeated experiment.

Si 박막태양전지용 스퍼터링 증착 기술 현황

  • Lee, Seong-Hun;Kim, Dong-Ho;Yun, Jeong-Heum;Kim, Do-Geun;Kim, Jong-Guk;Lee, Geon-Hwan
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2011.05a
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    • pp.23.1-23.1
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    • 2011
  • 최근 화석연료를 대체하기 위한 지속가능한 신에너지에 대한 요구가 증대됨에 따라 태양광 발전에 대한 연구도 폭발적으로 늘어가고 있는 추세이다. 태양광이 화석연료 대체에너지로 실효성을 가지기 위해서는 태양광 발전 시스템의 발전효율을 높이고 생산 비용을 저감하는 문제가 선결되어야 한다. 기존 실리콘 태양전지 시스템 설비 비용의 60% 이상을 차지하는 모듈의 제조과정에서 소재 손실을 최소화함으로써 저가격화를 실현하고자 박막형 태양전기 기술이 태동되었다. 현재 박막 태양전지와 관련하여 활발한 기술 개발이 진행되고 있으며 상당한 시장 점유율을 보이고 있는 실정이다. 박막 태양전지 분야에서 CIGS와 같은 화합물 반도체 박막 태양전지 시장이 확대되고 있는 실정을 고려한다면 실리콘 박막 태양전지의 경우 고효율화 저가격화 달성은 더욱 절실한 문제이다. 실리콘 박막의 경우 독성이 없으며 고갈 우려가 없는 소재이면서 기존의 직접회로 산업의 인프라 구조를 활용할 수 있어 많은 기대와 관심을 끌고 있는 박막 태양전지 후보이다. 박막 태양전지 제조에 있어서 핵심기술은 도핑된 실리콘층과 광흡수를 위한 진성 실리콘층을 합성하는 공정 기술이다. 현재 박막 태양전지 산업에서 실리콘 박막 소재의 합성은 주로 PECVD법에 의해 이루어지고 있다. 그러나 스퍼터 공정을 이용한 실리콘 박막 합성 연구 또한 20년 이상의 오랜 기간 동안 연구되어 오고 있다. 스퍼터 공정을 이용한 실리콘 박막합성는 독성 가스를 사용하지 않으며, 디스플레이와 같은 기존의 소자 공정 기술을 채용할 수 있다는 장점을 가지고 있어 주목 받고 있다. 실제로 반응성 마그네트론 스퍼터링에 의해 제조된 실리콘 박막은 PECVD공정에 의한 실리콘 박막에 상응하는 우수한 광전자적 특성을 보인다. 스퍼터 공정에서는 박막 성장을 위한 수송 물질들이 열적 평형 상태에 근접한 라디칼들이라기 보다 대부분 고에너지 원자종과 이온들이 주류를 이루고 있어 합성된 실리콘 박막의 결함 제어가 어렵다는 문제가 있다. 박막 합성 기구의 규명을 통하여 이러한 문제를 해결하기 위한 시도들이 이루어 지고 있으며, 본 발표를 통하여 스퍼터 공정을 이용한 태양전지용 실리콘 박막 합성기술에 대한 현황을 소개하고자 한다.

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