• 제목/요약/키워드: heating fuel

검색결과 767건 처리시간 0.024초

소형 비행기 연료 계통 적합성 입증을 위한 비행시험에 관한 고찰 (Flight Test Method to Show Compliance to Fuel System Airworthiness Requirements of Small Aircraf)

  • 김성겸
    • 항공우주시스템공학회지
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    • 제6권3호
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    • pp.34-39
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    • 2012
  • In this paper, analysis of airworthiness requirements which require flight test to show compliance and flight test method as means of compliance to those requirements are provided. For unusable fuel test, sufficient discussion between certification authority and applicant is required to select test conditions. For hot weather fuel system operation test, preservation and heating of test fuel should be done carefully not to adversely affect to test result.

중앙난방방식을 지역난방.소형열병합난방방식으로 전환시의 경제성 비교 분석 (Analysis for the Economic efficiency of District Heating and Gas Engine Co-generation System comparing with Central Heating System)

  • 김규생;이상혁;홍경표;원영재
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2007년도 동계학술발표대회 논문집
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    • pp.459-465
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    • 2007
  • This study was conducted to calculate the LCC of a apartment complex with a type of heating system, district heating and cogeneration system. For the purpose of analyzing LCC according to size of apartment complex, 500, 1,500 and 4,000 houses of model apartment selected. This research performs design of heating system and the life cycle cost analysis including an initial cost, energy cost, maintenance and operation cost, replacement cost and renovation cost during the project period(15years). According to the calculated results, 1) Initial cost of cogeneration system with 500, 1500 and 4000 houses is higher than district heating system each of 20%, 13%, 12%. 2) In case of cogeneration system, the payback period by electric generation is 5.21, 4.92 and 4.47 years and saving cost was calculated 29 billion won, 94 billion won and 262 billion won after payback period. 3) Cogeneration system LCC was 1.12, 1.07 and 1.06 times larger than district system with the size of apartment complex. According to the case of this study district heating system is more efficient than cogeneration system in terms of the reduction of LCC. 4) Gas Engine Co-generation System is more efficient than other systems because it can collect progressive part from electric charge progressive stage system. However, the efficiency is decreasing because of raising of fuel bills(LNG) and lowering of power rate for house use. Especially the engine is foreign-made so the cost of maintenance and repair is high and the technical expert is short. 5) District heating is also affected by fuel bills so we should improve energy efficiency through recovering of waste heat(incineration heat, etc.). Also, we should supply district cooling on the pattern of heat using of let the temperature high in winter and low in summer.

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유기성 폐기물과 피트모스를 이용한 고형연료 제조에 관한 연구 (Study on production RDF using organic waste and peat-moss)

  • 하상안
    • 유기물자원화
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    • 제15권3호
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    • pp.106-112
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    • 2007
  • 본 연구는 하수슬러지 케이크와 타르, 피트모스를 혼합하여 연료 및 보조연료로써 활용이 기능하도록 안정된 발열랑을 가지는 혼합비를 도출하고, 제조된 고형연료의 연소특성과 대체연료로써의 RDF의 적용가능성을 확인하는데 목적이 있다. 각각의 개별 발열량은 하수슬러지 케이크와 피트모스가 4000~4500kcal/kg 비슷하였으며, 타르의 발열량은 7000kcal/kg로 가장 높은 것으로 나타났다. 또한, 발열량 6,000kcal/kg 이상으로 하는 적정 혼합비를 (하수슬러지케이크 : 타르 : 피트모스) 1 : 4 : 1에서 1: 7 : 1까지로 하여 길이 1.6cm, 직경 1.3cm, 중량 2.3g의 고형연료를 제조하였다. 제조된 고형연료의 RDF 적용가능성 분석결과, 배기가스 분석에서는 혼합비에 따라 발생되는 배기가스의 성분농도가 크게 변하지 않았으며, 고형연료의 불꽃 지속시간은 5분 내외로 동일 질량 2.3g을 연소시킨 일반 무연탄과 지속시간이 비슷한 것으로 나타났다. 따라서 본 연구에서 제조한 고형연료의 연료 및 보조연료로서의 활용이 기능할 것으로 판단된다.

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The Bioenergy Conversion Characteristics of Feedlot Manure Discharging from Beef Cattle Barn

  • Oh, Seung-Yong;Kim, Chang-Hyun;Yoon, Young-Man
    • 한국토양비료학회지
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    • 제48권6호
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    • pp.697-704
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    • 2015
  • This study was carried out to assess bioenergy conversion efficiency by biogas and solid fuel production in the cattle feedlot manure discharged from beef cattle barn. Feedlot manure was sampled from the cattle farmhouse located in Yong-in, Gyeonggi during the mid-fattening stage, periodically. The chemical characteristics, BMP (Biochemical methane potential) and HV (Heating values) of feedlot cattle manures were analyzed. Total solid contents of cattle feedlot manure were in the range of 29.98~44.28%, and volatile solid contents were in the range of 23.53~24.47%. In the anaerobic digestion of cattle feedlot manure, the methane production potential has increased from 0.141 to $0.187Nm^3kg^{-1}-VS_{added}$. The methane production of fresh cattle feedlot manure showed the range $0.141{\sim}0.187Nm^3kg^{-1}$-Manure (average $0.047Nm^3kg^{-1}$-Manure), the LHVs (lower heating values) of the produced methane were in the range of $316{\sim}560kcalkg^{-1}$-Manure (average $400kcalkg^{-1}$-Manure). In the direct combustion of fresh cattle feedlot manure, the LHVs were measured in the range of $747{\sim}1,271kcalkg^{-1}$-Manure (average $916kcalkg^{-1}$-Manure), and LHVs of solid fuel which have the water content of 20% were in the range of $2,694{\sim}2,876kcalkg^{-1}$-Manure (average $2,791kcalkg^{-1}$-Manure). Then, the drying energy of average $443kcalkg^{-1}$-Manure was consumed in the production of solid fuel which has a water content of 20%. Therefore, the direct combustion of cattle feedlot manure showed about 2.3 times higher LHV than the LHV of methane produced by anaerobic digestion. And LHV of solid fuel was about 6.0 times higher than the LHV of methane produced by anaerobic digestion. Then, the production of solid fuel presented more bioenergy conversion efficiency than the biogas production in the bioenergy use of cattle feedlot manure.

산업용 굴뚝 폐열을 활용한 시설하우스 난방 공급 시스템 설계 (Design of Heating Supply System for Facility House using Industrial Chimney Waste Heat)

  • 이창조;고진광;이성근
    • 한국전자통신학회논문지
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    • 제18권4호
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    • pp.661-668
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    • 2023
  • 농업용 시설하우스의 난방을 위해서는 많은 양의 연료가 필요하고, 최근 연료 가격의 상승으로 인하여 많은 농가가 난방 비용에 대한 부담을 겪고 있다. 본 논문은 산업용 굴뚝 폐열을 활용하여 인근에 있는 농업용 시설하우스 난방을 지원하는 공급시스템을 제안하고, 난방비 절감 모델 적용과 효과에 대해 분석한다. 굴뚝 폐열 시스템을 기반으로 시스템을 설계하였고, 제안한 모델을 기반으로 시설하우스 난방비 절감 모델 적용 및 효과 분석을 수행하였다. 고열의 굴뚝 폐열을 이용하면 인근 농가의 시설하우스 난방 공급에 활용이 가능하다는 것을 확인하였다. 산업단지 인근 대규모 시설하우스에 난방을 공급한다면 국내 농가의 생산성 향상 및 경쟁력 제고에 이바지할 것으로 기대된다.

가정용 목재 펠릿 보일러에 대한 부분부하 운전 특성 (Part Load Performance Characteristics of Domestic Wood Pellet Boiler)

  • 강새별;김종진;김혁주;박화춘;최규성;심봉석
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.103.1-103.1
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    • 2010
  • Recently domestic wood pellet boilers are installed in rural and forestry houses. The fuel price per lower heating value of wood pellet is about 20 % lower than that of heating oil on July 2010. In spite of lower price of wood pellet, a few user of wood pellet boiler complain expensive fuel cost. One of this reason is inaccurate or improper air-fuel ratio setting of wood pellet boiler. O2 concentration of flue gas of domestic wood pellet boiler is about 9.7 % and there are few domestic wood pellet boiler which can control air-fuel ratio automatically. We tested a domestic wood pellet boiler in changing boiler thermal output and air-fuel ratio. The nominal boiler thermal output is 25 kW (21 500 kcal/h). We measured thermal efficiency and flue gas concentrations such as CO and NOx at each boiler thermal load with various air-fuel ratio. The results show that if air flow rate is the same as full load and part load, thermal efficiency of part load of 40 % drops about 7.7 %p compared to boiler full load case.

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수소기관에서 NOx 특성에 관한 연구(1) (The Study on NOx Emission for Hydrogen Fueled Engine(1))

  • 이상준;최경호
    • 한국수소및신에너지학회논문집
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    • 제8권2호
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    • pp.91-97
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    • 1997
  • The goals of this research are to understand the $NO_x$ emission in direct injected diesel engine with premixed hydrogen fuel. Hydrogen fuel was supplied into the test engine through the intake pipe. Amount of hydrogen-supplemented fuel was 70 percent basis heating value of the total fuel. The effects of intake air temperature on $NO_x$ emission were studied. The intake air temperature was controlled by flow rate of liquid nitrogen. The major conclusions of this work include : (i) the tested engine was run without backfire under 70 percent hydrogen fuel supplemented. (ii) radicals of nitrogen gas in the intake pipe were increased by 30 percent and cylinder gas temperature was decreased by 24 percent as the intake air temperature were changed from $23^{\circ}C$ to $0^{\circ}C$ ; and (iii) $NO_x$ emission per unit heating value of supplied fuel was decreased by 45 percent with same decrease of intake air temperature.

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압축점화 가솔린기관의 성능 및 배기특성 (Performance and Emission Characteristics of Compression Ignition Gasoline Engine)

  • 김홍성;김문헌
    • 대한기계학회논문집B
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    • 제27권7호
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    • pp.1007-1014
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    • 2003
  • This work deals with a controlled auto-ignition (CAI) single cylinder gasoline engine, focusing on the extension of operating conditions. The fuel is injected indirectly into electrically heated inlet air flow. In order to keep a homogeneous air-fuel mixing, the fuel injector is water-cooled by a specially designed coolant passage. Investigated are the engine performance and emission characteristics under the wide range of operating conditions such as 32 to 63 in the air-fuel ratio, 1000 to 1800 rpm in the engine speed, and 150 to 18$0^{\circ}C$ in the inlet air temperature. The compression ignition gasoline engine can be achieved that the ultra lean-burn with self-ignition of gasoline fuel by heating inlet air. For example. the allowable lean limit of air-fuel ratio is extended until 63 at engine speed of 1000 rpm and inlet air temperature of 17$0^{\circ}C$. It can be achieved that the emission concentrations of carbon monoxide, hydrocarbons and nitrogen oxide had been significantly reduced by CAI combustion compared with conventional spark ignition engine.

Water film covering characteristic on horizontal fuel rod under impinging cooling condition

  • Penghui Zhang;Bowei Wang;Ronghua Chen;G.H. Su;Wenxi Tian;Suizheng Qiu
    • Nuclear Engineering and Technology
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    • 제54권11호
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    • pp.4329-4337
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    • 2022
  • Jet impinging device is designed for decay heat removal on horizontal fuel rods in a low temperature heating reactor. An experimental system with a fuel rod simulator is established and experiments are performed to evaluate water film covering capacity, within 0.0287-0.0444 kg/ms mass flow rate, 0-164.1 kW/m2 heating flux and 13.8-91.4℃ feeding water temperature. An effective method to obtain the film coverage rate by infrared equipment is proposed. Water film flowing patterns are recoded and the film coverage rates at different circumference angles are measured. It is found the film coverage rate decreases with heating flux during single-phase convection, while increases after onset of nucleate boiling. Besides, film coverage rate is found affected by Marangoni effect and film accelerating effect, and surface wetting is significantly facilitated by bubble behavior. Based on the observed phenomenon and physical mechanism, dry-out depth and initial dry-out rate are proposed to evaluate film covering potential on a heating surface. A model to predict film coverage rate is proposed based on the data. The findings would have reliable guide and important implications for further evaluation and design of decay heat removal system of new reactors, and could be helpful for passive containment cooling research.

Viscosity Characteristics of Waste Cooking Oil with Ultrasonic Energy Irradiation

  • Kim, Tae Han;Han, Jung Keun
    • Journal of Biosystems Engineering
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    • 제37권6호
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    • pp.429-433
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    • 2012
  • Purpose: While rapeseed oil, soy bean oil, palm oil and waste cooking oil are being used for biodiesel, the viscosity of them should be lowered for fuel. The most widely used method of decreasing the viscosity of vegetable oil is to convert the vegetable oil into fatty acid methyl ester but is too expensive. This experiment uses ultrasonic energy, instead of converting the vegetable oil into fatty acid methyl ester, to lower the viscosity of the waste cooking oil. Methods: For irradiation treatment, the sample in a beaker was irradiated with ultrasonic energy and the viscosity and temperature were measured with a viscometer. For heating treatment, the sample in a beaker was heated and the viscosity and temperature were measured with a viscometer. Kinematic viscosity was calculated by dividing absolute viscosity with density. Results: The kinematic viscosity of waste cooking oil and cooking oil are up to ten times as high as that of light oil at room temperature. However, the difference of two types of oil decreased by four times as the temperature increased over $83^{\circ}C$. When the viscosity by the treatment of ultrasonic energy irradiation was compared to one by the heating treatment to the waste cooking oil, the viscosity by the treatment of ultrasonic energy irradiation was lower by maximum of 22% and minimum of 12%, than one by the heating treatment. Conclusions: Ultrasonic energy irradiation lowered the viscosity more than the heating treatment did, and ultrasonic energy irradiation has an enormous effect on fuel reforming.