• 제목/요약/키워드: Boiler heat exchanger

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응축 가스보일러의 연소기와 열교환기의 최적화 연구 (The Study on the Optimization of Burner and Heat Exchanger for Condensing Gas Boiler)

  • 박준규;이석희;정영식;이창언;금성민
    • 한국에너지공학회:학술대회논문집
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    • 한국에너지공학회 2000년도 춘계 학술발표회 논문집
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    • pp.201-207
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    • 2000
  • This study was carried out to optimize burner and heat exchanger of the condensing gas boiler which can save energy by utilizing latent heat of combustion gas and reduce pollutant in exhaust gas. The heat exchanger of the gas boiler was composed of three parts, which were an upper. lower , and coil heat exchanger . The upper heat exchanger was placed outside of the premixed burner and a lower heat exchanger was located under the upper heat exchanger. And, coil heat exchanger rounded the outer surface of an upper and lower heat exchanger. The boiler designed by this research reaches turn-down ratio 4 : 1 in the domain of equivalence ratio 0.75-0.8 and thermal efficiency of 97% . Emission of NOx and CO concentration was under 20ppm and 140ppm at equivalence ratio 0.8 . When diameter of the burner replace 60mm by 50mm. emission of CO was reduced about 50ppm remarkably.

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멀티버너 보일러용 열교환기 모듈 특성 시험 - 모듈 순서에 따른 특성결과 - (Experimental Study on Thermal Characteristics of Heat Exchanger Modules for Multi Burner Boiler)

  • 강새별;김종진;안준
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회B
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    • pp.3053-3058
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    • 2008
  • We develop a heat exchanger modules for a multi-burner boiler. The heat exchanger module is kind of a heat recovery steam generator (HRSG). This heat recovery system has 4 heat exchanger modules. The 1st module consists of 27 bare tubes due to high temperature exhaust gas and the others consist of 27 finned tubes. The maximum steam pressure of each module is 1 MPa and tested steam pressure is 0.7 MPa. In order to test these heat exchanger modules, we make a 0.5t/h flue tube boiler (LNG, $40\;Nm^3/h$). We tested the heat exchanger module with changing the position of each heat exchanger module. We measured the inlet and outlet temperature of each heat exchanger module and calculated the heat exchange rate. The results show that if module C is placed at second stage (the 1st stage is always module O, bare tube module), there is no need to attach an additional heat exchanger module. In this case the exit temperature of module C is low enough to enter an economizer which is more effective in heat recovery than a heat exchanger module.

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멀티버너 보일러용 열교환기 모듈 특성 시험 - 부하별 특성 결과 - (Experimental Study on Thermal Characteristics of Heat Exchanger Modules for Multi Burner Boiler - Part Load Test Results -)

  • 김종진;최규성;기호충;강새별
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.1025-1030
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    • 2008
  • We develop heat exchanger modules for a multi-burner boiler. The heat exchanger module is kind of a heat recovery steam generator (HRSG). This heat recovery system has 4 heat exchanger modules. The 1st module consists of 27 bare tubes due to high temperature exhaust gas and the others consist of 27 finned tubes. The maximum steam pressure of each module is 10 bar and tested steam pressure is 4 bar. In order to test these heat exchanger modules, we make a 0.5t/h flue tube boiler (LNG, $40\;Nm^3/h$). The test results of 100% boiler load show that heat transfer rate of 1st module is 49.7 Mcal/h which is 34% of total heat transfer rate and that of 2nd module is 82.6 Mcal/h which is 57% of total heat transfer rate. The reason of higher the heat transfer rate of 2nd module than that of 1st module is that the 2nd heat exchanger module has finned tubes instead of bare tube. The boiler load 50% results show that only 2 heat exchanger modules are needed to extract the heat from the flue gas to water. From this result, it is very important of optimum design of the first finned tube among all water tubes.

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순환유동층보일러 외부열교환기의 열전달 특성에 관한 수치해석적 연구 (A Numerical Study of the Characteristics of Heat Transfer in External Heat Exchanger of CFB Boiler)

  • 황문경;김정래
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.15-16
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    • 2014
  • With the increasing trend in CFB(Circulating Fluidized Bed) boiler scale, the EHE(External Heat Exchanger) must be adopted to the large-scale boilers to recover insufficient heat transfer surface. In this study, the numerical analysis model for EHE in commercial 300MWe CFB boiler was developed with the inclusion of mechanistic model, which enables the heat transfer prediction. Finally, the calculated absorbed heat and derived heat transfer coefficient are evaluated through the verification with experimental data.

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가정용 가스보일러 열교환기 유형에 따른 압력분포특성에 관한 연구 (A Study on the Characteristics of Pressure Distribution for Heat Exchanger Types of Domestic Gas Boiler)

  • 최경석;오율권;차경옥
    • 한국안전학회지
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    • 제16권4호
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    • pp.22-28
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    • 2001
  • Heat transfer and pressure distribution for heat exchanger type of domestic gas boiler are different from shape, pitch, thickness of fin and array of pipe respectively. In order to measure the pressure distribution across the heat exchanger, a suction type wind tunnel was constructed and velocity distribution was measured for pilot tube(4 point) of rack type. The experiments were performed for 5 different air flow mass, rpm=3,6,9,12,15 and transverse axis of heat exchanger(x-length) is 5cm respectively. Results showed that above 9.5m/s, pressure distribution dispersion for wet type of heat exchanger is on the increase and above 5.5m/s, pressure distribution dispersion for dry type of heat exchanger is on the increase. Also, pressure distribution dispersion by comparing two different types heat exchanger, dry type of heat exchanger showed a higher augmentation than wet type of heat exchanger.

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예혼합 가스버너와 열교환기의 최적화 연구 (The Study on the Optimization of Premixed Gas Burner and Heat Exchanger)

  • 이강주;장기현;이창언
    • 한국가스학회지
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    • 제7권4호
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    • pp.7-13
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    • 2003
  • 본 연구에서는 연소가스의 잠열을 활용함으로서 에너지를 절약하고 배기가스 속의 오염 물질을 저감할 수 있는 콘덴싱 가스보일러의 예혼합버너와 열교환기를 최적화하기 위한 실험을 수행하였다. 본 연구에서 사용된 가스보일러의 열교환기는 상부, 하부 및 코일 열교환기 3개부분으로 구성되어 있다. 상부 열교환기는 예혼합버너를 둘러싸고 있으며 하부 열교환기는 상부열교환기 하단에 설치되어 있다. 그리고, 코일형 열교환기는 상부와 하부열교환기의 바깥 표면을 감싸고 있는 구조로 되어 있다. 본 연구를 통하여 설계된 보일러의 TDR은 당량비 0.75${\~}$0.80 부근에서 약 4:1이며 열효율이 $97\%$로 나타났다. 또한, NOx 및 CO 배출농도는 당량비 0.8 부근에서 각각 20ppm과 140ppm의 낮은 수치를 보였으며 버너의 직경을 기존의 60mm에서 50mm로 변경한 결과, CO의 배출농도가 50ppm까지 현저히 낮아짐을 알 수 있었다.

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콘덴싱 가스보일러시스템의 제어 알고리즘 개발을 위한 효과적인 동적모델 (Effective Dynamic Models for the Development of Control Algorithms of a Condensing Gas Boiler System)

  • 한도영;김성학
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2007년도 동계학술발표대회 논문집
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    • pp.34-39
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    • 2007
  • Condensing gas boiler units may make a big role for the reduction of energy consumption in heating industries. In order to decrease the energy consumption of a condensing gas boiler unit, the effective operations and controls of the system are necessary. In this study, mathematical models of a condensing gas boiler system were developed and programmed in order to predict dynamic behaviors of the system. These include dynamic models for a blower, a gas valve, a pump, a burner, a boiler heat exchanger, and a hot water heat exchanger. Control algorithms for the control of a gas valve, a blower, and a pump were also assumed. Simulation results showed good predictions of the dynamic phenomena of a boiler system. Therefore, the simulation program developed for this study may be effectively used for the development of control algorithms of the boiler system.

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저 NOx 응축형 가스보일러 개발에 관한 연구(II) -원통형 열교환기 설계 및 응축보일러 성능- (A Study on the Development of Low NOx Condensing Gas Boiler(II) -Design of Heat Exchanger and Performance of Boiler-)

  • 이창언;금성민;정영식
    • 대한기계학회논문집B
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    • 제25권2호
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    • pp.244-251
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    • 2001
  • This paper describes a design study of heat exchanger assembly to be used for low NOx condensing gas boiler. In this study, specifications of each heat exchanger components(upper and lower fin-type HEX, coil-type HEX, baffle) were investigated experimently by using model apparatus and analytical model, and comprehensive performances of the pilot gas boiler were examined. As a result, the boiler efficiency for heating and hot-water reached 90% and 94%, respectively. NOx and CO emission are less than 50ppm and 200ppm (0$_2$0% basis), respectively, which are very improved results than those of conventional bunsen-type boiler. But it is considered that supplementary investigations necessary for CO emission improvement and optimum design with boiler capacity.

밀집형 증기보일러의 고부하 열교환기 설계평가 (Design Evaluation of Heavy Duty Heat Exchangers for Compact Steam Boilers)

  • 김성일;양종인;최상민
    • 한국연소학회지
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    • 제18권2호
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    • pp.23-31
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    • 2013
  • Compact steam boiler is a useful heat exchanger in a space-intensive system. There are some constraints in terms of sizing and designing the space confined in the system which is usually used in vessels. In this study, design considerations for heavy duty heat exchangers of compact steam boilers are presented and evaluated. Especially, evaporator tubes of marine boiler which are exposed to a high temperature environment are considered. Also, extended surface designs with a high temperature are examined. In order to determine the criteria with considerations of both heat transfer rate and pressure drop in the heat exchanger, they are evaluated with major variables, such as the tube diameter, the number of tubes, and the tube length. Finally, the design parameters are estimated as the bare tubes are installed instead of the finned tubes.

가습연소 폐열회수 보일러의 물분사 설계모델 구축에 관한 연구 (Establishing the Models for Optimized Design of Water Injection in Boilers with Waste-heat-recovery System)

  • 신재훈;문석수
    • 한국분무공학회지
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    • 제26권2호
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    • pp.96-103
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    • 2021
  • In order to improve the overall efficiency and meet the emission regulations of boiler systems, the heat exchanging methods between inlet air and exhaust gas have been used in boiler systems, named as the waste-heat-recovery condensing boiler. Recently, to further improve the overall efficiency and to reduce the NOx emission simultaneously, the concept of the water injection into the inlet air is introduced. This study suggests the models for the optimized design parameters of water injection for waste-heat-recovery condensing boilers and performs the analysis regarding the water injection amount and droplet sizes for the optimized water injection. At first, the required amount of the water injection was estimated based on the 1st law of thermodynamics under the assumption of complete evaporation of the injected water. The result showed that the higher the inlet air and exhaust gas temperature into the heat exchanger, the larger the amount of injected water is needed. Then two droplet evaporation models were proposed to analyze the required droplet size of water injection for full evaporation of injected water: one is the evaporation model of droplet in the inlet air and the other is that on the wall of heat exchanger. Based on the results of two models, the maximum allowable droplet sizes of water injection were estimated in various boiler operating conditions with respect to the residence time of the inlet air in the heat exchanger.