• Title/Summary/Keyword: 부분부하운전

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Effect on Thermal Performance of Superheater Module under Part Load Operation in HRSG (배열회수보일러의 부분부하 운전에 따른 유동불균일이 과열기의 성능에 미치는 영향)

  • Chong, Chae-Hon;Song, Jung-Il
    • Journal of Energy Engineering
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    • v.17 no.3
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    • pp.161-166
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    • 2008
  • The purpose of this study is to apprehend the behavior of exhaust gas flow from gas turbine during part load operation in Heat Recovery Steam Generator. As a first step of this work, internal flow characteristics according to HRSG types were examined by CFD analysis. Next step, tube temperature according to gas turbine 53% and 100% load conditions were calculated by results of CFD and those were compared with temperature data gathered from real plant. Finally, thermal performance due to part load operation was calculated to estimate the influence of heat transfer in superheater. In addition, new type of device is suggested to eliminate the uneven temperature distribution of tubes during part load operation.

The performance of combined heat and power plant according to gas turbine air mass flow rate change (가스터빈 공기량 조절에 따른 열병합발전 성능 변화)

  • Kim, Jae-Hoon;Moon, Seung-Jae
    • Plant Journal
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    • v.18 no.2
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    • pp.32-40
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    • 2022
  • In this study, we investigated the operation data of combined heat and power in accordance with the change of the inlet guide vane with partial load. The partial load 80% could close the inlet guide vane up to 24%, and the exhaust gas temperature could be increased by 52℃. The partial load 90% could close the inlet guide vane up to 12%, and the exhaust gas temperature could be increased by 23℃. At 80% of partial load with the thermal load tracking mode, the output could be increased up to 5.68 MW, the combined cycle efficiency increased by 0.73%, and the combined heat and power efficiency increased by 1.81%. At 90% of the partial load, the output could be increased up to 2.55 MW, the combined cycle efficiency increased by 0.32%, and the combined heat and power efficiency increased by 0.72%.

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A Study on Partial Load Performance of Absorption Type Heat Pump for Waste Heat Recovery of Closed Cooling Water (기기냉각수 폐열회수용 흡수식 히트펌프의 부분부하 성능에 관한 연구)

  • Park, Byungchul;Kim, Taehyeong;Kim, Kwangsu
    • Journal of Energy Engineering
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    • v.28 no.2
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    • pp.47-54
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    • 2019
  • As absorption type heat pump for waste heat recovery is installed in combined cycle power plant for Energy Service Company, performance test is implemented to confirm the operation data on partial load. The operation data changes according to the heat pump operation on partial load are as follows. Total heat output increases, because waste heat of closed cooling water and a portion of LP steam from HRSG is supplied. But electric power output of steam turbine is reduced, because LP steam to steam turbine is reduced. And heat output from HP district heater and LP district heater is reduced, because HP turbine exhaust steam to HP district heater and LP district heater is reduced. On partial load operation, turbine output reduction is higher than the base load operation. Therefore, on partial load, heat pump should be operated in consideration of the heat output increase and electric power output reduction.

Energy efficiency improvements in part load for a marine auxiliary diesel engine (선박발전기용 디젤엔진의 부분부하에서 에너지 효율 개선에 관한연구)

  • Jung, Kyun-Sik
    • Journal of Advanced Marine Engineering and Technology
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    • v.38 no.7
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    • pp.877-882
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    • 2014
  • The reduction of CO2 emission has been discussed in the Marine Environment Protection committee in the International Maritime Organization as the biggest causes of GHG for the purpose of indexing CO2 amounts released into the atmosphere from ships. Accordingly, various methods including the change in the hull design to improve energy efficiency, the coating development to reduce friction resistances, the additives development for improving thermal efficiency in an engine, the low-speed operation to reduce fuel consumptions, and etc. have been applied. The main engine of a ship is an electronic engine for improving the efficiency of the whole load area. However, marine generator engines still use mechanical drive engines in intake, exhaust, and fuel injection valve drive cams. In addition, most of marine generator engines in ships apply a part-load operation of less then 80% due to an overload protection system. Therefore, marine auxiliary diesel engine set at 100% load is necessary to readjust in order to efficient operation because of part-load operation. The objective of this study is to report the results of the part-load fuel consumption improvement by injection timing readjust to identifying the operational characteristics of a marine generator engine currently operated in a ship.

Analysis of Operating Characteristics of 200kW Class Micro Gas Turbine (200kW 급 마이크로 가스터빈의 운전특성 분석)

  • Kim, Jeong Ho;Kang, Do Won;Kim, Tong Seop
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.11
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    • pp.1015-1022
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    • 2013
  • This study simulates the operation of a 200 kW class micro gas turbine that is currently under development. The performance and operating characteristics depending on the load control scheme (constant turbine inlet temperature versus constant turbine exit temperature) and ambient condition were investigated using detailed component performance data. The sensitivities of operating parameters, such as the compressor surge margin and flow path temperatures, according to unit fuel flow change were predicted for a wide load range. The sensitivity analysis showed that the steady state calculation provided useful information about the maximum surge margin reduction during load change.

Seamless Grid Synchronization of PR control based Voltage Controller with Considering the Non-linear Load under Islanded Mode (비선형 부하 보상을 고려한 고정자 좌표계 제어 기반의 계통 동기화 개선)

  • Lim, Kyungbae;Simatupang, Desmon Petrus;Choi, Jaeho
    • Proceedings of the KIPE Conference
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    • 2017.07a
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    • pp.437-438
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    • 2017
  • 본 연구는 독립 운전 모드의 P+MR 기반의 전압제어기의 계통 동기화 방식을 조사한다. 계통 복전 후 계통과의 재연결을 위한 계통 동기화가 고정자 좌표계하에서 제어가 수행되는 경우, 독립운전하에서 정전압, 정주파수를 가지는 교류 지령 전압은 계통 전압으로 대체되는데 이 부분에서 고정자 좌표계 제어하의 현재 출력 전압과 계통 전압의 위상 차이에 기인하여 상당한 전압 오차가 발생할 여지가 있고 이러한 전압 오차 발생은 심각한 전압 과도 상태를 야기할 수 있게 된다. 추가적으로, 인버터의 출력 단에 연결된 부하가 비선형 부하라면 부하에서 생성되는 고조파에 기인하여 위에 언급된 전압 과도 상태가 더욱 심각해질 수 있다. 본 논문에서는 위에 언급된 문제를 해결하기 위한 대책으로 독립 운전 모드하에서의 전압 제어를 위해 사용되는 P+MR 제어 기반의 비선형 부하를 고려한 매끄러운 계통 동기화 방식이 제안되었다. 제안된 매끄러운 계통 동기화 방식은 실험 결과를 통해 검증된다.

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KSTAR NBI 진공용기와 Grid 의 열 및 구조 해석

  • 윤병주;한장민;김계령;송우섭;오병훈
    • Proceedings of the Korean Vacuum Society Conference
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    • 1999.07a
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    • pp.35-35
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    • 1999
  • KSTAR NBI 장치의 진공용기와 Grid에 대하여 열 및 구조해석을 ANSYS 코드를 이용하여 수행하였다. 진공용기의 경우 진공용기 지지구조물을 최적화할 수 있는 구조형상에 관하여 연구하였고, Grid의 경우 Grid 형상 및 재료 특성에 중점을 두어 연구하였다. 또한 Electron Dump의 냉각수로의 위치 및 형상, 크기를 최적화시켰다. 이번 각 구조물의 최적화 연구에서 특히 중점을 둔 사항은 재료와 관련된 경제성이다. 진공용기에서 가장 문제가 되는 것은 용기의 크기에 따른 변형도이다. 진공용기의 Cryo-sorption 패널 배기속도는 30000 I/sec 이상이고, 진공 용기의 운전시 진공도는 5$\times$10-7Torr 이하이다. 구조해석의 결과로부터 폭 3m$\times$높이 4,m$\times$길이 5m, 두께 2cm인 진공용기는 대기압 하에서 7cm의 변형도를 갖는다. 변형을 최소화하기 위해 T형 보강구조물을 부착시켰을 때 변형도가 1cm 이하로 감소함을 볼 수 있었다. [그림1] 장시간 운전시 Grid에 미치는 열부하에 의한 영향을 연구하였다. 열해석 결과와 경제성, 가공성을 동시에 고려할 때 Grid의 재질로 무산소동이 적합함을 알 수 있었다. 한편, NBI 장치에서 열부하가 최대인 곳은 이온원의 Electron Dump 부분으로 중심부분에서 20MW/m2이다. 열부하를 효과적으로 소산시키기 위해 Electron dump 의 중심부분 모양을 깔대기 모양으로 만들어 Dump 뒷부분의 자석에 미치는 영향을 최소화 시켰다. 이 때 냉각수록의 냉각수 흐름속도 4.5m/sec이고, 자석의 최대 온도는 15$0^{\circ}C$로써 자석의 기본성질을 일어버리지 않는 허용범위 내에 들어옴을 알 수 있었다. 자석의 온도는 10초 동안 급격히 상승하였고, 100초 이후에 포항상태에 도달하였다 [그림2]

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Flow Control of a Centralized Cooling Plant for Energy Saving (중앙식 냉방 플랜트의 유량제어를 통한 에너지 절감에 관한 연구)

  • Lee, Jeong Nam;Kim, Young Il;Chung, Kwang Seop
    • Journal of Energy Engineering
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    • v.24 no.3
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    • pp.48-54
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    • 2015
  • In a centralized cooling plant, precise mechanical design and control strategy are required for peak and partial cooling load management. Otherwise, it will lead to low efficiency of cooling system and energy loss due to low partial load efficiency. The purpose of this paper is to enhance energy performance of the centralized cooling plant by controlling flow system in an industrial building using measured data and energy performance simulation program. The simulation results show that the proposed flow control can cut down annual electric power consumption by about 17% compared with the conventional cooling system.

Performance Characteristics of Water-to-Air Heat Pump under Partial Load Heating Operation (물-공기 히트펌프 시스템의 부분부하 난방운전 특성)

  • Cho, Yong;Lee, Nam Young;Kim, Yong Yeol;Kim, Dea Geun;Jung, Eung Tai
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.170.1-170.1
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    • 2010
  • Performance of water-to-air heat pump using raw water has been analyzed under part load heating operation in March, 2010. The water source heat pump of 30 RT was installed for 24 hours cooling and heating ventilation, and the gravity inflow water from Daechung dam is used as the heat source. The daily averaged water and air temperatures are $5.7^{\circ}C$ and $9.9^{\circ}C$ respectively, and the heat pump is operated under part load condition for 7.5 hours in 24 hours. The daily averaged heat pump COP calculated with heat transferred from the brine water is 2.49 and the monthly averaged COP is 2.25 in March. Based on the database of the California Energy Commission, the monthly averaged COPs of air source heat pumps installed in U.S.A. are 1.97 in March and 2.03 in April. Therefore it is confirmed again that the performance of the heat pump using raw water is better than that of air source heat pumps.

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Numerical Analysis for Reduction of Fuel Consumption by Improvement of Combustion Condition in a Common Rail Diesel Engine Generator (커먼레일 디젤엔진 발전기의 연소상태 개선에 따른 연비절감을 위한 수치해석)

  • Kim, Seung Chul;Kim, Chung Kyun
    • Journal of the Korean Institute of Gas
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    • v.20 no.4
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    • pp.58-64
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    • 2016
  • The main engine of a vehicle is used an common rail diesel engine for improving the efficiency of the whole load area. However, the generator engines is still used mechanical fuel injection valve drive cams. In addition, most of generator engines is applied a part-load operation of less than 50%. Therefore, diesel engine of vehicle set at 100% load is necessary to readjust in order to perform efficient operation because of part-load operation. In this study, the objective is to report the results of the part-load fuel consumption improvement by injection timing readjust to identify the operational characteristics of a generator engine currently operated in the facilities.