[국내논문]무효전력보상장치 설치가 900 MW 복합화력발전소의 성능향상에 미치는 효과 Effect of the Reactive Power Compensation System on Performance Enhancement in a 900 MW Combined Cycle Power Plant원문보기
900 MW 복합화력발전소의 경우 소내 부하의 대부분은 회전기기이며 저역률로 운전되고 있고 역률 저하는 무효전력을 증가시켜 기기의 효율 저하 및 불필요한 소내 전력을 소비하는 원인이 된다. 본 연구에서는 이러한 문제점을 해결할 수 있는 방안인 무효전력을 흡수 및 제거하는 무효전력보상장치를 6.9 kV 소내 모선에 설치하여 운전함으로써 그에 대한 결과를 제시하고자 한다. 본 시스템의 적용 결과 우선 회전기기의 역률이 0.22로 개선 및 소내 부하전력량 1.4% 감소됨을 확인하였고 발전기 열효율 0.1%, 발전출력810 kW 증가함을 알 수 있었다. 다음으로 투자비 1.5억 원 대비 소내 전력손실비용 2억 원/년 감소 및 매출액 10억 원/년 증가로 경제성 있음으로 분석되었고 향후 건설 및 운영 시 비용절감이 가능함을 확인하였다.
900 MW 복합화력발전소의 경우 소내 부하의 대부분은 회전기기이며 저역률로 운전되고 있고 역률 저하는 무효전력을 증가시켜 기기의 효율 저하 및 불필요한 소내 전력을 소비하는 원인이 된다. 본 연구에서는 이러한 문제점을 해결할 수 있는 방안인 무효전력을 흡수 및 제거하는 무효전력보상장치를 6.9 kV 소내 모선에 설치하여 운전함으로써 그에 대한 결과를 제시하고자 한다. 본 시스템의 적용 결과 우선 회전기기의 역률이 0.22로 개선 및 소내 부하전력량 1.4% 감소됨을 확인하였고 발전기 열효율 0.1%, 발전출력810 kW 증가함을 알 수 있었다. 다음으로 투자비 1.5억 원 대비 소내 전력손실비용 2억 원/년 감소 및 매출액 10억 원/년 증가로 경제성 있음으로 분석되었고 향후 건설 및 운영 시 비용절감이 가능함을 확인하였다.
In the case of a 900 MW combined cycle power plant, most of the load on the site is a rotating device and is operated at a low power factor, and the power factor decrease increases the reactive power, which causes the efficiency of the device to be consumed and unnecessary unnecessary power consumpt...
In the case of a 900 MW combined cycle power plant, most of the load on the site is a rotating device and is operated at a low power factor, and the power factor decrease increases the reactive power, which causes the efficiency of the device to be consumed and unnecessary unnecessary power consumption. This study intends to present the results by installing and operating a reactive power compensation device that absorbs and removes reactive power, which is a solution to this problem, on a 6.9 kV on-board bus. As a result of application of this system, first, it was confirmed that the power factor of the rotating machine was improved to 0.22 and the load power in the house was reduced by 1.4%, and the thermal efficiency of the generator was increased by 0.1% and the power generation power by 810 kW. Next, it was confirmed that the cost of construction and operation can be reduced in the future due to economic feasibility, with a decrease of 200 million won/year in electricity loss compared to 1.5 billion won in investment, an increase of 1 billion won/year in sales, and a one-year capital recovery period.
In the case of a 900 MW combined cycle power plant, most of the load on the site is a rotating device and is operated at a low power factor, and the power factor decrease increases the reactive power, which causes the efficiency of the device to be consumed and unnecessary unnecessary power consumption. This study intends to present the results by installing and operating a reactive power compensation device that absorbs and removes reactive power, which is a solution to this problem, on a 6.9 kV on-board bus. As a result of application of this system, first, it was confirmed that the power factor of the rotating machine was improved to 0.22 and the load power in the house was reduced by 1.4%, and the thermal efficiency of the generator was increased by 0.1% and the power generation power by 810 kW. Next, it was confirmed that the cost of construction and operation can be reduced in the future due to economic feasibility, with a decrease of 200 million won/year in electricity loss compared to 1.5 billion won in investment, an increase of 1 billion won/year in sales, and a one-year capital recovery period.
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