KR20210059488A - Lubricant piping cleaning system for turbine generator - Google Patents

Lubricant piping cleaning system for turbine generator Download PDF

Info

Publication number
KR20210059488A
KR20210059488A KR1020190146993A KR20190146993A KR20210059488A KR 20210059488 A KR20210059488 A KR 20210059488A KR 1020190146993 A KR1020190146993 A KR 1020190146993A KR 20190146993 A KR20190146993 A KR 20190146993A KR 20210059488 A KR20210059488 A KR 20210059488A
Authority
KR
South Korea
Prior art keywords
lubricating oil
lubricant
supply
pipe
cleaning
Prior art date
Application number
KR1020190146993A
Other languages
Korean (ko)
Other versions
KR102295638B1 (en
Inventor
박종덕
유재몽
권재석
Original Assignee
한국중부발전(주)
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 한국중부발전(주) filed Critical 한국중부발전(주)
Priority to KR1020190146993A priority Critical patent/KR102295638B1/en
Publication of KR20210059488A publication Critical patent/KR20210059488A/en
Application granted granted Critical
Publication of KR102295638B1 publication Critical patent/KR102295638B1/en

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto 
    • B08B9/02Cleaning pipes or tubes or systems of pipes or tubes
    • B08B9/027Cleaning the internal surfaces; Removal of blockages
    • B08B9/032Cleaning the internal surfaces; Removal of blockages by the mechanical action of a moving fluid, e.g. by flushing
    • B08B9/0321Cleaning the internal surfaces; Removal of blockages by the mechanical action of a moving fluid, e.g. by flushing using pressurised, pulsating or purging fluid
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/04Cleaning involving contact with liquid
    • B08B3/08Cleaning involving contact with liquid the liquid having chemical or dissolving effect
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01DNON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
    • F01D15/00Adaptations of machines or engines for special use; Combinations of engines with devices driven thereby
    • F01D15/10Adaptations for driving, or combinations with, electric generators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01DNON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
    • F01D25/00Component parts, details, or accessories, not provided for in, or of interest apart from, other groups
    • F01D25/002Cleaning of turbomachines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01DNON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
    • F01D25/00Component parts, details, or accessories, not provided for in, or of interest apart from, other groups
    • F01D25/18Lubricating arrangements

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)

Abstract

According to the present invention, a lubricating oil pipe cleaning system of a turbine generator comprises: a lubricating oil supply pipe (10) extending adjacent to a turbine generator (1) from a lubricating oil device (3) and receiving lubricating oil from the lubricating oil device (3); a lubricating oil supply pump (20) for controlling an amount and pressure of lubricating oil supplied from the lubricating oil device (3); a lubricating oil recovery pipe (30) for recovering used lubricating oil while enclosing the lubricating oil supply pipe (10) and supplying the recovered lubricating oil to the lubricating oil device (3); a lubricating oil supply distribution line (40) connected to the lubricating oil supply pipe (10) and a lubricating oil supply source (2) of the turbine generator (1) to provide lubricating oil supplied to the lubricating oil supply pipe (10); a lubricating oil recovery line (50) for providing the used lubricating oil discharged from the lubricating oil supply source (2) of the turbine generator (1) to the lubricating oil recovery pipe (30); a cleaning lubricating oil supply line (60) branched from the lubricating oil supply distribution line (40) and extended to the lubricating oil recovery pipe (30) to provide lubricating oil to the lubricating oil recovery pipe (30) during cleaning; a first opening/closing valve (70) installed in the lubricating oil supply distribution line (40) to be open or closed so that the supplied lubricating oil is supplied to or blocked from the lubricating oil supply source (2) of the turbine generator (1); and a second opening/closing valve (80) installed in the cleaning lubricating oil supply line (60) to be open or closed so that the lubricating oil is supplied to or blocked from the lubricating oil recovery pipe (30).

Description

터빈발전기의 윤활유 배관 세정시스템{Lubricant piping cleaning system for turbine generator}Lubricant piping cleaning system for turbine generator

본 발명은 터빈발전기 윤활유 계통에 설치된 배관내부 세정작업을 신속하고 안전하게 수행하기 위한 터빈발전기의 윤활유 배관 세정시스템에 관한 것이다.The present invention relates to a lubricating oil piping cleaning system of a turbine generator for quickly and safely performing an internal piping cleaning operation installed in a lubricating oil system of a turbine generator.

터빈발전기의 윤활장치는 터빈 및 발전기 축이 회전할 때 베어링 및 기타 부위에 적당한 압력과 온도로 윤활유를 공급하여, 감마(減磨), 냉각, 밀봉(수소), 응력 분산, 방청, 청정 작용을 하는 장치이다. 터빈 및 발전기의 축은 고속 회전체이므로 적절한 윤활장치가 없으면 베어링과 축의 금속 마찰에 의하여 큰 손상을 초래한다. 따라서 충분한 보호장치가 필요하며, 터빈 정지시에도 축냉각을 위하여 윤활유를 계속 순환시킨다. The lubricating device of a turbine generator supplies lubricating oil to bearings and other parts at an appropriate pressure and temperature when the turbine and generator shaft rotates, providing gamma, cooling, sealing (hydrogen), stress distribution, rust prevention, and cleaning. It is a device to do. Since the shaft of the turbine and the generator is a high-speed rotating body, if there is no proper lubrication device, it causes great damage by metal friction between the bearing and the shaft. Therefore, a sufficient protection device is required, and the lubricating oil is continuously circulated for cooling the shaft even when the turbine is stopped.

발전소 건설현장에서 터빈발전기 윤활유계통 세정작업은 기기의 안전한 운전을 위해 섬세하게 완료되어야 하는 공정으로 지금까지의 세정방법은 오래전부터 사용된 방법이나 소요기간이 길어 이 기간을 단축하기 위한 여러 가지 방안이 시행되었으나 성공 사례는 거의 없다. 특히 국내최초로 건설되는 1,000MW급 발전소의 경우 기기의 규모가 기존설비 대비 2배가량 증대되어 기존의 세정방법으로는 건설공정이 길어질 수밖에 없어 이에 대한 대책이 필요하다. Turbine generator lubricating oil system cleaning work at the power plant construction site is a process that must be carefully completed for the safe operation of the device. Although implemented, there are few success stories. In particular, in the case of a 1,000MW-class power plant built for the first time in Korea, the scale of the equipment is doubled compared to the existing facilities, and the construction process is inevitably lengthened with the existing cleaning method, so countermeasures are necessary.

윤활유 배관의 세정은 터빈발전기 설치중 윤활유 및 밀봉유 계통 배관의 운송, 현장보관 및 설치 과정에서 잔류된 Mud, 용접scale, 쇳가루 등 불순물을 최초 운전 전에 완전히 제거하여 터빈 베어링 및 Sliding부의 손상과 마모를 방지하여 기기의 안전운전 및 수명연장을 위해 시행하는 중요한 과정이다. Lubricating oil pipe cleaning completely removes impurities such as mud, welding scale, iron powder, etc., which remain during transportation of the lubrication oil and sealing oil system pipes during turbine generator installation, on-site storage and installation, before the first operation, thereby preventing damage and abrasion of turbine bearings and sliding parts. This is an important process that is carried out for safe operation and life extension of the device by preventing it.

기존의 터빈 윤활유배관 세정방법은 윤활유펌프 운전에 의한 정상적인 윤활유 흐름에 의해 배관내부를 세정하는 방식으로 진행되어 왔으며, 최근 윤활유세정 전 에어브로잉으로 배관내부 이물질을 사전제거 하는 방법으로 세정기간 단축을 시도하였으나 효과는 미미하며, 또 하나의 방법은 배관내부에 부착된 이물질을 신속히 제거하기 위해 윤활유배관을 외부에서 타격하는 방법(햄머링)으로 이 또한 효과는 제한되어 있다. Conventional turbine lubricating oil piping cleaning methods have been carried out by cleaning the inside of the piping by the normal flow of lubricating oil by the operation of the lubricating oil pump, and recently, the cleaning period is shortened by removing foreign substances inside the piping with air blowing before cleaning the lubricating oil. Although attempted, the effect is insignificant, and another method is a method of hitting the lubricating oil pipe from the outside in order to quickly remove foreign substances adhering to the inside of the pipe (hammering), which also has a limited effect.

등록특허 제10-0891841호(2009.03.27.)Registered Patent No. 10-0891841 (2009.03.27.)

본 발명은 터빈발전기 윤활유 계통에 설치된 배관내부 세정작업을 신속하고 안전하게 수행하기 위한 터빈발전기의 윤활유 배관 세정시스템을 제공하는 데 있다.An object of the present invention is to provide a system for cleaning a lubricating oil pipe of a turbine generator to quickly and safely perform a cleaning work inside a pipe installed in a lubricating oil system of a turbine generator.

본 발명에 따른 터빈발전기의 윤활유 배관 세정시스템은, 윤활유장치(3)에 연결되고 터빈발전기(1)에 인접하게 연장되어 있으며 윤활유장치(3)로부터 저장된 윤활유를 공급받는 윤활유공급배관(10)과; 윤활유장치(3)로부터 윤활유공급배관(10)으로 공급되는 윤활유의 량과 압력을 조절하는 윤활유공급펌프(20)와; 윤활유공급배관(10)을 감싸면서 사용윤활유를 회수하여 윤활유장치(3)로 공급하는 윤활유회수배관(30)과; 윤활유공급배관(10)과 터빈발전기(1)의 윤활유 공급처(2)에 연결되어 윤활유공급배관(10)의 윤활유를 윤활유 공급처(2)로 제공하는 윤활유공급분배라인(40)과; 터빈발전기(1)의 윤활유 공급처(2)와 윤활유회수배관(30)에 연결되어 배출되는 사용윤활유를 윤활유회수배관(30)으로 제공하는 윤활유회수라인(50)과; 윤활유공급분배라인(40)에서 분기되어 윤활유회수배관(30)의 끝단으로 연장되어 있으며 윤활유회수배관(30)의 세정시에 윤활유를 윤활유회수배관(30)으로 제공하는 세정윤활유공급라인(60)과; 윤활유공급분배라인(40)에 설치되어 윤활유공급배관(10)으로부터 공급되는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되거나 차단되도록 개폐하는 제1개폐밸브(70)와; 세정윤활유공급라인(60)에 설치되어 공급되는 윤활유공급분배라인(40)으로 공급된 윤활유가 윤활유회수배관(30)으로 공급되거나 차단되도록 개폐하는 제2개폐밸브(80);를 포함하는 것을 특징으로 한다. The lubricant oil pipe cleaning system of a turbine generator according to the present invention includes a lubricant supply pipe 10 connected to the lubricant oil device 3 and extending adjacent to the turbine generator 1 and receiving the stored lubricant from the lubricant oil device 3. ; A lubricating oil supply pump 20 for adjusting the amount and pressure of lubricating oil supplied from the lubricating oil device 3 to the lubricating oil supply pipe 10; A lubricating oil recovery pipe (30) surrounding the lubricating oil supply pipe (10) and supplying the used lubricating oil to the lubricating oil device (3); A lubricating oil supply distribution line 40 connected to the lubricating oil supply pipe 10 and the lubricating oil supply 2 of the turbine generator 1 to supply the lubricating oil of the lubricating oil supply pipe 10 to the lubricating oil supply 2; A lubricating oil recovery line 50 connected to the lubricating oil supply source 2 of the turbine generator 1 and the lubricating oil recovery pipe 30 to provide the used lubricating oil discharged to the lubricating oil recovery pipe 30; A cleaning lubricant supply line 60 that branches off from the lubricant supply distribution line 40 and extends to the end of the lubricant oil recovery pipe 30 and provides lubricant to the lubricant oil recovery pipe 30 when the lubricant oil recovery pipe 30 is cleaned. and; A first opening/closing valve 70 installed in the lubricant supply distribution line 40 to open and close the lubricant supplied from the lubricant supply pipe 10 to the lubricant supply destination 2 of the turbine generator 1 or shut off; And a second opening/closing valve 80 that opens and closes so that the lubricant supplied to the lubricant supply distribution line 40 installed and supplied to the cleaning lubricant supply line 60 is supplied to the lubricant oil recovery pipe 30 or is shut off. It is done.

바람직하게, 정상상태에서는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되고, 세정시에는 윤활유가 윤활유회수배관(30)으로 공급되도록 제1개폐밸브(70)와 제2개폐밸브(80) 및 윤활유공급펌프(20)의 작동을 제어하는 제어부재(90);를 더 포함하는 것을 특징으로 한다. Preferably, in the normal state, the lubricating oil is supplied to the lubricating oil supply destination 2 of the turbine generator 1, and during cleaning, the first opening/closing valve 70 and the second opening/closing valve ( It characterized in that it further comprises a; 80) and a control member 90 for controlling the operation of the lubricating oil supply pump (20).

바람직하게, 윤활유회수배관(30)에는 윤활유공급분배라인(40)이 관통하는 관통공(31)이 형성되고, 윤활유회수라인(50)이 연결되는 회수공(32)이 형성되며, 윤활유공급분배라인(40)은 윤활유회수배관(30)의 관통공(31)을 통해서 윤활유회수배관(30)의 외부로 연장되면서 터빈발전기(1)의 윤활유 공급처(2)에 연결되고, 윤활유회수라인(50)의 끝단은 윤활유회수배관(30)의 회수공(32)에 연결되며, 세정윤활유공급라인(60)은 일단이 윤활유회수배관(30)의 외부에 위치하는 윤활유공급분배라인(40)에 연결되고 타단이 윤활유회수배관(30)의 끝단에 형성된 회수공(32)에 연결된 것을 특징으로 한다.Preferably, a through hole 31 through which the lubricating oil supply and distribution line 40 passes is formed in the lubricating oil recovery pipe 30, a recovery hole 32 to which the lubricating oil recovery line 50 is connected is formed, and the lubricating oil supply distribution The line 40 extends to the outside of the lubricant oil recovery pipe 30 through the through hole 31 of the lubricant oil recovery pipe 30 and is connected to the lubricant oil supply destination 2 of the turbine generator 1, and is connected to the lubricant oil recovery line 50 The end of) is connected to the recovery hole 32 of the lubricating oil recovery pipe 30, and the cleaning lubricant supply line 60 is connected to the lubricating oil supply distribution line 40 at one end located outside the lubricating oil recovery pipe 30. It is characterized in that the other end is connected to the recovery hole 32 formed at the end of the lubricant oil recovery pipe (30).

바람직하게, 제1개폐밸브(70)는 윤활유공급분배라인(40)에서 세정윤활유공급라인(60)이 분기된 경우에 분기된 이후의 윤활유공급분배라인(40)에 설치된 것을 특징으로 한다. Preferably, the first opening/closing valve 70 is characterized in that it is installed in the lubricant supply distribution line 40 after branching when the cleaning lubricant supply line 60 is branched from the lubricant supply distribution line 40.

바람직하게, 제어부재(90)는 정상상태에서는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되도록 정상신호를 발생시키고, 윤활유회수배관(30)의 세정시에 세정신호를 발생시키는 회수배관 세정관리부(91)와; 회수배관 세정관리부(91)로부터 정상신호가 수신되면 윤활유공급배관(10)의 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되도록 윤활유공급분배라인(40)의 제1개폐밸브(70)를 open시키고, 세정신호가 수신되면 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되지 않도록 윤활유공급분배라인(40)의 제1개폐밸브(70)를 close시키는 제1개폐밸브 조절부(92)와; 회수배관 세정관리부(91)로부터 정상신호가 수신되면 윤활유공급분배라인(40)의 윤활유가 윤활유회수배관(30)으로 공급되지 않도록 세정윤활유공급라인(60)의 제2개폐밸브(80)를 close시키고, 세정신호가 수신되면 윤활유공급분배라인(40)의 윤활유가 윤활유회수배관(30)으로 공급되도록 세정윤활유공급라인(60)의 제2개폐밸브(80)를 open시키는 제2개폐밸브 조절부(93)와; 회수배관 세정관리부(91)로부터 세정신호가 수신되면 윤활유공급펌프(20)의 윤활유공급량이 윤활유회수배관(30)을 채울 수 있도록 다량으로 공급되도록 제어하고, 정상신호가 수신되면 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 제공되도록 공급량을 제어하는 윤활유공급펌프 조절부(94);를 포함하는 것을 특징으로 한다.Preferably, the control member 90 generates a normal signal so that the lubricating oil is supplied to the lubricating oil supply destination 2 of the turbine generator 1 in a normal state, and generates a cleaning signal when the lubricating oil recovery pipe 30 is cleaned. A pipe cleaning management unit 91; When a normal signal is received from the recovery pipe cleaning management unit 91, the first opening/closing valve of the lubricating oil supply distribution line 40 so that the lubricating oil in the lubricating oil supply pipe 10 is supplied to the lubricating oil supply destination 2 of the turbine generator 1 The first opening/closing to close the first opening/closing valve 70 of the lubricant supply distribution line 40 so that the lubricant is not supplied to the lubricant supply source 2 of the turbine generator 1 when the cleaning signal is received. A valve control unit 92; When a normal signal is received from the recovery pipe cleaning management unit 91, close the second opening/closing valve 80 of the cleaning lubricant supply line 60 so that the lubricant of the lubricant supply distribution line 40 is not supplied to the lubricant recovery pipe 30. And, when the cleaning signal is received, the second opening/closing valve control part that opens the second opening/closing valve 80 of the cleaning lubricant supply line 60 so that the lubricant oil of the lubricant supply distribution line 40 is supplied to the lubrication oil recovery pipe 30 (93) and; When a cleaning signal is received from the recovery pipe cleaning management unit 91, the lubricating oil supply amount of the lubricating oil supply pump 20 is controlled to be supplied in a large amount to fill the lubricating oil recovery pipe 30, and when a normal signal is received, the lubricating oil is supplied to the turbine generator ( It characterized in that it comprises a; a lubricant supply pump control unit 94 for controlling the supply amount so as to be provided to the lubricant supply source (2) of 1).

본 발명은 화력발전설비 중 터빈발전기 윤활유 계통에 설치된 배관내부 세정작업을 신속하고 안전하게 수행하여 윤활유세정 품질증대는 물론 세정기간을 획기적으로 단축시킬 수 있는 장점이 있다.The present invention has the advantage of improving the quality of lubricating oil cleaning as well as remarkably shortening the cleaning period by performing the internal cleaning work installed in the lubricating oil system of the turbine generator among thermal power plants quickly and safely.

또한, 윤활유공급배관에서 높은 압력의 윤활유를 직접 윤활유회수배관으로 제공하면서 회수배관 내부의 유량을 증대시켜 세정력을 극대화시킬 수 있는 장점이 있다.In addition, there is an advantage of maximizing cleaning power by increasing the flow rate inside the recovery pipe while providing high pressure lubricating oil directly from the lubricating oil supply pipe to the lubricating oil recovery pipe.

도 1은 본 발명에 따른 터빈발전기의 윤활유 배관 세정시스템의 개략도.
도 2는 본 발명에 따른 터빈발전기의 윤활유 배관 세정시스템에서 세정윤활유공급라인이 설치된 부분의 확대도.
도 3은 본 발명에 따른 제어부재의 블록도.
도 4는 발명에 따른 터빈발전기의 윤활유 배관 세정시스템을 이용하여 정상상태에서의 윤활유 흐름에 대한 개략도.
도 5는 발명에 따른 터빈발전기의 윤활유 배관 세정시스템을 이용하여 윤활유회수배관의 세정시 윤활유 흐름에 대한 개략도.
1 is a schematic diagram of a lubricating oil pipe cleaning system of a turbine generator according to the present invention.
Fig. 2 is an enlarged view of a portion in which a cleaning lubricant supply line is installed in a lubricant piping cleaning system of a turbine generator according to the present invention.
Figure 3 is a block diagram of a control member according to the present invention.
Figure 4 is a schematic diagram of the flow of lubricant in a steady state using the lubricant piping cleaning system of the turbine generator according to the present invention.
5 is a schematic diagram of the flow of lubricating oil when cleaning the lubricating oil recovery pipe using the lubricating oil pipe cleaning system of the turbine generator according to the present invention.

이하, 첨부된 도면을 참조하여 본 발명에 따른 터빈발전기의 윤활유 배관 세정시스템에 대하여 자세히 살펴본다.Hereinafter, with reference to the accompanying drawings, a detailed look at the lubricating oil pipe cleaning system of the turbine generator according to the present invention.

도시된 바와 같이, 본 발명에 따른 터빈발전기의 윤활유 배관 세정시스템은 윤활유공급배관(10), 윤활유공급펌프(20), 윤활유회수배관(30), 윤활유공급분배라인(40), 윤활유회수라인(50), 세정윤활유공급라인(60), 제1개폐밸브(70), 제2개폐밸브(80), 제어부재(90)를 포함한다.As shown, the lubricant oil pipe cleaning system of the turbine generator according to the present invention includes a lubricant supply pipe 10, a lubricant supply pump 20, a lubricant oil recovery pipe 30, a lubricant supply distribution line 40, and a lubricant oil recovery line ( 50), a cleaning lubricant supply line 60, a first opening and closing valve 70, a second opening and closing valve 80, and a control member 90.

윤활유공급배관(10)은 윤활유장치(3)에 연결되고 터빈발전기(1)에 인접하게 연장되어 있으며 윤활유장치(3)로부터 저장된 윤활유를 공급받는다.The lubricating oil supply pipe 10 is connected to the lubricating oil device 3 and extends adjacent to the turbine generator 1 and receives the stored lubricating oil from the lubricating oil device 3.

윤활유공급펌프(20)는 윤활유장치(3)에 설치되어 윤활유장치(3)로부터 윤활유공급배관(10)으로 공급되는 윤활유의 량과 압력을 조절한다. 윤활유공급펌프(20)는 윤활유회수배관(30)의 세정시에는 정상시보다 높은 압력으로 다량의 윤활유를 윤활유공급배관(10)으로 공급하게 된다.The lubricating oil supply pump 20 is installed in the lubricating oil device 3 to adjust the amount and pressure of the lubricating oil supplied from the lubricating oil device 3 to the lubricating oil supply pipe 10. The lubricant supply pump 20 supplies a large amount of lubricating oil to the lubricating oil supply pipe 10 at a higher pressure than normal when cleaning the lubricating oil recovery pipe 30.

윤활유회수배관(30)은 윤활유공급배관(10)을 감싸면서 터빈발전기(1)에 인접하게 연장되어 있으며 토출되는 사용윤활유를 회수하여 윤활유장치(3)로 공급한다. 윤활유회수배관(30)에는 윤활유공급분배라인(40)이 관통하는 관통공(31)이 형성되고, 윤활유회수라인(50)이 연결되는 회수공(32)이 형성된다. 윤활유회수배관(30)은 정상상태에서 윤활유장치(3)로 회수되는 윤활유가 1/3 정도의 높이로 흐르도록 설계된다.The lubricating oil recovery pipe 30 extends adjacent to the turbine generator 1 while surrounding the lubricating oil supply pipe 10 and recovers the discharged used lubricating oil and supplies it to the lubricating oil device 3. A through hole 31 through which the lubricating oil supply and distribution line 40 passes is formed in the lubricating oil recovery pipe 30, and a recovery hole 32 to which the lubricating oil recovery line 50 is connected is formed. The lubricating oil recovery pipe 30 is designed so that the lubricating oil recovered to the lubricating oil device 3 in a normal state flows at a height of about 1/3.

윤활유공급분배라인(40)은 윤활유공급배관(10)과 터빈발전기(1)의 윤활유 공급처(2)에 연결되어 윤활유공급배관(10)으로 공급되는 윤활유를 터빈발전기(1)의 윤활유 공급처(2)로 제공한다. 이때, 윤활유공급분배라인(40)은 윤활유회수배관(30)의 관통공(31)을 통해서 윤활유회수배관(30)의 외부로 연장되면서 터빈발전기(1)의 윤활유 공급처(2)에 연결된다. 또한, 터빈발전기(1)의 윤활유 공급처(2)가 다수개인 경우에 윤활유공급분배라인(40)도 윤활유회수배관(30)에 다수개 설치되어 윤활유를 공급하게 된다.The lubricating oil supply distribution line 40 is connected to the lubricating oil supply pipe 10 and the lubricating oil supply point 2 of the turbine generator 1 to feed the lubricating oil supplied to the lubricating oil supply pipe 10 to the lubricating oil supply point 2 of the turbine generator 1 ). At this time, the lubricating oil supply distribution line 40 extends to the outside of the lubricating oil recovery pipe 30 through the through hole 31 of the lubricating oil recovery pipe 30 and is connected to the lubricating oil supply destination 2 of the turbine generator 1. In addition, when there are a plurality of lubricant supply destinations 2 of the turbine generator 1, a plurality of lubricant supply distribution lines 40 are also installed in the lubricant oil recovery pipe 30 to supply the lubricant.

윤활유회수라인(50)은 터빈발전기(1)의 윤활유 공급처(2)와 윤활유회수배관(30)에 연결되어 배출되는 사용윤활유를 윤활유회수배관(30)으로 제공한다. 이때, 윤활유회수라인(50)의 끝단은 윤활유회수배관(30)의 회수공(32)에 연결되는 것이 바람직하다. 또한, 터빈발전기(1)의 윤활유 공급처(2)가 다수개인 경우에 윤활유회수라인(50)도 다수개 설치되어 사용윤활유를 회수하게 된다.The lubricant oil recovery line 50 is connected to the lubricant oil supply source 2 of the turbine generator 1 and the lubricant oil recovery pipe 30 to provide the used lubricant discharged to the lubricant oil recovery pipe 30. At this time, the end of the lubricant oil recovery line 50 is preferably connected to the recovery hole 32 of the lubricant oil recovery pipe (30). In addition, when there are a plurality of lubricant oil supply destinations 2 of the turbine generator 1, a plurality of lubricant oil recovery lines 50 are also installed to recover the used lubricant.

세정윤활유공급라인(60)은 윤활유공급분배라인(40)에서 분기되어 윤활유회수배관(30)의 끝단으로 연장되어 있으며 윤활유회수배관(30)의 세정시에 윤활유를 윤활유회수배관(30)으로 제공한다. 이때, 세정윤활유공급라인(60)은 일단이 윤활유회수배관(30)의 외부에 위치하는 윤활유공급분배라인(40)에 연결되고 타단이 윤활유회수배관(30)의 끝단에 형성된 회수공(32)에 연결된다. 이러한 세정윤활유공급라인(60)은 윤활유회수배관(30)의 세정시에 윤활유공급분배라인(40)으로부터 윤활유를 제공받아 윤활유회수배관(30)으로 제공하여 세정시 윤활유장치회수배관(30) 내부에 윤활유를 꽉 채워 흐르게 한다.The cleaning lubricant supply line 60 diverges from the lubricant supply distribution line 40 and extends to the end of the lubricant oil recovery pipe 30, and provides lubricant to the lubricant oil recovery pipe 30 when cleaning the lubricant oil recovery pipe 30. do. At this time, the cleaning lubricant supply line 60 has one end connected to the lubricant supply distribution line 40 located outside the lubricant oil recovery pipe 30, and the other end is a recovery hole 32 formed at the end of the lubricant oil recovery pipe 30 Is connected to The cleaning lubricant supply line 60 receives lubricant from the lubricant supply distribution line 40 when cleaning the lubricant oil recovery pipe 30 and provides it to the lubricant oil recovery pipe 30 so that the inside of the lubricant oil device recovery pipe 30 during cleaning. Fill up the lubricant to allow it to flow.

제1개폐밸브(70)는 윤활유공급분배라인(40)에 설치되어 윤활유공급배관(10)으로부터 공급되는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되거나 차단되도록 개폐된다. 이때, 제1개폐밸브(70)는 윤활유공급분배라인(40)에서 세정윤활유공급라인(60)이 분기된 경우에 분기된 이후의 윤활유공급분배라인(40)에 설치된다. 이러한 제1개폐밸브(70)는 정상상태에서는 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되도록 open되고, 윤활유회수배관(30)의 세정시에 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되지 않도록 close된다.The first opening/closing valve 70 is installed in the lubricating oil supply distribution line 40 and is opened and closed so that the lubricating oil supplied from the lubricating oil supply pipe 10 is supplied to the lubricating oil supply destination 2 of the turbine generator 1 or blocked. At this time, the first opening/closing valve 70 is installed in the lubricant supply distribution line 40 after branching when the cleaning lubricant supply line 60 is branched from the lubricant supply distribution line 40. The first opening/closing valve 70 is opened to supply lubricant to the lubricant supply source 2 of the turbine generator 1 in a normal state, and when the lubricant oil recovery pipe 30 is cleaned, the lubricant supply source of the turbine generator 1 ( It is closed so that no lubricant is supplied to 2).

제2개폐밸브(80)는 세정윤활유공급라인(60)에 설치되어 공급되는 윤활유공급분배라인(40)으로 공급된 윤활유가 윤활유회수배관(30)으로 공급되거나 차단되도록 개폐된다. 이러한 제2개폐밸브(80)는 정상상태에서는 윤활유회수배관(30)으로 윤활유가 공급되지 않도록 close되고, 윤활유회수배관(30)의 세정시에 윤활유회수배관(30)으로 윤활유가 공급되도록 open된다.The second opening/closing valve 80 is installed in the cleaning lubricant supply line 60 and opened and closed so that the lubricant supplied to the supplied lubricant supply distribution line 40 is supplied to the lubricant oil recovery pipe 30 or blocked. This second opening/closing valve 80 is closed so that lubricant is not supplied to the lubricant oil recovery pipe 30 in a normal state, and is opened so that the lubricant is supplied to the lubricant oil recovery pipe 30 when the lubricant oil recovery pipe 30 is cleaned. .

제어부재(90)는 정상상태에서는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되고, 세정시에는 윤활유가 윤활유회수배관(30)으로 공급되도록 제1개폐밸브(70)와 제2개폐밸브(80) 및 윤활유공급펌프(20)의 작동을 조절한다. The control member 90 includes a first opening/closing valve 70 and a second valve so that the lubricant is supplied to the lubricant oil supply destination 2 of the turbine generator 1 in the normal state, and the lubricant is supplied to the lubricant oil recovery pipe 30 during cleaning. It controls the operation of the on-off valve 80 and the lubricating oil supply pump 20.

회수배관 세정관리부(91)는 정상상태에서는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되도록 정상신호를 발생시키고, 윤활유회수배관(30)의 세정시에 세정신호를 발생시킨다.The recovery pipe cleaning management unit 91 generates a normal signal so that the lubricating oil is supplied to the lubricating oil supply destination 2 of the turbine generator 1 in a normal state, and generates a cleaning signal when the lubricating oil recovery pipe 30 is cleaned.

제1개폐밸브 조절부(92)는 회수배관 세정관리부(91)에서 발생된 신호에 따라 제1개폐밸브(70)가 open되거나 또는 close되도록 관리한다. 회수배관 세정관리부(91)로부터 정상신호가 수신되면 윤활유공급배관(10)의 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되도록 윤활유공급분배라인(40)의 제1개폐밸브(70)를 open시키고, 세정신호가 수신되면 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되지 않도록 윤활유공급분배라인(40)의 제1개폐밸브(70)를 close시키게 된다.The first opening/closing valve control unit 92 manages to open or close the first opening/closing valve 70 according to a signal generated from the recovery pipe cleaning management unit 91. When a normal signal is received from the recovery pipe cleaning management unit 91, the first opening/closing valve of the lubricating oil supply distribution line 40 so that the lubricating oil in the lubricating oil supply pipe 10 is supplied to the lubricating oil supply destination 2 of the turbine generator 1 When (70) is opened and a cleaning signal is received, the first open/close valve (70) of the lubricant supply distribution line (40) is closed so that the lubricant is not supplied to the lubricant supply source (2) of the turbine generator (1).

제2개폐밸브 조절부(93)는 회수배관 세정관리부(91)의 신호에 따라 제2개폐밸브(80)가 open되거나 또는 close되도록 관리한다. 제2개폐밸브 조절부(93)는 회수배관 세정관리부(91)로부터 정상신호가 수신되면 윤활유공급분배라인(40)의 윤활유가 윤활유회수배관(30)으로 공급되지 않도록 세정윤활유공급라인(60)의 제2개폐밸브(80)를 close시키고, 세정신호가 수신되면 윤활유공급분배라인(40)의 윤활유가 윤활유회수배관(30)으로 공급되도록 세정윤활유공급라인(60)의 제2개폐밸브(80)를 open시키게 된다.The second opening/closing valve control unit 93 manages to open or close the second opening/closing valve 80 according to a signal from the recovery pipe cleaning management unit 91. When a normal signal is received from the recovery pipe cleaning management unit 91, the second opening/closing valve control unit 93 prevents the lubricating oil of the lubricating oil supply distribution line 40 from being supplied to the lubricating oil recovery pipe 30. The second opening/closing valve 80 of the cleaning lubricant supply line 60 is closed so that the lubricant of the lubricant supply distribution line 40 is supplied to the lubricant recovery pipe 30 when the cleaning signal is received. ) Is opened.

윤활유공급펌프 조절부(94)는 회수배관 세정관리부(91)의 신호에 따라 윤활유공급펌프(20)의 작동을 조절한다. 윤활유공급펌프 조절부(94)는 회수배관 세정관리부(91)로부터 세정신호가 수신되면 윤활유공급펌프(20)의 윤활유공급량이 윤활유회수배관(30)을 채울 수 있도록 다량으로 공급되도록 제어하고, 정상신호가 수신되면 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 제공되도록 공급량을 낮추게 제어한다.The lubricating oil supply pump control unit 94 controls the operation of the lubricating oil supply pump 20 according to a signal from the recovery pipe cleaning management unit 91. When a cleaning signal is received from the recovery pipe cleaning management unit 91, the lubricating oil supply pump control unit 94 controls the supply amount of lubricating oil from the lubricating oil supply pump 20 to fill the lubricating oil recovery pipe 30 so that a large amount is supplied. When a signal is received, the supply amount is controlled to be lowered so that the lubricating oil is supplied to the lubricating oil supply source 2 of the turbine generator 1.

이와 같은 본 발명에 따른 터빈발전기의 윤활유 배관 세정시스템을 이용한 윤활유공급과정에 대하여 살펴본다.A lubricating oil supply process using the lubricating oil piping cleaning system of the turbine generator according to the present invention will be described.

<터빈발전기로 윤활유 공급시><When lubricating oil is supplied to the turbine generator>

터빈발전기(1)로 윤활유를 정상적으로 공급하기 위하여 터빈발전기(1)의 윤활유 공급처(2)에 연결된 윤활유공급분배라인(40)으로 윤활유가 공급되도록 제1개폐밸브(70)가 open되고 윤활유회수배관(30)으로 윤활유가 공급되지 않도록 제2개폐밸브(80)가 close된다. 이에 따라 윤활유의 공급경로가 윤활유장치(3)->윤활유공급배관(10)->윤활유공급분배라인(40)->터빈발전기의 윤활유 공급처(2)->윤활유회수라인(50)->윤활유회수배관(30)->윤활유장치(3)로 설정된다.In order to normally supply the lubricant to the turbine generator (1), the first open/close valve (70) is opened so that the lubricant is supplied to the lubricant supply distribution line (40) connected to the lubricant supply source (2) of the turbine generator (1), and the lubricant oil recovery pipe The second opening/closing valve 80 is closed so that lubricating oil is not supplied to (30). Accordingly, the supply path of lubricating oil is lubricating oil device (3) -> lubricating oil supply pipe (10) -> lubricating oil supply distribution line (40) -> lubricating oil supply source of the turbine generator (2) -> lubricating oil recovery line (50) -> lubricating oil It is set as the recovery pipe 30 -> lubricating oil device 3.

그리고, 윤활유공급펌프(20)는 윤활유장치(3)의 공급부를 통해 윤활유를 터빈발전기(1)의 윤활유 공급처(2)에 알맞은 공급량과 압력으로 윤활유공급배관(10)으로 공급한다. 윤활유공급배관(10)으로 공급되는 윤활유는 분기된 윤활유공급분배라인(40)을 통해서 터빈발전기(1)의 윤활유 공급처(2)로 제공된다.In addition, the lubricating oil supply pump 20 supplies the lubricating oil to the lubricating oil supply destination 2 of the turbine generator 1 to the lubricating oil supply pipe 10 at an appropriate supply amount and pressure through the supply part of the lubricating oil device 3. The lubricating oil supplied to the lubricating oil supply pipe 10 is provided to the lubricating oil supply destination 2 of the turbine generator 1 through the branched lubricating oil supply distribution line 40.

그리고, 터빈발전기(1)의 윤활유 공급처(2)에서 사용되어 배출되는 사용윤활유는 연결된 윤활유회수라인(50)을 거쳐 윤활유회수배관(30)으로 제공된다. 그리고, 윤활유회수배관(30)으로 모인 사용윤활유는 윤활유장치(3)의 회수부로 제공되게 된다.In addition, the used lubricating oil used and discharged from the lubricating oil supply source 2 of the turbine generator 1 is provided to the lubricating oil recovery pipe 30 through the connected lubricating oil recovery line 50. And, the used lubricant collected in the lubricant oil recovery pipe 30 is provided to the recovery portion of the lubricant oil device (3).

<윤활유회수배관의 세정시><When cleaning the lubricating oil recovery pipe>

윤활유회수배관(30)을 세정하는 경우에 터빈발전기(1)의 윤활유 공급처(2)에 연결된 윤활유공급분배라인(40)에 설치된 제1개폐밸브(70)가 close되고 윤활유회수배관(30)으로 윤활유가 공급되도록 제2개폐밸브(80)가 open된다. 이에 따라 윤활유의 공급경로가 윤활유장치(3)->윤활유공급배관(10)->윤활유공급분배라인(40)->세정윤활유공급라인(60)->윤활유회수배관(30)->윤활유장치(3)로 설정된다.In the case of cleaning the lubricant oil recovery pipe 30, the first open/close valve 70 installed in the lubricant supply distribution line 40 connected to the lubricant supply source 2 of the turbine generator 1 is closed, and the lubricant return pipe 30 is used. The second opening/closing valve 80 is opened so that lubricating oil is supplied. Accordingly, the supply path of the lubricating oil is lubricating oil device (3) -> lubricating oil supply pipe (10) -> lubricating oil supply distribution line (40) -> cleaning lubricating oil supply line (60) -> lubricating oil recovery pipe (30) -> lubricating oil device It is set to (3).

그리고, 윤활유공급펌프(20)는 윤활유회수배관(30)을 세정할 수 있는 공급량 및 압력으로 윤활유장치(3)의 윤활유를 윤활유공급배관(10)으로 공급한다. 윤활유공급배관(10)으로 공급되는 윤활유는 분기된 윤활유공급분배라인(40)에 연결된 세정윤활유공급라인(60)을 통해서 윤활유회수배관(30)으로 제공된다.In addition, the lubricating oil supply pump 20 supplies the lubricating oil of the lubricating oil device 3 to the lubricating oil supply pipe 10 at a supply amount and pressure capable of cleaning the lubricating oil recovery pipe 30. The lubricating oil supplied to the lubricating oil supply pipe 10 is provided to the lubricating oil recovery pipe 30 through a cleaning lubricating oil supply line 60 connected to the branched lubricating oil supply distribution line 40.

윤활유회수배관(30)으로 유입된 윤활유는 윤활유회수배관(30)을 따라 흐르면서 윤활유회수배관(30)을 세정하게 되며 윤활유장치(3)의 회수부로 제공되게 된다. 이때, 다량의 윤활유가 윤활유회수배관(30)을 채우고 강한 압력에 의해 윤활유가 빠른 속도로 흐르기 때문에 윤활유회수배관(30)이 세정되게 된다.The lubricating oil introduced into the lubricating oil recovery pipe 30 flows along the lubricating oil recovery pipe 30 to clean the lubricating oil recovery pipe 30 and is provided to the recovery part of the lubricating oil device 3. At this time, since a large amount of lubricating oil fills the lubricating oil recovery pipe 30 and the lubricating oil flows at a high speed by strong pressure, the lubricating oil recovery pipe 30 is cleaned.

이상과 같이, 본 발명은 비록 한정된 실시예와 도면에 의해 설명되었으나, 본 발명은 이것에 의해 한정되지 않으며, 본 발명이 속하는 기술분야에서 통상의 지식을 가진 자에 의해 본 발명의 기술사상과 아래에 기재될 청구범위의 균등범위 내에서 다양한 수정 및 변형이 가능함은 물론이다.As described above, although the present invention has been described by limited embodiments and drawings, the present invention is not limited thereto, and the technical idea of the present invention and the following by those of ordinary skill in the art to which the present invention pertains. It goes without saying that various modifications and variations are possible within the equivalent range of the claims to be described in.

1 : 터빈발전기 3 : 윤활유장치
10 : 윤활유공급배관 20 : 윤활유공급펌프
30 : 윤활유회수배관 40 : 윤활유공급분배라인
50 : 윤활유회수라인 60 : 세정윤활유공급라인
70 : 제1개폐밸브 80 : 제2개폐밸브
90 : 제어부재 91 : 회수배관 세정관리부
92 : 제1개폐밸브 조절부 93 : 제2개폐밸브 조절부
94 : 윤활유공급펌프 조절부
1: turbine generator 3: lubricating oil device
10: lubricating oil supply pipe 20: lubricating oil supply pump
30: lubricating oil recovery pipe 40: lubricating oil supply distribution line
50: lubricant recovery line 60: cleaning lubricant supply line
70: first opening and closing valve 80: second opening and closing valve
90: control material 91: recovery pipe cleaning management unit
92: first opening and closing valve control unit 93: second opening and closing valve control unit
94: lubricant supply pump control unit

Claims (5)

윤활유장치(3)에 연결되고 터빈발전기(1)에 인접하게 연장되어 있으며 윤활유장치(3)로부터 저장된 윤활유를 공급받는 윤활유공급배관(10)과;
윤활유장치(3)로부터 윤활유공급배관(10)으로 윤활유를 공급하는 윤활유공급펌프(20)와;
윤활유공급배관(10)을 감싸면서 사용윤활유를 회수하여 윤활유장치(3)로 공급하는 윤활유회수배관(30)과;
윤활유공급배관(10)과 터빈발전기(1)의 윤활유 공급처(2)에 연결되어 윤활유공급배관(10)으로 공급되는 윤활유를 제공하는 윤활유공급분배라인(40)과;
터빈발전기(1)의 윤활유 공급처(2)와 윤활유회수배관(30)에 연결되어 배출되는 사용윤활유를 윤활유회수배관(30)으로 제공하는 윤활유회수라인(50)과;
윤활유공급분배라인(40)에서 분기되어 윤활유회수배관(30)의 끝단으로 연장되어 있으며 윤활유회수배관(30)의 세정시에 윤활유를 윤활유회수배관(30)으로 제공하는 세정윤활유공급라인(60)과;
윤활유공급분배라인(40)에 설치되어 공급되는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되거나 차단되도록 개폐하는 제1개폐밸브(70)와;
세정윤활유공급라인(60)에 설치되어 윤활유가 윤활유회수배관(30)으로 공급되거나 차단되도록 개폐하는 제2개폐밸브(80);를 포함하는 것을 특징으로 하는 터빈발전기의 윤활유 배관 세정시스템.
A lubricating oil supply pipe 10 connected to the lubricating oil device 3 and extending adjacent to the turbine generator 1 and receiving the stored lubricating oil from the lubricating oil device 3;
A lubricating oil supply pump 20 for supplying lubricating oil from the lubricating oil device 3 to the lubricating oil supply pipe 10;
A lubricating oil recovery pipe (30) surrounding the lubricating oil supply pipe (10) and supplying the used lubricating oil to the lubricating oil device (3);
A lubricating oil supply distribution line 40 connected to the lubricating oil supply pipe 10 and the lubricating oil supply point 2 of the turbine generator 1 to provide lubricating oil supplied to the lubricating oil supply pipe 10;
A lubricating oil recovery line 50 connected to the lubricating oil supply source 2 of the turbine generator 1 and the lubricating oil recovery pipe 30 to provide the used lubricating oil discharged to the lubricating oil recovery pipe 30;
A cleaning lubricant supply line 60 that branches off from the lubricant supply distribution line 40 and extends to the end of the lubricant oil recovery pipe 30 and provides lubricant to the lubricant oil recovery pipe 30 when the lubricant oil recovery pipe 30 is cleaned. and;
A first opening/closing valve (70) installed in the lubricant supply distribution line (40) to open and close the lubricating oil supplied to the lubricating oil supply (2) of the turbine generator (1) or shut off;
A lubricant pipe cleaning system for a turbine generator, comprising: a second opening/closing valve 80 installed in the cleaning lubricant supply line 60 to open and close the lubricant to be supplied to or shut off the lubricant oil recovery pipe 30.
청구항 1에 있어서, 윤활유회수배관(30)에는 윤활유공급분배라인(40)이 관통하는 관통공(31)이 형성되고, 윤활유회수라인(50)이 연결되는 회수공(32)이 형성되며,
윤활유공급분배라인(40)은 윤활유회수배관(30)의 관통공(31)을 통해서 윤활유회수배관(30)의 외부로 연장되면서 터빈발전기(1)의 윤활유 공급처(2)에 연결되고, 윤활유회수라인(50)의 끝단은 윤활유회수배관(30)의 회수공(32)에 연결되며, 세정윤활유공급라인(60)은 일단이 윤활유회수배관(30)의 외부에 위치하는 윤활유공급분배라인(40)에 연결되고 타단이 윤활유회수배관(30)의 끝단에 형성된 회수공(32)에 연결된 것을 특징으로 하는 터빈발전기의 윤활유 배관 세정시스템.
The method according to claim 1, wherein the lubricant oil recovery pipe 30 has a through hole 31 through which the lubricant supply and distribution line 40 passes, and a recovery hole 32 to which the lubricant oil recovery line 50 is connected is formed,
The lubricating oil supply distribution line 40 extends to the outside of the lubricating oil recovery pipe 30 through the through hole 31 of the lubricating oil recovery pipe 30 and is connected to the lubricating oil supply destination 2 of the turbine generator 1, and lubricating oil recovery The end of the line 50 is connected to the recovery hole 32 of the lubricating oil recovery pipe 30, and the cleaning lubricating oil supply line 60 has one end of the lubricating oil supply distribution line 40 located outside the lubricating oil recovery pipe 30. ) And the other end is connected to a recovery hole 32 formed at an end of the lubricant oil recovery pipe 30.
청구항 1에 있어서, 제1개폐밸브(70)는 윤활유공급분배라인(40)에서 세정윤활유공급라인(60)이 분기된 경우에 분기된 이후의 윤활유공급분배라인(40)에 설치된 것을 특징으로 하는 터빈발전기의 윤활유 배관 세정시스템.
The method according to claim 1, characterized in that the first open/close valve 70 is installed in the lubricant supply distribution line 40 after branching when the cleaning lubricant supply line 60 is branched from the lubricant supply distribution line 40. Lubricating oil piping cleaning system of turbine generator.
청구항 1에 있어서, 정상상태에서는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되고, 세정시에는 윤활유가 윤활유회수배관(30)으로 공급되도록 제1개폐밸브(70)와 제2개폐밸브(80) 및 윤활유공급펌프(20)의 작동을 제어하는 제어부재(90);를 더 포함하는 것을 특징으로 하는 터빈발전기의 윤활유 배관 세정시스템. The method according to claim 1, wherein the lubricating oil is supplied to the lubricating oil supply destination (2) of the turbine generator (1) in a normal state, and during cleaning, the first opening/closing valve (70) and the second opening/closing so that the lubricating oil is supplied to the lubricating oil recovery pipe (30). A control member (90) for controlling the operation of the valve (80) and the lubricating oil supply pump (20); a lubricating oil pipe cleaning system of a turbine generator, characterized in that it further comprises. 청구항 4에 있어서, 제어부재(90)는 정상상태에서는 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 공급되도록 정상신호를 발생시키고, 윤활유회수배관(30)의 세정시에 세정신호를 발생시키는 회수배관 세정관리부(91)와;
회수배관 세정관리부(91)로부터 정상신호가 수신되면 윤활유공급배관(10)의 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되도록 윤활유공급분배라인(40)의 제1개폐밸브(70)를 open시키고, 세정신호가 수신되면 터빈발전기(1)의 윤활유 공급처(2)로 윤활유가 공급되지 않도록 윤활유공급분배라인(40)의 제1개폐밸브(70)를 close시키는 제1개폐밸브 조절부(92)와;
회수배관 세정관리부(91)로부터 정상신호가 수신되면 윤활유공급분배라인(40)의 윤활유가 윤활유회수배관(30)으로 공급되지 않도록 세정윤활유공급라인(60)의 제2개폐밸브(80)를 close시키고, 세정신호가 수신되면 윤활유공급분배라인(40)의 윤활유가 윤활유회수배관(30)으로 공급되도록 세정윤활유공급라인(60)의 제2개폐밸브(80)를 open시키는 제2개폐밸브 조절부(93)와;
회수배관 세정관리부(91)로부터 세정신호가 수신되면 윤활유공급펌프(20)의 윤활유공급량이 윤활유회수배관(30)을 채울 수 있도록 다량으로 공급되도록 제어하고, 정상신호가 수신되면 윤활유가 터빈발전기(1)의 윤활유 공급처(2)로 제공되도록 공급량을 제어하는 윤활유공급펌프 조절부(94);를 포함하는 것을 특징으로 하는 터빈발전기의 윤활유 배관 세정시스템.
The method according to claim 4, wherein the control member 90 generates a normal signal so that the lubricating oil is supplied to the lubricating oil supply destination 2 of the turbine generator 1 in a normal state, and generates a cleaning signal when the lubricating oil recovery pipe 30 is cleaned. A collection pipe cleaning management unit 91 to be used;
When a normal signal is received from the recovery pipe cleaning management unit 91, the first opening/closing valve of the lubricating oil supply distribution line 40 so that the lubricating oil in the lubricating oil supply pipe 10 is supplied to the lubricating oil supply destination 2 of the turbine generator 1 The first opening/closing to close the first opening/closing valve 70 of the lubricant supply distribution line 40 so that the lubricant is not supplied to the lubricant supply source 2 of the turbine generator 1 when the cleaning signal is received. A valve control unit 92;
When a normal signal is received from the recovery pipe cleaning management unit 91, close the second opening/closing valve 80 of the cleaning lubricant supply line 60 so that the lubricant of the lubricant supply distribution line 40 is not supplied to the lubricant recovery pipe 30. And, when the cleaning signal is received, the second opening/closing valve control part that opens the second opening/closing valve 80 of the cleaning lubricant supply line 60 so that the lubricant oil of the lubricant supply distribution line 40 is supplied to the lubrication oil recovery pipe 30 (93) and;
When a cleaning signal is received from the recovery pipe cleaning management unit 91, the lubricating oil supply amount of the lubricating oil supply pump 20 is controlled to be supplied in a large amount to fill the lubricating oil recovery pipe 30, and when a normal signal is received, the lubricating oil is supplied to the turbine generator ( A lubricant oil pipe cleaning system for a turbine generator, comprising: a lubricant supply pump control unit 94 for controlling the supply amount to be provided to the lubricant supply source 2 of 1).
KR1020190146993A 2019-11-15 2019-11-15 Lubricant piping cleaning system for turbine generator KR102295638B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020190146993A KR102295638B1 (en) 2019-11-15 2019-11-15 Lubricant piping cleaning system for turbine generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020190146993A KR102295638B1 (en) 2019-11-15 2019-11-15 Lubricant piping cleaning system for turbine generator

Publications (2)

Publication Number Publication Date
KR20210059488A true KR20210059488A (en) 2021-05-25
KR102295638B1 KR102295638B1 (en) 2021-08-27

Family

ID=76145646

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020190146993A KR102295638B1 (en) 2019-11-15 2019-11-15 Lubricant piping cleaning system for turbine generator

Country Status (1)

Country Link
KR (1) KR102295638B1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113941576A (en) * 2021-09-29 2022-01-18 中广核核电运营有限公司 Method for flushing turbine lubricating oil system

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102455156B1 (en) 2022-05-16 2022-10-14 주식회사 삼영필텍 Oil vapor purification apparatus for turbine generator lubricating oil

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07251138A (en) * 1994-03-14 1995-10-03 Toshiba Corp Method for washing rotary equipment
JPH11117708A (en) * 1997-10-15 1999-04-27 Toshiba Corp Turbine oil flushing passage switching device
KR100891841B1 (en) 2002-10-01 2009-04-07 주식회사 포스코 Apparatus for controlling lubricating oil to turbogenerator

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07251138A (en) * 1994-03-14 1995-10-03 Toshiba Corp Method for washing rotary equipment
JPH11117708A (en) * 1997-10-15 1999-04-27 Toshiba Corp Turbine oil flushing passage switching device
KR100891841B1 (en) 2002-10-01 2009-04-07 주식회사 포스코 Apparatus for controlling lubricating oil to turbogenerator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113941576A (en) * 2021-09-29 2022-01-18 中广核核电运营有限公司 Method for flushing turbine lubricating oil system

Also Published As

Publication number Publication date
KR102295638B1 (en) 2021-08-27

Similar Documents

Publication Publication Date Title
KR20210059488A (en) Lubricant piping cleaning system for turbine generator
CN208594309U (en) A kind of tapping machine purging, cooling and oil mist system
US7913815B2 (en) Automated seal oil by-pass system for hydrogen cooled generators
EP1731719B1 (en) Lubrication arrangement for bearings
US9939021B2 (en) Bearing with minimized leakage of lubricant
Botha Optimising the demand of a mine water reticulation system to reduce electricity consumption
US11260435B2 (en) Method and apparatus for cleaning and removing contaminants from the interior of a lubricant run-down tank
US20080115479A1 (en) Pressurized coal gasifier and coal gasification combined cycle power plant
KR102168830B1 (en) Apparatus for water sealing in gas pipe
CN111379524B (en) Raise boring equipment and process for gas cooling and slag discharging in water-deficient environment
CN208204500U (en) A kind of oil supply system for rock drill lubrication
JP7015208B2 (en) Cooling water supply system and cooling water supply method in hydroelectric power generation system
CN213175709U (en) Blowout prevention and dust suppression device
CN216079860U (en) Particle collector online checking and cleaning device
CN219431829U (en) Three-arm drill jumbo water system suitable for extreme environments of plateau
KR102027177B1 (en) Water hammer prevention apparatus for f/w cooling system of large scaled container
CN206111250U (en) Online scavenge system of TRT impeller blade scaling
WO2018087920A1 (en) Maintenance system for ash treatment waterway
KR20200008793A (en) Water quality maintenance device of water tank for blast furnace
CN201560928U (en) Oil cooler for bearing of coolant pump of reactor core
JP6911235B2 (en) Corrosion prevention device for the rotating shaft of the furnace top pressure recovery turbine
KR19990038771U (en) Support device for both ends of sink roll
KR20000042046A (en) Device for plating molten zinc
Van den Berg The techno-economical impact of reducing chilled water usage on a deep level gold mine
JPS6138166A (en) Valve type tubular water turbine generator

Legal Events

Date Code Title Description
E701 Decision to grant or registration of patent right
GRNT Written decision to grant