Seal leakage and seal oil contamination detection in generator

A casing 102 surrounds a rotor 104, encloses a volume of a cooling gas 103 and has plural static seals. An end housing 120 at each end of the casing includes a seal system 121 through which the rotor 104 extends and cooling gas 103 escapes from the casing 102 to at least one seal area 123. A cooling...

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Bibliographic Details
Main Authors Krishna Swamy Cherukuri, Sudhanshu Rai, Nicola Piccirillo, Jeffrey James Andritz, James Daniel Antalek, Anthony James George, Vinodh Kumar Bandaru, Daniel James Fitzmorris
Format Patent
LanguageEnglish
Published 25.10.2017
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Summary:A casing 102 surrounds a rotor 104, encloses a volume of a cooling gas 103 and has plural static seals. An end housing 120 at each end of the casing includes a seal system 121 through which the rotor 104 extends and cooling gas 103 escapes from the casing 102 to at least one seal area 123. A cooling gas regulator 110 and a gas source 108 maintain constant pressure in the casing. A scavenging system 130 removes a gas mixture 132 from each end housing 120 including escaping cooling gas 103. A leak detector 170 generates an alarm indicating a leak at one of the static seals in response to an increase in the cooling gas flow in the regulator and/or an increase in gas flow in the scavenging system. A seal alignment detector 172 generates an alarm in response to the seal oil flow rate, a difference between the temperature of the oil drain and inlet, and a seal oil filter 136 differential pressure. A seal clearance increase detector 176 generates an alarm in response to a ratio of time for which a scavenge control valve 134 operates to remove gas at a higher and at a lower scavenge rate
Bibliography:Application Number: GB20120000107