Dry gas seal

US10738641B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10738641-B2
Application numberUS-201815922247-A
CountryUS
Kind codeB2
Filing dateMar 15, 2018
Priority dateMar 17, 2017
Publication dateAug 11, 2020
Grant dateAug 11, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A dry gas seal for sealing the shaft of a turbomachinery, provided with means for the continuous health monitoring of the dry gas seal comprising one or more sensors adapted to measure strains and/or loads induced to the primary ring of the dry gas seal and/or strains induced to one or more of the elastic elements coupled to the primary ring and/or adapted to measure displacements of the primary ring or of an element coupled to the primary ring, for an early detection of failure of the seal, thus enabling main failures early detection capability and proactive maintenance actions.

First claim

Opening claim text (preview).

What is claimed is: 1. A dry gas seal for sealing a shaft of a turbomachine, the seal comprising: a mating ring configured to be coupled to the shaft of the turbomachine to rotate at shaft rotational speed; a primary ring that seals against the mating ring, the primary ring configured to be anti-rotationally coupled to a static part of the turbomachine; at least one elastic element abutting against the primary ring and preloaded to push the primary ring against the mating ring; and at least one sensor coupled to the primary ring to measure strains or loads induced to the primary ring and to the at least one elastic element, or displacements of the primary ring. 2. The seal according to claim 1 , wherein the primary ring is configured to be anti-rotationally coupled with a retainer through an anti-rotational system comprising one or more anti-rotational pin or lug, the at least one sensor comprising a load sensor coupled to the one or more anti-rotational pin or lug to detect torques induced to the primary ring. 3. The seal according to claim 1 , wherein sensors comprise an axial vibration sensor to detect axial movements of the primary ring and/or the retainer towards/from the mating ring. 4. The seal according to claim 1 , wherein the elastic element or elements are coupled to the primary ring through an intermediate element capable of axial movement to move with the primary ring upon mating ring axial movement, the sensors comprising a displacement sensor to detect axial movement of the intermediate element. 5. The seal according to claim 4 , wherein the sensors comprise axial vibration sensors or load sensors coupled to, or integrated in, one or more of the elastic elements. 6. The seal according to claim 1 , wherein the seal comprises a flowpath for a sealing gas to flow from an inlet to an outlet to cause a gap to form between the mating ring and the primary ring, a flow sensor being provided in such flowpath to measure the flow of the sealing gas. 7. A turbomachine comprising: a rotor assembly including at least an impeller; a bearing connected to, and for rotatably supporting, the rotor assembly; a stator; and a sealing mechanism disposed between the rotor assembly and the bearing, said sealing mechanism including a dry gas seal according to claim 1 with the mating ring and the primary ring of the seal respectively coupled to the rotor assembly and the stator. 8. The turbomachine according to claim 7 , wherein the primary ring of the seal is coupled to a retainer through an anti-rotational system comprising one or more anti-rotational pin or lug and an intermediate element or carrier acting as a pusher sleeve to axially push the primary ring against the mating ring under the action of the at least one elastic element, the sensor or sensors of the seal comprising one or more sensors belonging to the group consisting in: displacement sensor for the measurement of the axial displacement of the primary ring, displacement sensor for the measurement of the axial displacement of the intermediate ring, strain sensor for the measurement of the torque induced to the primary ring, load sensors for the measurement of static load acting on the carrier and/or the primary ring, load sensors for the measurement of vibrations of the carrier and/or the primary ring. 9. The turbomachine according to claim 7 , further comprising a control unit configured to: read the output of the sensor or the sensors; compare the output with thresholds to determine a fault condition of the seal; and provide an alarm indication. 10. The turbomachine according to claim 9 , wherein the control unit is further configured to shut down the turbomachine if the output of the sensors are indicative of a fault condition of the seal. 11. A method for monitoring the status of a dry gas seal in a turbomachine, the method comprising: providing at least one sensors arranged with the dry gas seal, wherein the dry gas seal comprises: a mating ring configured to be coupled to a shaft of the turbomachine to rotate at shaft rational speed; a primary ring that seals against the mating ring, the primary ring configured to be anti-rationally coupled to a static part of the turbomachine; and at least one elastic element abutting against the primary ring and preloaded to push the primary ring against the mating ring; wherein the at least one sensor is coupled to the primary ring; measuring a value of at least one strain or load or displacement of the primary ring via the at least one sensor; setting a threshold limit for the measured value measured by the at least one sensor; comparing the measured value with the threshold limit; and activating an alarm upon the measured value exceeding the threshold limit. 12. The method according to claim 11 , further comprising: sending the output of the sensors to a remote software platform capable to collect data from seals of different turbomachine to perform analytics to do early detection. 13. The method according to claim 12 , further comprising sending notifications of potential damages or to perform condition based maintenance. 14. A system for the monitoring and early detection of fault of dry gas seals of remotely located turbomachines, the system comprising: a plurality of dry gas seals, each seal comprising: a mating ring configured to be coupled to the shaft of the turbomachine to rotate at shaft rotational speed; a primary ring that seals against the mating ring, the primary ring configured to be anti-rotationally coupled to a static part of the turbomachine; at least one elastic element abutting against the primary ring and preloaded to push the primary ring against the mating ring; and at least one sensor coupled to the primary ring to measure strains or loads induced to the primary ring and to the at least one elastic element, or displacements of the primary ring; and a plurality of communication units configured to interface with the each of the plurality of the dry gas seals of the turbomachines transmit a measured value of at least one strain or load or displacement of the primary ring measured via the at least one sensor.

Assignees

Inventors

Classifications

  • with monitoring or measuring means associated with the seal · CPC title

  • with special means for adducting cooling or sealing fluid · CPC title

  • F01D11/003Primary

    by packing rings; Mechanical seals · CPC title

  • Vibration measurements · CPC title

  • F01D11/04Primary

    using sealing fluid, e.g. steam · CPC title

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Frequently asked questions

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What does patent US10738641B2 cover?
A dry gas seal for sealing the shaft of a turbomachinery, provided with means for the continuous health monitoring of the dry gas seal comprising one or more sensors adapted to measure strains and/or loads induced to the primary ring of the dry gas seal and/or strains induced to one or more of the elastic elements coupled to the primary ring and/or adapted to measure displacements of the primar…
Who is the assignee on this patent?
Nuovo Pignone Tecnologie Srl
What technology area does this patent fall under?
Primary CPC classification F01D11/003. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Aug 11 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).