Pressure compensator for a subsea device
US-9038433-B2 · May 26, 2015 · US
US9360292B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9360292-B2 |
| Application number | US-201314397685-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 25, 2013 |
| Priority date | May 4, 2012 |
| Publication date | Jun 7, 2016 |
| Grant date | Jun 7, 2016 |
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An arrangement for providing a variable volume size is described. The arrangement includes an outer bellow having an outer end wall closing the outer bellow at one end. The arrangement further includes an inner bellow having an inner end wall closing the inner bellow at one end, the inner bellow being arranged at least partly inside the outer bellow. The arrangement further includes a base at which another end of the outer bellow and another end of the inner bellow are attached. The arrangement further includes a position measuring apparatus for measuring at least one position indicative of a distance between the outer end wall and the inner end wall.
Opening claim text (preview).
The invention claimed is: 1. An arrangement of a subsea apparatus for providing a variable volume size, the arrangement comprising: an outer bellow having an outer end wall closing the outer bellow at one end; an inner bellow having an inner end wall closing the inner bellow at one end, the inner bellow being arranged at least partly inside the outer bellow; a base at which another end of the outer bellow and another end of the inner bellow are attached; and a position measuring apparatus arranged within a space inside the outer bellow and outside the inner bellow, wherein the position measuring apparatus is configured for measuring at least one position indicative of a distance between the outer end wall and the inner end wall, and wherein an operation condition of the subsea apparatus is derivable from the measured position. 2. The arrangement as claimed in claim 1 , wherein the position measuring apparatus is configured to measure the position optically, inductively, mechanically, or a combination thereof. 3. The arrangement as claimed in claim 1 , wherein the position measuring apparatus comprises: a bar; a position measuring sensor for measuring a position of the bar; wherein the position measuring sensor is fixed relative to one of the outer end wall and the inner end wall, wherein the bar moves in correspondence to another one of the outer end wall and the inner end wall, wherein from the position of the bar, the distance is derivable. 4. The arrangement as claimed in claim 3 , wherein between the bar and the other one of the outer end wall and the inner end wall a pulley is arranged. 5. The arrangement as claimed in claim 4 , wherein the pulley comprises: a first roller fixed to the one of the outer end wall and the inner end wall; a second roller fixed to the bar; and a wire fixed at one end of the wire at the other one of the outer end wall and the inner end wall, being lead around the first roller, being lead around the second roller and being fixed at another end of the wire directly or indirectly at the one of the outer end wall and the inner end wall, wherein the wire is lead around the first roller and the second roller plural times. 6. The arrangement as claimed in claim 3 , wherein the position measuring sensor comprises an electric coil in which the bar is movable to induce an electric signal in dependence of the movement of the bar. 7. The arrangement as claimed in claim 6 , wherein a movement direction of the bar is perpendicular to a movement direction of the other one of the outer end wall and the inner end wall. 8. The arrangement as claimed in claim 3 , wherein, at one end, the bar is fixed at the one of the outer end wall and the inner end wall via a spring element to provide a drawing biasing force to keep a wire tense, or wherein at one end the bar a weight is attached via another wire redirected by a third roller to provide a drawing biasing force to keep the wire tense. 9. The arrangement as claimed in claim 1 , wherein the position measuring apparatus is configured to detect a first distance and a second distance differing by between 10 cm and 150 cm from the first distance. 10. The arrangement as claimed in claim 1 , wherein the outer bellow and the inner bellow are flexible to allow change of extent in a longitudinal direction such that the outer end wall and the inner end wall are independently movable relative to the base to provide the variable volume size in the space inside the outer bellow and outside the inner bellow, or wherein an inside of the inner bellow is resistant to sea water and an outside of the outer bellow is resistant to sea water. 11. The arrangement as claimed in claim 1 , wherein the outer bellow and the inner bellow have a wave shape in cross-section such that a radius of the bellows changes periodically along the longitudinal direction, or wherein the outer bellow and the inner bellow are biased such that opposing forces acting towards each other are exerted from the inner end wall and the outer end wall. 12. The arrangement as claimed in claim 1 , wherein the space is filled with a dielectric fluid. 13. A subsea container of a subsea apparatus, the subsea container comprising: an arrangement for providing a variable volume size, the arrangement comprising: an outer bellow having an outer end wall closing the outer bellow at one end; an inner bellow having an inner end wall closing the inner bellow at one end, the inner bellow being arranged at least partly inside the outer bellow; a base at which another end of the outer bellow and another end of the inner bellow are attached; and a position measuring apparatus arranged within a space inside the outer bellow and outside the inner bellow, the position measuring apparatus configured for measuring at least one position indicative of a distance between the outer end wall and the inner end wall; and a container wall delimiting a container inner space, wherein the space is in fluid communication with the container inner space, wherein the base of the arrangement is connected to the container wall, and wherein an operation condition of the subsea apparatus is derivable from the measured position. 14. The container as claimed in claim 13 , wherein the space and the container inner space are filled with a dielectric fluid. 15. The container as claimed in claim 14 , wherein the dielectric fluid is an oil pressurized to balance a hydrostatic pressure corresponding to a depth between 2000 m and 4000 m below sea level. 16. A subsea apparatus comprising: a container and an electrical device, the container comprising: an arrangement for providing a variable volume size, the arrangement comprising: an outer bellow having an outer end wall closing the outer bellow at one end; an inner bellow having an inner end wall closing the inner bellow at one end, the inner bellow being arranged at least partly inside the outer bellow; a base at which another end of the outer bellow and another end of the inner bellow are attached; and a position measuring apparatus arranged within a space inside the outer bellow and outside the inner bellow, the position measuring apparatus configured for measuring at least one position indicative of a distance between the outer end wall and the inner end wall; and a container wall delimiting a container inner space, wherein the space is in fluid communication with the container inner space, wherein the base of the arrangement is connected to the container wall, wherein the electrical device is arranged within the container inner space, and wherein an operation condition of the subsea apparatus is derivable from the measured position. 17. The subsea apparatus as claimed in claim 16 , further comprising: a communication interface for providing a measurement signal related to the position measured by the position measuring apparatus to an external processor, wherein from the measurement signal, a physical parameter of the container is derivable, wherein the physical parameter comprises (1) a temperature, a pressure, or a temperature and a pressure inside the container, (2) a leakage or fluid contained in the container, (3) a change of the position, or a combination thereof. 18. The subsea apparatus as claimed in claim 17 , wherein the communication interface provides the measurement signal at plural consecutive points in time. 19. The subsea apparatus as claimed in claim 16 , wherein the electrical device is a variable speed drive or an AC-AC converter.
for underwater installations (E21B41/005, E21B41/04, E21B41/06, E21B41/08, E21B41/10 take precedence) · CPC title
for measuring distance of clearance between spaced objects · CPC title
{Independent} underground or underwater structures (underground tanks B65D88/76; hydraulic engineering, e.g. sealings or joints, E02B; underground garages E04H6/00; underground air-raid shelters E04H9/12; burial vaults E04H13/00); Retaining walls · CPC title
for measuring distance or clearance between spaced objects or spaced apertures (G01B5/24 takes precedence) · CPC title
containing a dielectric fluid · CPC title
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