Flexible pipe body and method of providing same
A flexible pipe body and method of producing a flexible pipe body are disclosed. The flexible pipe body includes a collapse resistant layer comprising a radially inner surface and a radially outer surface, the radially inner surface comprising, in cross section, a substantially flat portion and at least one cavity extending from the flat portion radially outwards, and the radially inner surface further comprising, in cross section, at least one aerodynamic feature extending from the flat portion for breaking up a boundary layer of fluid flowing along the flexible pipe body in use.
1. Flexible pipe body for transporting fluids from a sub-sea location, comprising:
a collapse resistant layer comprising a radially inner surface and a radially outer surface, the radially inner surface comprising, in cross section, a substantially flat portion and at least one cavity extending from the flat portion radially outwards, and the radially inner surface further comprising, in cross section, at least one protrusion extending from the flat portion for breaking up a boundary layer of fluid flowing along the flexible pipe body in use;
wherein the collapse resistant layer is a carcass layer;
wherein the or each at least one protrusion is provided upstream of the or each at least one cavity in terms of a flow direction of fluid through the pipe body in use;
wherein the at least one protrusion is formed integrally with the collapse resistant layer
wherein the collapse resistant layer comprises a helically wound elongate tape element and the at least one cavity is between adjacent windings of the tape element;
wherein the at least one protrusion helically extends continuously around the inner surface of the carcass layer.
2. Flexible pipe body as claimed in claim 1 wherein the protrusion has a height of between about 1/50th to about ¼ the depth of the cavity.
3. Flexible pipe body as claimed in claim 2 wherein the protrusion has a height of between about 1/10th and 1/15th the depth of the cavity.
4. Flexible pipe body as claimed in claim 1 , further comprising a barrier layer, a hoop strength layer and an outer fluid-retaining layer provided radially outwards of the collapse resistant layer.
5. Use of the flexible pipe body as claimed in claim 1 for the transportation of production fluids from a sub-sea location.
6. A method of providing a flexible pipe body, comprising:
forming an elongate tape element and helically winding the tape element to form a collapse resistant layer comprising a radially inner surface and a radially outer surface, the radially inner surface comprising, in cross section, a substantially flat portion and at least one cavity extending from the flat portion radially outwards, and the radially inner surface further comprising, in cross section, at least one protrusion extending from the flat portion for breaking up a boundary layer of fluid flowing along the flexible pipe body in use;
wherein the collapse resistant layer is a carcass layer;
wherein the or each at least one protrusion is provided upstream of the or each at least one cavity in terms of a flow direction of fluid through the pipe body in use;
wherein the at least one protrusion is formed integrally with the collapse resistant layer;
wherein the at least one protrusion helically extends continuously around the inner surface of the carcass layer.
7. A method as claimed in claim 6 , further comprising providing a barrier layer, a hoop strength layer and an outer fluid-retaining layer provided radially outwards of the collapse resistant layer.