TANK FOR PRESSURIZED GAS
A tank for pressurized gas, such as hydrogen, comprises a structure made of composite material and a sensor for detecting and locating a deformation of the structure. The sensor comprises at least two first linear sensitive elements, which are sensitive to a non-localized elongation, and are rigidly attached the structure and laid out substantially parallel to each other. A deformation of the structure is localized in a section defined by at least one of the first linear sensitive elements.
1 . A tank for pressurized gas, such as hydrogen, comprising:
a structure made of composite material; and
a sensor to detect and locate a deformation of the structure, wherein the sensor comprises at least two first linear sensitive elements which are sensitive to a non-localized elongation, and are rigidly attached to the structure and laid out substantially parallel to each other, and a deformation of the structure being localized in a section defined by at least one first linear sensitive element.
2 . The tank according to claim 1 , wherein the sensor further comprises at least two second linear sensitive elements which are sensitive to a non-localized elongation, and are rigidly attached to the structure and laid out substantially parallel to each other and crossed with the at least two first linear sensitive elements, and a deformation of the structure being localized at a crossing between at least one first linear sensitive element and at least one second linear sensitive element.
3 . The tank according to claim 2 , wherein said at least two first linear sensitive elements and said at least two second linear sensitive elements are perpendicular.
4 . The tank according to claim 2 , wherein the tank has a substantially cylindrical shape, and wherein said at least two first linear sensitive elements are axially laid out and said at least two second linear sensitive elements are circumferentially laid out.
5 . The tank according to claim 2 , where two successive first linear sensitive elements and two second linear sensitive elements, respectively, are separated by a distance comprised between 1 and 30 cm.
6 . The tank according to claim 2 , where two successive first linear sensitive elements and two second linear sensitive elements, respectively, are separated by a distance comprised between 5 and 20 cm.
7 . The tank according to claim 2 , where two successive first linear sensitive elements and two second linear sensitive elements, respectively, are separated by a distance equal to 10 cm.
8 . The tank according to claim 1 , wherein the at least two first linear sensitive elements are laid out on an outer surface of the structure.
9 . The tank according to claim 1 , wherein the at least two first linear sensitive elements are laid out on an inner surface of the structure.
10 . The tank according to claim 1 , wherein the at least two first linear sensitive elements are laid out within a thickness of the structure.
11 . The tank according to claim 1 , wherein at least one of the first linear sensitive elements is a linear element, such as a piezoelectric cable, an optical strain gage cable, a reflectometer cable, a shape memory sensor cable or a strain gage cable.
12 . The tank according to claim 1 , wherein at least one of the first linear sensitive elements is apt to withstand an elongation of at least 2%.
13 . The tank according to claim 1 , wherein at least one of the first linear sensitive elements is apt to withstand an elongation of at least 5%.