Optical Impedance Modulation for Fuel Quantity Measurement
US-2016138958-A1 · May 19, 2016 · US
US11709087B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11709087-B2 |
| Application number | US-201816765363-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 16, 2018 |
| Priority date | Nov 20, 2017 |
| Publication date | Jul 25, 2023 |
| Grant date | Jul 25, 2023 |
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An optical device for the contactless measurement of a liquid level contained in a storage device by an optical signal, the optical device including an optical unit fixedly positioned above the storage device and an electronic control unit capable of emitting an optical signal, dissociated from the optical unit and positioned at a distance from the optical unit. The optical unit includes a single channel for the emission and the reception of the optical signal. The optical unit is connected to the electronic control unit through an optical fibre capable of transmitting the optical signal emitted by the electronic control unit and an optical signal reflected by the liquid. The optical fibre has first and second optical cores that juxtapose each other such that at least a part of the optical signal emitted in the first optical core of the optical fibre is backscattered in the second optical core.
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The invention claimed is: 1. An optical device for a contactless measurement of a level of a liquid contained in a storage device by means of an optical signal, said optical device comprising: an optical unit fixedly positioned above the storage device, an electronic control unit configured to emit an optical signal, dissociated from said optical unit and positioned at a distance from said optical unit, and an optical fibre configured to transmit the optical signal emitted by the electronic control unit and an optical signal reflected by the liquid, wherein: the optical unit comprises a single channel for emission and reception of the optical signal; the optical unit is connected to the electronic control unit through said optical fibre said optical fibre having first and second optical cores that juxtapose each other such that at least a part of the optical signal emitted in said first optical core of said optical fibre is backscattered in said second optical core, and the first and second cores of said optical fibre juxtapose each other at a level of a first end of said optical fibre so as to form a single strand and each core is devoid of optical sheath or protective sheath. 2. The optical device for the contactless measurement of the level of a liquid contained in a storage device according to claim 1 , wherein said first end of said optical fibre is situated at a level of said optical unit. 3. The optical device for the contactless measurement of the level of a liquid contained in a storage device according to claim 1 , wherein the first and second optical cores have a different diameter. 4. The optical device for the contactless measurement of the level of a liquid contained in a storage device according to claim 1 , wherein the first optical core transmitting the optical signal emitted by the electronic control unit has a diameter less than the second optical core configured to receive the optical signal reflected by a surface of the liquid. 5. The optical device for the contactless measurement of the level of a liquid contained in a storage device according to claim 1 , wherein at a level of a second end of said optical fibre connected to the electronic control unit and said optical fibre has two distinct strands, each being composed of a single optical core at the level of the second end. 6. The optical device for the contactless measurement of the level of a liquid contained in a storage device according to claim 1 , wherein the electronic control unit comprises a system configured to determine a distance separating said optical unit from the liquid contained in the storage device by measurement of a time of flight of the optical signal. 7. A method for determining the level of a liquid contained in a storage device by means of an optical device according to claim 1 , comprising: emitting an optical signal by said electronic control unit, said optical signal propagating inside said optical fibre in a direction of the optical unit; detecting at an instant t1 a first return signal corresponding to a part of said emitted optical signal backscattered inside the optical fibre at a level of the first and second juxtaposed cores; detecting at an instant t2 a second return signal corresponding to a part of the emitted signal which is reflected by a surface of said liquid contained in the storage device; calculating the level of the liquid by determination of a time of flight between the instant t1 of detecting the first return signal and the instant t2 of detecting the second return signal. 8. The method for determining the level of a liquid contained in a storage device by means of an optical device according to claim 7 , wherein the level of liquid is a level of water in a nuclear reactor fuel pool.
using light reflected on the material surface · CPC title
using optical fibres · CPC title
for measuring distance only (indirect measurement G01S17/46; active triangulation systems G01S17/48) · CPC title
Light {, e.g. infrared or ultraviolet} · CPC title
Moderator- or coolant-level detecting devices {(indicating or measuring liquid level in general G01F23/00)} · CPC title
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