FLOATING ROOF MONITORING
20210080310 · 2021-03-18
Inventors
Cpc classification
B65D88/34
PERFORMING OPERATIONS; TRANSPORTING
B65D90/48
PERFORMING OPERATIONS; TRANSPORTING
G01M11/081
PHYSICS
International classification
Abstract
A method of determining a status of a floating roof of a storage tank using a radar level gauge system arranged above the floating roof, the radar level gauge system being controllable to selectively evaluate reflected energy traveling towards the radar level gauge system in each propagation direction of a plurality of different propagation directions, the method comprising the steps of: radiating, by the radar level gauge system, an electromagnetic transmit signal towards the floating roof; receiving, by the radar level gauge system, an electromagnetic reflection signal resulting from reflection of the transmit signal at the floating roof; selectively evaluating, by the radar level gauge system based on the reflection signal, reflected energy traveling from the floating roof towards the radar level gauge system in each propagation direction of the plurality of different propagation directions; and determining the status of the floating roof based on the selective evaluation.
Claims
1. A method of determining a status of a floating roof of a storage tank using a radar level gauge system arranged above the floating roof, the radar level gauge system including a transceiver, an antenna arrangement, and processing circuitry, wherein the radar level gauge system is controllable to selectively evaluate reflected energy traveling towards the antenna arrangement in each propagation direction of a plurality of different propagation directions, the method comprising the steps of: radiating, by the radar level gauge system, an electromagnetic transmit signal towards the floating roof; receiving, by the radar level gauge system, an electromagnetic reflection signal resulting from reflection of the transmit signal at the floating roof; selectively evaluating, by the radar level gauge system based on the reflection signal, reflected energy traveling from the floating roof towards the antenna arrangement in each propagation direction of the plurality of different propagation directions; and determining the status of the floating roof based on the selective evaluation.
2. The method according to claim 1, wherein: the step of radiating comprises radiating the transmit signal towards a first target area on the floating roof; the step of selectively evaluating comprises determining, for each propagation direction of the plurality of propagation directions, a measure indicative of an amount of reflected energy traveling from the first target area towards the antenna arrangement; and the step of determining the status of the floating roof comprises estimating an inclination of the first target area based on the measure indicative of the amount of reflected energy traveling from the first target area towards the antenna arrangement determined for each propagation direction in the plurality of propagation directions.
3. The method according to claim 2, further comprising the steps of: comparing the estimated inclination of the first target area with a predefined threshold inclination; and providing, when the estimated inclination exceeds the predefined threshold inclination, a signal indicative thereof.
4. The method according to claim 1, wherein: the step of radiating comprises radiating the transmit signal towards a first target area on the floating roof and a second target area on the floating roof laterally spaced apart from the first target area; the step of selectively evaluating comprises determining a first position of the first target area based on reflected energy traveling from the first target area towards the antenna arrangement in a first propagation direction, and determining a second position of the second target area based on reflected energy traveling from the second target area towards the antenna arrangement in a second propagation direction different from the first propagation direction; and the step of determining the status of the floating roof comprises determining a representation of the floating roof based on the first position and the second position.
5. The method according to claim 4, wherein: the step of radiating comprises radiating the transmit signal towards at least three mutually laterally spaced apart target areas on the floating roof; the step of selectively evaluating comprises determining a respective position of each of the target areas based on reflected energy traveling in a respective propagation direction from the target area towards the antenna arrangement; and the step of determining the status of the floating roof comprises determining the representation of the floating roof based on the respective position of each of the target areas.
6. The method according to claim 4, further comprising the steps of: comparing the determined representation of the floating roof with at least one predefined criterion for the floating roof; and providing, when the determined representation of the floating roof fails to fulfill the at least one predefined criterion, a signal indicative thereof.
7. The method according to claim 1, wherein: the method further comprises the step of determining, based on a timing relation between the transmit signal and the reflection signal, a measure indicative of a vertical distance between a reference position of the radar level gauge system and the floating roof; and the determination of the status of the floating roof is additionally based on the measure indicative of the vertical distance.
8. The method according to claim 1, wherein: the method further comprises the step of acquiring a measure indicative of a filling level of the product in the tank; and the determination of the status of the floating roof is additionally based on the measure indicative of the filling level.
9. A floating roof monitoring system, for determining a status of a floating roof of a storage tank, the floating roof monitoring system including a radar level gauge system for arrangement above the floating roof, the radar level gauge system comprising: a transceiver for generating, transmitting and receiving electromagnetic signals; an antenna arrangement coupled to the transceiver for radiating an electromagnetic transmit signal towards the floating roof and receiving an electromagnetic reflection signal resulting from reflection of the transmit signal by the floating roof; and processing circuitry configured to: control the transceiver to generate and transmit an electromagnetic transmit signal; selectively evaluate based on an electromagnetic reflection signal resulting from reflection of the transmit signal at the floating roof and received by the transceiver, reflected energy traveling from the floating roof towards the antenna arrangement in each propagation direction of the plurality of different propagation directions; and determine the status of the floating roof based on the selective evaluation.
10. The floating roof monitoring system according to claim 9, wherein the processing circuitry is configured to: determine, for each propagation direction of the plurality of propagation directions, a measure indicative of an amount of reflected energy traveling from a first target area on the floating roof towards the antenna arrangement; estimate an inclination of the first target area based on the measure indicative of the amount of reflected energy traveling from the first target area towards the antenna arrangement determined for each propagation direction in the plurality of propagation directions; and determine the status of the floating roof based on the estimated inclination.
11. The floating roof monitoring system according to claim 9, wherein the processing circuitry is configured to: control the radar level gauge system to radiate the transmit signal towards a first target area on the floating roof and a second target area on the floating roof laterally spaced apart from the first target area; determine a first position of the first target area based on reflected energy traveling from the first target area towards the antenna arrangement in a first propagation direction, and a second position of the second target area based on reflected energy traveling from the second target area towards the antenna arrangement in a second propagation direction different from the first propagation direction; determine a representation of the floating roof based on the first position and the second position; and determine the status of the floating roof based on the representation.
12. The floating roof monitoring system according to claim 9, further comprising at least a first microwave reflector device for arrangement in at least a first target area on the floating roof.
13. The floating roof monitoring system according to claim 12, wherein the first microwave reflector device comprises a retroreflector for microwave radiation.
14. The floating roof monitoring system according to claim 12, wherein the floating roof monitoring system comprises a first microwave reflector device for arrangement in a first target area on the floating roof and a second microwave reflector device for arrangement in a second target area on the floating roof, laterally spaced apart from the first target area.
15. The floating roof monitoring system according to claim 14, wherein: the first microwave reflector device comprises a first sensing device for sensing a property of the of the floating roof at the first target area and first communication circuitry for providing a signal indicative of the sensed property; and the second microwave reflector device comprises a second sensing device for sensing a property of the of the floating roof at the second target area and second communication circuitry for providing a signal indicative of the sensed property.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] These and other aspects of the present invention will now be described in more detail, with reference to the appended drawings showing a currently preferred embodiment of the invention, wherein:
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS OF THE INVENTION
[0029]
[0030] As is schematically indicated in
[0031] In addition to the floating roof monitoring system 1, the tank 3 in
[0032]
[0033] The radar level gauge system 11 comprised in the floating roof monitoring system 1 may be fixedly attached to the tank wall 5, by means of a suitable support arrangement, such as the support 33 schematically indicated in
[0034] In the example embodiment of
[0035] Alternatively, communication may, for example, take place over an analog and/or digital wire-based communication channel. For instance, the communication channel may be a two-wire 4-20 mA loop and a signal indicative of the status of the floating roof may be communicated by providing a certain current corresponding to the filling level on the two-wire 4-20 mA loop. Digital data may also be sent across such a 4-20 mA loop, using the HART protocol. Furthermore, pure digital communication protocols such as Modbus or Foundation Fieldbus may be used.
[0036] In the following, example embodiments of the method according to the present invention will be described with reference to the flow-chart in
[0037] In a first step 100, an electromagnetic transmit signal S.sub.T is radiated towards the floating roof 7 by the radar level gauge system 11 comprised in the floating roof monitoring system 1. The transmit S.sub.T signal may be formed by a set of measurement sweeps (i.e. one or more measurement sweeps), or the transmit signal S.sub.T may be a pulsed signal. Furthermore, depending on the particular embodiments of the monitoring system and method according to the present invention, the transmit signal S.sub.T may exhibit a substantially fixed radiation pattern, or may sequentially be directed in different propagation directions towards different target areas 15a-c on the floating roof 7.
[0038] In the subsequent step 101, the radar level gauge system 11 comprised in the floating roof monitoring system 1 receives, via the antenna arrangement 25, an electromagnetic reflection signal S.sub.R resulting from reflection of the transmit signal S.sub.T at the floating roof 7.
[0039] After having received the reflection signal S.sub.R, the radar level gauge system 11 selectively evaluates, in step 102, reflected energy traveling from the floating roof 7 towards the antenna arrangement 25 in each propagation direction r.sub.R of a plurality of different propagation directions, based on the reflection signal S.sub.R.
[0040] Based on the selective evaluation carried out in step 102, the status of the floating roof 7 is then determined in step 103. A signal indicative of the determined status may then be provided in step 104, either continuously, or conditionally depending on the determined status of the floating roof 7.
[0041]
[0042]
[0043] In the example embodiments of
[0044] The step of determining the status of the floating roof (step 103) here comprises estimating an inclination .sub.1 of the first target area 15a based on the measure indicative of the amount of reflected energy, indicated by E on the vertical axis of the diagram in
[0045]
[0046]
[0047] As was explained above with reference to the flow-chart in
[0048] In the example embodiments of
[0049] The step of determining the status of the floating roof (step 103) here comprises determining a representation of the floating roof 7 based on the respective position of each of the target areas 15a-c of the floating roof 7. The representation based on the three positions in
[0050] In any one of the example embodiments described so far, a measure indicative of a vertical distance between the radar level gauge system 11 of the floating roof monitoring system 1 and the floating roof 7 may be determined based on the transmit signal S.sub.T and the reflection signal S.sub.R, and the determination of the status of the floating roof 7 may be additionally based on this measure.
[0051] If, for instance, it is determined based on this vertical distance that the floating roof 7 moves less or more than expected when product 9 is added to or removed from the tank 3 at known rates of addition or removal, this may be taken as an indication that the floating roof 7 is not following the movements of the liquid product 9 in a satisfactory manner, and a signal indicative of this may be provided.
[0052] Furthermore, a measure indicative of a filling level of the product 9 in the tank 3 may be acquired from the filling level determining system 17 (see
[0053]
[0054] The person skilled in the art realizes that the present invention by no means is limited to the preferred embodiments described above. On the contrary, many modifications and variations are possible within the scope of the appended claims.