Embodiments of the present invention relate to communication in a subsea well control system, such as a control system for a subsea well hydrocarbon extraction facility.
In a communications and power system (CAPS) based subsea control well system (such as a subsea control system for a subsea well hydrocarbon extraction facility), the cost of the copper conductors, within an umbilical between a surface control platform and the subsea well complex, used for data communications becomes significant due to the long offsets.
According to an embodiment of the present invention, there is provided a communication arrangement for a subsea well control system, comprising an umbilical between a topside location and a subsea location, an electrical conductor in the umbilical and means for transmitting and receiving data between the locations via the conductor, wherein a return path for the data comprises the sea. Typically, the means for transmitting and receiving data comprises: first data supply means, at the topside location; second data supply means, at the subsea location; first data receiving means, at the topside location, for receiving data from the second data supply means via the umbilical; and second data receiving means, at the subsea location, for receiving data from the first data supply means via the umbilical.
Such an arrangement could comprise first switching means, at the topside location, and second switching means, at the subsea location, the arrangement being such that, when the first data supply means transmits data to the second data receiving means, the second switching means connects the conductor to the sea and, when the second data supply means transmits data to the first data receiving means, the first switching means connects the conductor to the sea.
In this case, in one embodiment: the first data supply means comprises a first direct current source and means for alternately switching the first switching means between a position in which it connects the first source to the conductor and a position in which it connects the conductor to the sea, in dependence on the data to be transmitted to the second receiving means; and the second data supply means comprises a second direct current source and means for alternately switching the second switching means between a position in which it connects the second source to the conductor and a position in which it connects the conductor to the sea, in dependence on the data to be transmitted to the first receiving means.
In another embodiment, the first data supply means comprises a first data source and the second data supply means comprises a second data source, the arrangement being such that the first switching means connects the first source to the conductor for transmitting data to the second receiving means and the second switching means connects the second source to the conductor for transmitting data to the first receiving means. Each of the first and second sources could comprise a source of digital data or a source of modulated analogue data.
According to another embodiment of the present invention, there is provided a method of communication in a subsea well control system which comprises an umbilical between a topside location and a subsea location and an electrical conductor in the umbilical, the method comprising using means for transmitting and receiving data to transmit between the locations via the conductor and using the sea as a return path for the data.
Referring first to
Rtop designates a resistor at the topside location in series with conductor 5, across which resistor is an amplifier 7 for topside reception of data from the subsea location and Rsub designates a resistor at the subsea location in series with conductor 5 across which resistor there is an amplifier 8 for reception of data from the topside location. At the topside location, for transmitting data to the subsea location, a digital signal TX1 can cause switch 3 to operate via an amplifier 9 alternately to connect and disconnect in a predetermined manner the voltage from supply 1 to conductor 5, in which condition switch 4 connects conductor 5 to the sea at a sea connection (see
In
When transmitting data from the topside location to the subsea location (
For example: VCC−TOP=Vumbilical-drop+V digital-offset, where:
Vdigital-offset=Min [Abs(Vsea-top−Vsea-sub)+Vdigital],
where Vdigital is recommended to be at least 24 volts.
Thus, the subsea transmitted signal is as follows:
When transmitting data from the subsea location to the topside location (
Referring to
As with
Embodiments of the present invention substantially reduce the umbilical costs by the reduction of conductors.
The written description uses examples to disclosure the invention, including the best mode, and also to enable any person skilled in the art to practice the invention, including making and using any devices or systems and performing any incorporated processes. The patentable scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. These other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal languages of the claims.
Number | Date | Country | Kind |
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12152683.4 | Jan 2012 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2013/051160 | 1/22/2013 | WO | 00 |