Apparatus, system and method for monitoring external properties of plant equipment and/or pipe work
The invention provides a sensor system and methods for detecting the presence of water in an insulating material surrounding plant equipment and/or pipe work. The sensor system comprises a plurality of sensors located in and spatially distributed over the insulating material, each sensor being operable to provide a sensor output indicative of the presence of water in an insulating material. The system also comprises at least one reference sensor operable to provide a reference sensor output indicative of the presence of water in an ambient environment in the vicinity of the plurality of sensors. In addition, the system comprises a processor configured to receive the sensor outputs from the plurality of sensors and the reference sensor output. The processor is configured to correlate the sensor outputs from the plurality of sensors and the reference sensor output to provide a correlation data output for use in evaluating a corrosion condition.
1 . A sensor for detecting humidity and/or free water, the sensor comprising:
a means for detecting the presence of humidity; and/or
a means for detecting the presence of free water; and
an elongate body,
wherein the sensor is operable to provide a sensor output indicative of the presence of free water and/or humidity,
wherein the elongate body or a section thereof has an external self-tapping means, and
wherein the sensor is configured to be self-installed into a cladding and insulation via the external self-tapping means.
2 . The sensor according to claim 1 , wherein the external self-tapping means comprises an external self-tapping screw thread.
3 . The sensor according to claim 1 , wherein the sensor is for detecting humidity and/or free water in an insulating material surrounding plant equipment and/or pipe work.
4 . A sensor system for detecting the presence of water at a plurality of depth locations within an insulating material, the sensor system comprising:
a first sensing means and a second sensing means;
wherein the first sensing means is operable to provide a first sensor output indicative of the presence of water at a first depth location in the insulating material; and
wherein the second sensing means is operable to provide a second sensor output indicative of the presence of water at a second depth location in the insulating material;
wherein the sensor system comprises at least one sensor having an elongate body configured to be inserted into an insulating material;
wherein the first sensing means is located on the elongate body; and
wherein the first depth location corresponds to the location of the first sensing means on the elongate body; and
wherein the first sensing means and/or second sensing means is a capacitive sensing means, the capacitive sensing means comprising at least two electrodes spaced apart from one another on the elongate body and a means for determining the capacitance value between the at least two electrodes.
5 . The sensor system according to claim 4 , wherein the sensor output is a reading relating to humidity and/or a reading relating to free water.
6 . The sensor system according to claim 4 , wherein the system comprises a plurality of sensing means, wherein the plurality of sensing means comprises the first sensing means and the second sensing means and at least one additional sensing means, wherein each sensing means of the plurality of sensing means corresponds corresponding to a respective depth location of the plurality of depth locations.
7 . The sensor system according to claim 4 , wherein the at least one sensor is capable of detecting the presence of humidity and/or free water in an insulating material.
8 . A method of detecting the presence of water at a plurality of depth locations within an insulating material, the method comprising:
providing a sensor system according to claim 4 ; and
obtaining sensor outputs from each of the sensing means, wherein the first depth location and the second depth location are known.
9 . The method according to claim 8 , further comprising determining, based on the location of each of the sensing means on an elongate body or bodies of the one or more sensors, the depth location of the sensing means in the insulating material.
10 . The method according to claim 8 , further comprising linking the sensor outputs from each sensing means to the determined location of the sensing means.
11 . The method according to claim 8 , wherein the outputs obtained from the sensor system are used to construct a profile of water readings throughout the depth of the insulating material.
12 . The method according to claim 8 , wherein the insulating material is located on or around plant equipment and/or pipe work.