The present invention relates to a lead arrangement, in particular to a high voltage lead arrangement, for being installed in a combustor unit to connect an ignition system of the combustor unit to an external power source, in particular to a high voltage power source, and to deliver an ignition voltage to the ignition system. The invention further relates to a combustor unit comprising such a lead arrangement.
In particular in combustion turbines such as gas turbines, leads for delivering a high voltage need to be led to combustor units. The high voltage is needed by the ignition system in the combustor in order to start the combustion process. However, due to the combustion process taking place in a combustion chamber to which the combustor is fixed, after the ignition has been performed the temperatures near the combustor may be high during operation of the gas turbine.
The high voltage leads which are led to the combustor are connected to ignition electrodes of the ignition system by ceramic receivings for spark plugs which are arranged at the flange of the combustor. The leads are isolated by a plastic material which may be used in ambient temperatures up to about 180° C. The temperatures present near the combustors during operation of the gas turbine, however, may be higher than 180° C.
Such high temperatures could cause damages to the leads, and as a consequence could reduce the availability of the gas turbine.
To address the issue of the high temperatures present near the combustors, it was proposed to use ignition systems which are moved mechanically into the combustion chamber only when the combustion is to be ignited. After ignition the ignition systems are retracted from the combustion chamber. Although such ignition systems provide a reasonable method to address the issue of the high temperatures near the combustors during gas turbine operation they are not suitable for the use in gas turbines which comprise a large number of ignition systems as the mechanics for such retractable ignition systems is complicated.
Further, it was proposed to improve thermal isolation of the combustion chamber and to reduce hot gas leakage at the gas turbine. However, improving thermal isolation and reducing hot gas leakage is a time consuming and expenditure process.
Still further, it has been proposed to use special electrodes which are elongated compared to standard electrodes so that leads need not to be led so close towards the combustor. However, it would be preferable to use standard ignition electrodes instead of elongated electrodes.
It is therefore an object of the present invention to provide an improved lead arrangement which can be used in close vicinity to the combustor unit. It is a further object of the present invention to provide an improved combustor unit comprising an improved lead arrangement for delivering a high-voltage to an ignition system of the combustor unit.
An inventive lead arrangement, which in particular may be a high-voltage lead arrangement for being installed in a combustor unit to connect an ignition system of the combustor unit to an external power source and in particular to a high-voltage power source and to deliver an ignition voltage to the ignition system, comprises a tube having a tube wall and a lumen surrounded by the tube wall; at least one lead extending through the lumen of the tube; and a mineral isolator a material disposed between the lead and the tube wall. By the inventive structure of a lead arrangement the lead may resist temperatures as high as 500° C. In addition, the inventive lead arrangement can bear higher mechanical loads than comparable leads comprising an isolation made by a plastic material.
The tube may, in particular, be a metal tube and can, for example, be made from steel. The ends of the tube are preferably sealed airtight and/or water tight. Such a sealing may be achieved by providing a seal at an end of the tube which comprises a sleeve fixed to the tube end. The sleeve may e.g. be hard soldered to the tube end. The sleeve may further comprise a contact feed-through such as e.g. a contact for a spark plug or a resistor. Suitable materials for such sleeves are steel and ceramics.
Suitable isolator materials are in particular ceramic materials as for example ceramic powders. An example for a suitable ceramic powder is zirconium oxide powder.
The temperature resistance of the lead arrangement may be further increased by providing a high temperature resistant hose which surrounds the tube.
At one end of the lead assembly a lead arrangement section which is isolated by a plastic material may be provided. By providing a lead arrangement section which is isolated by plastic material the lead section which is further away from the combustor and therefore further away from the high temperatures can have a higher flexibility.
The inventive lead arrangement is in particular suitable for the use with a combustor of a combustion turbine such as a gas turbine.
Further features and advantages of the present invention will become clear from the following description of particular embodiments of the invention with reference to the accompanying drawings.
The lead arrangement 1 comprises a tube 3 made of high grade steel. The tube wall 4 surrounds a lumen in the centre of which an electric high voltage lead 5 is arranged which extents in axial direction through the entire tube 3.
The high voltage lead is made from nickel plated copper and may comprise a number of strands 6 like it is shown in
Between the high voltage lead 5 and the wall 4 of the tube 3 a zirconium oxide powder 7 is disposed for electrically isolating the high voltage lead 5 to the tube 3. Instead of zirconium oxide powder other ceramic powders or other mineral isolator materials may be used as well. It should be stressed that it is not necessary for the mineral isolator to be provided in form of a powder. It may as well be provided in form of rings having a central opening through which the high voltage lead 5 extents and having an outer diameter which is chosen such that the rings fit into the tube 3. However, using a powder simplifies the filling of the tube with the isolator material.
At the end 9 of the tube 3 by which the lead arrangement is to be connected to a combustor unit a ceramic sleeve 11 is fixed by hard soldering it to the tube wall 4. The sleeve 11 seals the tube 3 airtight and water tight. In the central section of the sleeve, a metallic feed-through, e.g. made from high grade steel, is arranged which serves as a plug for connecting the lead arrangement to a receptacle in the flange of a combustor unit. In the simplest case, as it is shown in
The other end of the tube 3 is also sealed by a ceramic sleeve which is hard soldered to the tube wall 4, so that the whole assembly is airtight and water tight.
A second embodiment of the inventive lead arrangement 100 is shown in
A third embodiment of the present invention is shown in
A fourth embodiment of the inventive lead arrangement 300 is shown in
The fourth embodiment is shown in
Number | Date | Country | Kind |
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05009378.0 | Apr 2005 | EP | regional |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2006/061857 | 4/26/2006 | WO | 00 | 4/7/2010 |