1. Field of the Invention
The invention relates to low emissions gas-fired can combustors with additional liquid fuel injection for both dual fuel and bi-fuel operations. The invention also relates to an automatic purging system for can combustors having liquid fuel injection.
2. Description of the Related Art
Most recent can-type combustors designed to meet low NOx regulations have concentrated on the application of gaseous fuels and mainly natural gas. The need for these designs to have at least stand-by capability on liquid fuel has led to significant problems of functionality, optimization, and operational control. The general problems in these designs stem from the use of multiple fuel injectors for the liquid fuel in an attempt to achieve the uniform distribution needed for the gaseous fuel system, which typically requires the use of multiple gas fuel ports distributed about the combustor head end. The number of liquid fuel injectors required for this approach is large, complex and can be costly.
Gas turbine multi-can combustion systems that use liquid fuel also need an effective distribution manifold and closely matched injectors to avoid temperature spread problems. The necessary supply system and pipe work can be further complicated by the additional need to purge liquid fuel injectors and related fuel passages of the residual fuel that can cause blockage due to “coking” under engine thermal soak conditions. The requirements for solenoid and stop valves to affect these requirements complicate the apparatus and add greatly to the cost.
Thus, simplification and cost reduction of these can combustor and purging system would be a design goal for the fuel system/combustion design in order to provide the engine with low first cost and satisfactory long term operational characteristics.
In a first aspect of the present invention, a gas-fired combustor having additional liquid fuel operation includes a can combustor housing having a longitudinal axis, a combustor liner disposed along the axis within the housing and defining a combustion zone for combusting fuel with air, and a head assembly for joining respective adjacent longitudinal housing and liner ends. The head assembly includes means for admitting gaseous fuel and air for combustion to the combustion zone, the admitting means including swirler vanes, wherein the swirler vanes are configured for admitting to the combustion zone, about 45-55% of a total combustor air flow at all times during operation of the can combustor. The head assembly also includes a single additional liquid fuel injector disposed substantially along the axis and having a nozzle for directing liquid fuel into the combustion zone during liquid fuel operation. The head assembly further includes a heat shield disposed between the injector and the combustion zone, and the head assembly is configured to provide a flow of air for cooling the heat shield at all times during operation of the can combustor.
In a second aspect of the present invention, apparatus for purging liquid fuel injector in a can combustor, wherein the can combustor is supplied with compressed air from a compressed air source and liquid fuel from a liquid fuel source for combustion in the can combustor, includes a liquid fuel controller having a liquid fuel input connectable to the fuel source, a compressed air input connectable to the compressed air source, and an output connected to the injector. The controller further includes a shuttle valve having a shut-off shuttle member biased by a first pressure towards a first position interconnecting the liquid fuel input to the controller output, and biased by a second pressure towards a second position interconnecting the compressed air input to the controller output. The first and second pressures are set to move the shuttle member to the first position when the can combustor is being operated with liquid fuel, and move the shuttle member to the second position when purging of the injector with compressed air from the compressed air source is required.
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments and aspects of the invention and, together with the description, serve to explain the principles of the invention.
In accordance with the present invention, as broadly described herein, a dual fuel can combustor with automatic liquid fuel purge system includes a combustor housing having a longitudinal axis. As embodied herein, and with reference to
Also in accordance with the present invention, as broadly described herein, the gas fired can combustor further includes combustor liner 16 disposed within, and radially spaced from, housing 12. Liner 16 is also substantially cylindrical about axis 14, but may include tapered, stepped, or “necked” portions of different diameters, such as liner end 16a including pre-chamber 16b, both shown longitudinally adjacent housing end 12a, in the
Further in accordance with the present invention, as broadly described herein, the dual fuel can combustor includes a head assembly for joining respective adjacent longitudinal housing and liner ends. The head assembly also includes means for admitting gaseous fuel and air for combustion to the combustion zone. As embodied herein, and with continued reference to
The combustion air in annular space 24 flows generally counter to the longitudinal direction of the combustion gases exiting can combustor 10. This air for combustion can be used to cool the outer wall surface of liner 16, such as by convection cooling, film cooling, and/or impingement cooling, or combinations thereof. Impingement cooling, such as using perforated sleeve 29 as shown in the
Head assembly 20 may include a plurality of stub tubes 26 (only two being shown in
Still further in accordance with the present invention, as broadly described herein, the head assembly includes a single liquid fuel injector having a nozzle for directing liquid fuel into the combustion zone, the injector being disposed substantially along the housing axis. As embodied herein and as depicted in
Still further, in accordance with the present invention, as broadly described herein, the head assembly further includes a heat shield disposed between the injector and the combustion zone. Also, the head assembly is configured to provide a flow of air for cooling the heat shield at all times during operation of the can combustor. As embodied herein, and with continued reference to
As would be understood by one skilled in the art, can combustor 10 could be configured to operate using both liquid fuel and gaseous fuel simultaneously or alternatively, such as by the use of an appropriate control system (not shown). A skilled artisan could readily construct such a control system given the present disclosure.
Still further in accordance with the present invention, as broadly described herein, the can combustor may include apparatus for automatically purging the liquid fuel injector using compressed air. Such a purging operation generally would occur following cessation of operation with liquid fuel (i.e. with the cutoff of liquid fuel flow) and continuation or resumption of operation with gaseous fuel. Because of the proximity of the liquid injector nozzle to the combustion zone, the combustion heat may otherwise act to carbonize any liquid fuel remaining in the injector and the injector nozzle.
As embodied herein, and with reference again to
In operation, the shuttle member 86 is moveable between a first position (depicted by solid lines in
Moreover, compressor 112 also may supply compressed air for storage in a purge air reservoir 98, which may be a pressure vessel such as a cylinder, for use as the purge air source for purging apparatus 80. As shown in
It will be apparent to those skilled in the art that various modifications and variations can be made in the disclosed dual fuel can combustor and the automatic purging apparatus without departing from the teachings contained herein. Although other embodiments will be apparent to those skilled in the art from consideration of this specification and practice of the disclosed apparatus, it is intended that the specification and examples be considered as exemplary only, with the true scoping indicated by the following claims and their equivalents.
Number | Date | Country | |
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Parent | 12003829 | Jan 2008 | US |
Child | 13183102 | US |