摘要:
In a gas turbine power plant, pressurized fuel gas undergoes pressure reduction and gas expansion before being provided to a gas turbine. Condensations, which can damage the turbine, can form as the fuel gas cools when the fuel gas undergoes the pressure reduction and expansion. An electric startup heater is used to superheat the fuel gas to substantially prevent the condensations from forming. The electric startup heater includes band heaters wrapped externally to a fuel gas pipe to heat the fuel gas from outside in. Compared to conventional heaters which provide superheating through internal heating elements, the electric startup heater reduces costs and provides increased safety, flexibility, operational efficiency and ability to adapt to varying fuel gas characteristics.
摘要:
In a gas turbine power plant, pressurized fuel gas undergoes pressure reduction and gas expansion before being provided to a gas turbine. Condensations, which can damage the turbine, can form as the fuel gas cools when the fuel gas undergoes the pressure reduction and expansion. An electric startup heater is used to superheat the fuel gas to substantially prevent the condensations from forming. The electric startup heater includes band heaters wrapped externally to a fuel gas pipe to heat the fuel gas from outside in. Compared to conventional heaters which provide superheating through internal heating elements, the electric startup heater reduces costs and provides increased safety, flexibility, operational efficiency and ability to adapt to varying fuel gas characteristics.
摘要:
A system for controlling the clearance between a turbine blade and the turbine casing that includes an impingement cooling manifold attached to a turbine casing, a temperature sensing device for determining the temperature of the turbine casing, a blower, a control system logic for determining the setting temperature of the casing, and a controller for controlling the blower, wherein the blower forces air onto the impingement cooling manifold to cool the casing towards the setting temperature and control the clearance.
摘要:
A system for controlling the clearance between a turbine blade and the turbine casing that includes an impingement cooling manifold attached to a turbine casing, a temperature sensing device for determining the temperature of the turbine casing, a blower, a control system logic for determining the setting temperature of the casing, and a controller for controlling the blower, wherein the blower forces air onto the impingement cooling manifold to cool the casing towards the setting temperature and control the clearance.
摘要:
A manifold mounting system for mounting an impingement cooling manifold to a casing of a turbine including a mounting pin affixed to a shroud pin of the turbine wherein the mounting pin extends through the impingement cooling manifold wherein the mounting pin comprises a securing device operable for securing the mounting pin to the impingement cooling manifold, and a leveling support leg affixed to the impingement cooling manifold wherein the mounting pin, securing device, and leveling support leg are operable for adjusting the gap distance between the impingement cooling manifold and the casing of the turbine.
摘要:
A rotational-exercise-device (device) is disclosed. In some exemplary embodiments, the device may comprise: a handle-member and a rotational-member. The handle-member may be an elongate member. The handle-member may further comprise a first-handle-member and a second-handle-member. The first-handle-member may removably attach to the second-handle-member. The handle-member may include a longitudinal-axis which runs down a center-longitude of the handle-member. The rotational-member may be a substantially ovoid shape. The rotational-member may comprise a hollow cylindrical cavity passing through a longitude-center of the rotational-member. A portion of the handle-member may pass removably through the longitude-center of the rotational-member. The rotational-member may be configured to rotate about this portion. When assembled and in use, a user may grip each handle-member (or portion thereof) and perform various exercises by placing some of the user's weight upon the rotational-member, while the user causes the rotational-member to rotate against some surface, such as a floor and/or wall.
摘要:
An on-line water wash system for a compressor having a bellmouth casing with a region of known high velocity inlet airflow and a number of rotating blades. The water wash system may include a number of water nozzles positioned within the bellmouth casing about the region of known high velocity inlet airflow and a stream of water droplets. The stream of water droplets is targeted by the water nozzles so as to avoid the bellmouth casing and the rotating blades.
摘要:
A portable muscle exercise device with no moving parts that may be used from a sitting, standing, reclined, supine, and/or prone position is described and disclosed. In some exemplary embodiments, the device may comprise a resilient member. The member may comprise an upper exterior surface and a lower exterior surface disposed opposite. The member may have a five pointed star shape. The resilient property may be derived from one or more of a material of construction of the member and/or a gas filled interior volume. The member may be configured to be engaged by a first location on the user's body. The member may be configured to be engaged by the second, different, location on the user's body. When the user may exert a compression force by squeezing the first location towards the second location, the user's muscles between the first location and the second location may be exercised.
摘要:
A wet compression system for a gas turbine compressor having a bellmouth that includes a plurality of nozzles for spraying a fine spray of liquid disposed within an aft section of the bellmouth. The aft section of the bellmouth may include a downstream half of the bellmouth, and the nozzles may be connected to a plurality of struts, each of the struts comprising a structural member that connects an inner diameter casing of the bellmouth to an outer diameter casing of the bellmouth. In some embodiments, the nozzles may be positioned on a leading edge of at least one of the struts and a minimum clearance of at least approximately 0.2 m may be maintained between the nozzles and the inner diameter casing of the bellmouth. In other embodiments, the nozzles may be positioned on a trailing edge of at least one of the struts and a minimum clearance of at least approximately 0.05 m may be maintained between the nozzles and the inner diameter casing of the bellmouth.