An upper bundle steam generator cleaning system including a cleaning head deployment and support device receivable through a hand hole of the steam generator and including retractable cylinders which raise the cleaning head up through the flow slots to position a cleaning head about a flow slot of the upper tube bundles; and a cleaning head mounted with the support device for directing fluid about the tubes of the upper bundles of the steam generator for directing fluid about the tubes of the upper bundles of the steam generator thereby cleaning the generator from the top down flushing deposits downward during the cleaning process.
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0. 31. A method of cleaning a steam generator from the top down, the method comprising:
inserting a cleaning head device through a hand hole of the steam generator and deploying the cleaning head upwards to a position about a flow slot of the upper tube bundles of the steam generator; inserting a cleaning head between the rows of tubes and directing fluid about the upper tube bundles proximate the cleaning head device; and successively lowering the cleaning head and repositioning it proximate the next lower flow slot; and again directing fluid about the tube bundles proximate the cleaning head device thereby flushing deposits downward during the cleaning process.
0. 24. An upper bundle steam generator cleaning system comprising:
a cleaning head deployment and support device receivable within the steam generator and including means to raise and position a cleaning head about the upper bundles of the steam generator; and a cleaning head lance affixable to said support device including means for directing fluid between the tubes from between the tubes.
0. 33. An upper bundle steam generator cleaning system comprising:
a cleaning head means deployment and support device receivable within the steam generator and including means to raise and position a cleaning head means about the upper bundles of the steam generator; cleaning head means mounted with said support device; said cleaning head means including means for directing fluid about the tubes of the upper bundles of the steam generator; and means for registering said cleaning head means about the upper bundles of the steam generator during cleaning.
0. 30. An upper bundle nuclear power plant steam generator cleaning system for cleaning the generator from the top down thereby flushing deposits downward during the cleaning process, the system comprising:
a cleaning head deployment and support device including means for positioning a cleaning head within a flow slot about the upper bundles of a steam generator; a bulk cleaning head affixable to said support device including means for directing fluid between the tubes from the flow slot; a cleaning head lance affixable to said support device including means for directing fluid between the tubes from in between the tubes; and means for supporting said cleaning heads about a tube support plate of the steam generator.
0. 32. A method of cleaning a steam generator from the top down, the method comprising:
inserting a cleaning head device through a hand bole of the steam generator and deploying the cleaning head upwards to a positioning about a flow slot of the upper tube bundles of the steam generator; directing fluid about the upper tube bundles proximate the cleaning head device; successively lowering the cleaning head and repositioning it proximate the next lower flow slot; again directing fluid about the tube bundles proximate the cleaning head device thereby flushing deposits downward during the cleaning process; and filling the steam generator with water and lowering the level of water therein as the cleaning head is lowered to allow additional agitation and cleaning as the directed fluid strikes the water surface.
0. 12. An upper bundle nuclear power plant steam generator cleaning system for cleaning the generator from the top down thereby flushing deposits downward during the cleaning process, the system comprising:
a cleaning head deployment and support device including means for positioning a cleaning head at a flow slot about the upper bundles of a steam generator; a bulk cleaning head affixable to said support device including an arm extendable along the direction of a flow slot for directing a fluid between the tubes from the flow slot, said arm having a plurality of nozzles alienable with spaces between the tubes proximate the flow slot, said nozzles opposed to each other for cleaning tubes on opposite sides of the flow slot at the same time and balancing any thrust received by the arm; and a cleaning head lance affixable to said support device including means for directing fluid between the tubes from in between the tubes.
0. 26. An upper bundle steam generator cleaning system comprising:
a cleaning head means deployment and support device receivable within the steam generator and including means to raise and position a cleaning head means about the upper bundles of the steam generator; and cleaning head means mounted with said support device; said cleaning head means including means for directing fluid about the tubes of the upper bundles of the steam generator said means for directing fluid including an arm extendable along the direction of a flow slot, said arm having a plurality of nozzles alignable with spaces between the tubes said nozzles opposed to each other for cleaning tubes on opposite sides of a flow slot at the same time and for balancing any thrust received by the arm.
0. 28. An upper bundle steam generator cleaning system comprising:
a cleaning head means deployment and support device receivable within the steam generator and including means to raise and position a cleaning head means about the upper bundles of the steam generator; cleaning head means mounted with said support device; said cleaning head means including means for directing fluid about the tubes of the upper bundles of the steam generator; and means for releasably supporting said cleaning head means about the tubes of the upper bundles of the generator.
0. 18. A method of cleaning a steam generator from the top down, the method comprising:
inserting a cleaning head device through a hand hole of the steam generator and deploying the cleaning head upwards to a position about a flow slot of the upper tube bundles of the steam generator; directing fluid about the upper tube bundles proximate the cleaning head device including spraying the tubes from a cleaning head located about a flow slot; and successively lowering the cleaning head and repositioning it proximate the next lower flow slot; and again directing fluid about the tube bundles proximate the cleaning head device thereby flushing deposits downward during the cleaning process.
0. 1. An upper bundle steam generator cleaning system comprising:
a cleaning head means deployment and support device receivable within the steam generator and including means to raise and position a cleaning head means about the upper bundles of the steam generator, said cleaning head means deployment and support device including a translation rail extending between a hand hole of steam generator and a center tie rod along the blow down lane; and cleaning head means mounted with said support device; said cleaning head means including means for directing fluid about the tubes of the upper bundles of the steam generator for cleaning the generator from the top down thereby flushing deposits downward during the cleaning process.
0. 56. An upper bundle steam generator, cleaning system comprising:
a cleaning head deployment and support device receivable within the steam generator and including means to raise and position a cleaning head about the upper bundles of the steam generator; and a cleaning head lance affixable to said support device and extendable between the tubes, said lance including a plurality of nozzles for directing fluid between the tubes when said lance is located between the tubes.
0. 60. An upper bundle steam generator cleaning system comprising:
a cleaning head deployment and support device receivable within the steam generator and including means to raise and position a cleaning head means about the upper bundles of the steam generator; cleaning head means mounted with said support device; and cleaning head means including means for directing fluid about tubes of the upper bundles of the steam generator; and means for releasably supporting said cleaning head means about the tubes of the upper bundles of the generator.
0. 65. An upper bundle steam generator cleaning system comprising:
a cleaning head means deployment and support deice receivable within the steam generator and including means to raise and position a cleaning head means about an upper tube bundle of the steam generator; said cleaning head means mounted with said cleaning head means deployment and support device; said cleaning head means including means for directing fluid about the tubes of the upper tube bundles of the steam generator; and means for registering said cleaning head means about the upper bundle of the steam generator during cleaning.
0. 63. A method of cleaning a steam generator having tubes from the top down, the method comprising:
inserting a cleaning head device through a hand hole of the steam generator and deploying the cleaning head upwards to a position about a flow slot of an upper tube bundle of the steam generator; inserting a cleaning head between the tows of tubes and directing fluid about the upper tube bundle proximate the cleaning head device; successively lowering the cleaning head and repositioning it proximate a next lower flow slot; and again directing fluid about the upper tube bundle proximate the cleaning head device thereby flushing deposits downward during the cleaning process.
0. 66. An upper bundle steam generator cleaning system comprising:
a cleaning head deployment and support device receivable within the steam generator including means to raise and position a bulk cleaning head about the upper bundles of the steam generator, said bulk cleaning head affixable to said support device and including an arm extendable along a direction of a flow slot, said arm having a plurality of nozzles alignable with spaces between the tubes proximate the flow slot for directing fluid between the tubes from the flow slot; and a cleaning head lance affixable to said support device including means for directing fluid between the tubes when said lance is located between the tubes.
0. 51. A method of cleaning a steam generator having tubes from the top down, the method comprising:
inserting a cleaning head device through a hand hole of the steam generator and deploying the cleaning head upwards to a position about a flow slot of an upper tube bundle of the steam generator; directing fluid about the upper tube bundles proximate the cleaning head device including spraying the tubes from a cleaning head located about said flow slot; and successively lowering the cleaning head and repositioning it proximate the next lower flow slot; and again directing fluid about the tube bundles proximate the cleaning head device thereby flushing deposits downward during the cleaning process.
0. 58. An upper bundle steam generator cleaning system comprising:
a cleaning head means deployment and support device receivable within the steam generator and including means to raise and position a cleaning head means about the upper bundles of the steam generator; and cleaning head means mounted with said support device; and cleaning head means including means for directing fluid about tubes of the upper bundles of the steam generator, said means for directing fluid including an arm extendable along a direction of a flow slot, said arm having a plurality of nozzles alignable with spaces between the tubes, said nozzles opposed to each other for cleaning tubes on opposite sides of a flow slot at the same time and for balancing any thrust received by the arm.
0. 62. An upper bundle nuclear power plant steam generator cleaning system for cleaning the generator from the top down thereby flushing deposits downward during the cleaning process, the system comprising:
a cleaning head deployment and support device including means for positioning a cleaning head within a flow slot about the upper bundles of a steam generator; a bulk cleaning head affixable to said support device and extendable between the tubes, said lance including a plurality of nozzles for directing fluid between tubes from the flow slot; a cleaning head lance affixable to said support device including means for directing fluid between the tubes when said lance is located between the tubes; and means for supporting said cleaning heads about a tube support plate of the steam generator.
0. 34. An upper bundle steam generator cleaning system comprising:
a cleaning head deployment and support device receivable within the steam generator and including means to raise and position a cleaning head about the upper bundles of the steam generator, said cleaning head deployment and support device including a translation rail extending between a band hole of said steam generator and a center tie rod along a blow down line; and a cleaning head mounted on said support device; said cleaning head including an arm extendable along a direction of a flow slot, said arm having a plurality of nozzles alignable with spaces between tubes for directing fluid about the tubes of the upper bundles of the steam generator for cleaning the generator from the top down, thereby flushing deposits downward during the cleaning process.
0. 64. A method of cleaning a steam generator from the top down, the method comprising:
inserting a cleaning head device through a hand hole of the steam generator and deploying the cleaning head device upwards to a position about a flow slot of an upper tube bundle of the steam generator; directing fluid about the upper tube bundle proximate the cleaning head device; successively lowering and cleaning head device and repositioning it proximate a next lower flow slot; again directing fluid about the upper tube bundle proximate the cleaning head device thereby flushing deposits downward during the cleaning process; and filling the steam generator with water and lowering the level of water thereby as the cleaning head device is lowered to allow additional agitation and cleaning as the directed fluid strikes the water surface.
0. 45. An upper bundle nuclear power plant steam generator cleaning system for cleaning a generator having tubes from the top down thereby flushing deposits downward during the cleaning process, the system comprising:
a cleaning head deployment and support device including means for positioning a cleaning head at a flow slot about the upper bundle of a steam generator; a bulk cleaning head affixable to said support device including an arm extendable along the direction of said flow slot for directing a fluid between the tubes from the flow slot, said arm having a plurality of nozzles alignable with spaces between the tubes proximate the flow slot, said nozzles opposed to each other for cleaning the tubes on opposite sides of the flow slot at the same time and balancing any thrust received by the arm; and a cleaning head lance affixable to said support device including means for directing fluid between the tubes when said lance is located between the tubes.
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This invention relates to an upper bundle cleaning system for a nuclear power plant steam generator which eliminates the need to use chemical cleaning techniques.
Steam generators convert heat from the primary side of a nuclear power plant to steam on the secondary side so that the primary and secondary systems are kept separate. A typical generator is a vertical cylinder consisting of a large number of U-shaped tubes which extend from the floor or "tube sheet" of the generator. High temperature and pressure fluid from the reactor travels through the tubes giving up energy to a feed water blanket surrounding the tubes in the generator creating steam and ultimately power when later introduced to turbines.
Steam generators were designed to last upwards of forty years but in practice such reliability figures have proven not to be the case. The problem is that sludge from particulate impurities suspended in the feed water forms on the tubes which greatly affects the efficiency of the generator and can even cause the tubes to degrade to the point of causing fissures in the tubes. If radioactive primary fluid within the tubes seeps into the secondary side, the result can be disastrous. Plugging or otherwise servicing such fissures is time consuming and results in expensive down time during which power must be purchased from other sources at a great expense.
There are known methods for cleaning the tubes proximate the bottom of the steam generator using flexible lances and the like which clean the tubes using water under pressure, but since a typical steam generator can be thirty feet tall, it is difficult to reach the sludge at the upper levels of the tubes using water jets. So, chemical cleaning is used but there are several disadvantages. First, chemical cleaning is very expensive (from $5,000,000 to $10,000,000 per application) and requires an extended outage. Also, some corrosion of steam generator internals by the solvents used will occur during the cleaning. In addition, large quantities of hazardous, possibly radioactive waste may be generated. Disposal of this waste is very expensive. For these reasons, although many utilities have considered chemical cleaning, few plants have actually implemented chemical cleaning.
On the other hand, there are severe technical challenges faced when considering alternate cleaning methods. A typical steam generator has approximately 50,000 square feet of heat transfer area. The tube bundle is about 10 feet in diameter and 30 feet tall but the access alley in the middle of the tube bundle is only 3.5 inches wide and is interrupted by support plates approximately every 4 feet. There are flow slots through the support plates but they are very small in size, typically 2.75 by 15 inches. In addition, the access into the steam generator is limited to a six inch hand hole. Finally, inter tube gaps are only 0.406 wide or smaller.
Thus, the inherent design parameters of a typical steam generator make it difficult to incorporate water jet sludge lancing techniques at the upper tube bundles even though these techniques are adequate to clean the tubes at the level of the tube sheet at the bottom most portion of the steam generator. See, e.g. U.S. Pat. Nos. 4,700,662; 4,980,120; 4,887,555; 4,676,201; and 4,769,085.
It is therefore an object of this invention to provide an upper bundle steam generator cleaning system.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which cleans the generator from the top down thereby flushing deposits downward during the cleaning process.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which eliminates the need to use chemical cleaning techniques and overcomes the disadvantages inherent in chemical cleaning or which can be used in conjunction with chemical cleaning.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which adequately cleans the upper bundles of the steam generator using water under pressure even within the close confines of the tubes of the steam generator.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which successfully delivers sufficient water energy to remove scale and also distributes this energy in an efficient manner throughout the tube bundle.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which accomplishes cleaning remotely thereby overcoming the access restrictions of the steam generator as well as reducing exposure of personnel to radiation.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which maximizes cleaning effectiveness with a minimum use of water.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which minimizes the number of equipment moves during the cleaning procedure thereby reducing cleaning and hence outage time.
It is a further object of this invention to provide such an upper bundle steam generator cleaning system which utilizes both a bulk cleaning head and a rigid lance for intertube inspection and cleaning.
It is a further object of this invention to provide a method for cleaning the steam generator from the top down thereby flushing deposited downward during the cleaning process using the system of this invention.
This invention results from the realization that the most effective way to clean a steam generator is from the top down thereby flushing deposits downward as the cleaning process progresses; that there is an access path to the upper regions of the steam generator and that these upper regions of the steam generator can be cleaned without chemical cleaning techniques if a cleaning head which delivers fluid under pressure about the tubes can be deployed along this access path from the bottom of the steam generator and then raised up through successive flow slots into position; and furthermore that all the tubes on one side of the steam generator at one level can be cleaned from one flow slot thereby minimizing equipment moves and cleaning time; that a mechanical swinging arm can be used for bulk cleaning; that alignment of the nozzles of the swing arm first on one side of the tube gap and then on the other side to clean all the surfaces of the tubes maximizes cleaning effectiveness with a minimum use of water; and that a rigid lance which extends between the rows of tubes accomplishes effective inter-tube cleaning.
This invention features and may suitably comprise, include, consist essentially of and/or consist of an upper bundle steam generator cleaning system. There is a cleaning head means deployment and support device receivable through a hand hole of the steam generator which includes means to position a cleaning head about a flow slot of the upper bundles of the steam generator. The cleaning head means mounted with the support device directs fluid about the tubes of the upper bundles of the steam generator for cleaning the generator from the top down thereby flushing deposits downward during the cleaning process.
The cleaning head means deployment and support device includes a translation rail extending between a hand hole of the steam generator and the center tie rod along the blow down lane. There is a rotation stage including a number of vertically extendable cylinders pivotably mounted on the translation rail.
One head means includes means for directing fluid between the tubes from a flow slot such as an arm extendable along the direction of the flow slot wherein the arm includes a plurality of nozzles alienable with the spaces between the tubes. A number of the nozzles are opposed to each other for cleaning tubes on opposite sides of a flow slot at the same time and for balancing the thrust received by the arm. There are means for changing the pitch orientation of the nozzles and for rotating the arm to spray fluid about tubes proximate an adjacent flow slot.
Another cleaning head includes means for directing fluid between the tubes from in between the tubes. The means for directing fluid from between the tubes includes a lance extendable in between the tubes; the lance has a number of nozzles for spraying fluid about the tubes from in between the tubes. The lance is rotatable from a position about the support device for deployment of the cleaning head to a position between the tubes for cleaning.
The system further includes means for releasably supporting the cleaning heads about a flow slot. The means for releasably supporting includes rotatable fingers engagable with a side wall of a flow slot in a tube sheet support plate.
This invention also features an upper bundle nuclear power plant steam generator cleaning system for cleaning the generator from the top down thereby flushing deposits downward during the cleaning process, the system comprising: a cleaning head deployment and support device including means for positioning a cleaning head at a flow slot about the upper bundles of a steam generator; a bulk cleaning head affixable to the support device including means for directing fluid in between the tubes from the flow slot; and, a cleaning head lance also affixable to the support device including means for directing fluid in between the tubes from between the tubes.
The bulk cleaning head includes an arm extendable along the direction of a flow slot, the arm having plurality of nozzles alingable with the spaces between the tubes proximate the flow slot. A number of the nozzles are opposed to each other for cleaning tubes on opposite sides of the flow slot at the same time and balancing the thrust received by the arm. The system further includes means for changing the pitch orientation of the nozzle and for rotating the arm to spray fluid about tubes proximate ad adjacent flow slot. The cleaning head lance is extendable between the tubes and has a number of nozzles for spraying fluid about the tubes from between the tubes. The lance is rotatable from a position about the support device for deployment to a position between the tubes for cleaning. The system further includes means for supporting the bulk cleaning heads about a tube sheet support of the steam generator.
Finally, this invention features a method of cleaning a steam generator from the top down: a cleaning head device is inserted through a hand hold of the steam generator and deployed to a position about the upper tubes bundles of the steam generator; fluid is directed about the tube bundles proximate the cleaning head device; the cleaning head is successively lowered and repositioned proximate the next lower flow slot and fluid is again directed about the tube bundles proximate the cleaning head device thereby flushing deposits downward during the cleaning process.
The method includes spraying the tubes from the cleaning head located about one flow slot wherein the cleaning head is positioned to clean tubes proximate one flow slot; is moved to a position proximate an adjacent flow slot for cleaning tubes proximate that flow slot; and moved again to a position proximate another adjacent flow slot for cleaning tubes proximate that adjacent flow slot thereby achieving full coverage without retracting the cleaning head device through the flow slots.
The method also includes spraying water first on one side of the tube gap and then on the other side of the tube gap for effective cleaning and water conservation. Finally, the method includes filing the steam generator with water and lowering the level of water as the cleaning process progresses to provide an agitation action and enhanced cleaning as the water from the cleaning head spray nozzles strikes the surface of the water within the steam generator.
Other objects, features and advantages will occur to those skilled in the art from the following description of a preferred embodiment and the accompanying drawings, in which:
The Westinghouse model W44 and W51 steam generators comprise the largest steam generator market segment and the dimensions of the W51 are similar to the W44. The W44 steam generator utilizes 116" diameter tube support plates spaced evenly at 51" above the tube sheet. There are two 6" diameter hand holes such as hand hole 36 at each end of the 3 ½" blow down lane 38 at the tube sheet 32 level. Each tube sheet support plate has three flow slots measuring 2-2 ¾ by 15" spaced at 4" inches on each side of the center tie rod 40. The flow slots are aligned with respect to each other so that there is a clear "line of sight" vertical passage from the blow down lane 38 to the U-bends 41 of the tubes above the top tube support plate 26.
As discussed in the Background of the Invention above, there are known instruments for water-spray cleaning the areas between tube sheet 32 and first tube sheet support plate 14 at the bottom of the steam generator but the very close confines within the upper bundles of the steam generator make cleaning the tubes near the upper support plates 16-26 very difficult. See, e.g., U.S. Pat. No. 5,265,129.
In this invention, it was realized that there is an access path 34 from hand hole 36 along blow down lane 38 to the center tie rod 40 and then upwards through the aligned flow slots 28, 30, etc. in each support plate to the top portion 42 of the steam generator. And, it was realized that if a cleaning head or heads could be deployed to the top portion 42 of the steam generator, the generator could be cleaned from the top down thereby flushing deposits downward during the cleaning process. The technical challenge is to design cleaning heads which will fit within the close confines of the interior of the steam generator, to design cleaning heads which will still deliver water under sufficient pressure to thoroughly clean the tubes, and to design cleaning heads which will not become jammed inside the steam generator.
The upper bundle steam generator cleaning system of this invention, wherein an "upper bundle" is defined as those tubes within the steam generator above the first tube support plate 14, includes four main subsystems or components: (a) the cleaning head deployment and support device shown in
The Deployment/Support SubSystem
The deployment subsystem 50,
This design is adapted from an existing design called the "Secondary Inspection Device (SID)" available from R. Brooks Associates of 6546 Pound Road, Williamson, N.Y., 14589 (see U.S. Pat. No. 5,265,129) and is a nine stage pneumatic cylinder currently used to transport a video camera up the blow down lane of a steam generator. Consequently, it is sized appropriately to pass through the hand hole and the flow slots of the steam generator. In its normal configuration, however, the secondary inspection device has several major shortcomings. The first of these is lack of control. The current control procedure is to increase cylinder air pressure to extend and reduce pressure to either retract or cease extending. Since the interstage seals permit significant leakage, it is frequently difficult to achieve a stable position. Also, since interstage friction plays a role in establishing an equilibrium position, anything which changes interstage friction, such as vibration, will cause the system to seek a new equilibrium position.
The other major short coming is an inadequate pay load capability. As a result of interstage seal leakage and small passages through the pressure regulator and supply hose, actual cylinder pressure can never be made to approach the pressure of the air supply and pay load is limited to about 5 pounds. Accordingly, this payload capability must be improved by a factor of 5-10 to support the cleaning heads of this invention.
A modification is made to incorporate cables inside the cylinders and a cable reel to control payout and takeup. Pressure inside the cylinders is maintained at a constant value, high enough to produce extension but held in check by the cable. Paying out the tension cable permits extension and taking up cable produces retraction. Cylinder pressure relief is provided for the retraction step. The cable reel is equipped with an encoder which would supply vertical position information. To improve the payload, internal pressure is increased, and cylinder weight decreased or both. Interstage seals are improved to greatly reduce leakage and pressurization is provided by water rather than air. Using water as a pressurization medium, internal pressures are several hundred psi are possible without creating an explosion hazard as would be the case with a compressible medium. Also, fabricating the cylinders from aluminum rather than steel reduces by about ⅔ the weight of the cylinders themselves. The control system is further discussed with reference to FIG. 14.
The Bulk Cleaning Head Subsystem
Bulk cleaning head subsystem 70,
Arm 70 also swings over to the position shown in relief at 92 to clean the tubes proximate an adjacent flow slot without having to retract the cleaning head and deploy it up through the adjacent flow slot.
More particularly, as shown in
In this way, one complete side of the steam generator is cleaned while the cleaning head deployment and support equipment extends through one series of vertically aligned flow slots. So, the bulk cleaning head subsystem is deployed to top flow slot 25,
Another aspect of this invention involves using specific nozzle alignment for bulk cleaning to maximize cleaning effectiveness with a minimum use of water. Specifically, the nozzles 84, 88 etc. are aligned first on one side of the tube gap 79, and then on the other side of the tube gap 79 to clean one side of the tubes and then the other. In testing, this procedure had a significant impact on the cleaning effectiveness and was instrumental in increasing the amount of sludge removed from the tube surfaces. Other testing variables included sludge type, nozzle pressure, nozzle flow rate, tilt speed, bulk cleaner location, nozzle design, and nozzle alignment. A prototype design proved that a bulk cleaning head directing water from the blow down lane can remove tube surface deposits and clean support plates and quatrefoils. Still another aspect of this the cleaning methodology of this invention involves slowly lowering the level of water within the steam generator as cleaning progresses top to bottom with the cleaning heads. In this way, additional agitation is provided and cleaning is enhanced as the nozzle jet spray strikes the surface of the water within the generator.
The Rigid Lance
Rigid lance 200,
As shown in
To enable the operator to align the bullet nose 201 with the next flow slot as the head traverses up to the tube sheet support plate of interest, one CCD video camera is mounted within the head and aimed upwards as shown for camera 184. If appropriate, two video cameras would be mounted in horizontal opposition in the head to enable viewing down the no tube lane and at the tubes immediately adjacent thereto. To provide viewing capability in the intertube lanes, video probes can be mounted on the lance tip 209 shown in FIG. 7D. CCD chips are positioned to enable inspection of the crevice areas and observation of the water jetting operations. The cables for these videos probes are routed through the rotary stage on the blow down lane cart and out the hand hole. To simplify the user interface, the signals would be multiplexed to a remote operator station where the video image of choice can be displayed. As indicated in
In general, the intertube lance of this invention accomplishes visual inspection, crevice cleaning, tube descaling, tube sheet plate flushing, corrosion sampling, and foreign object search and retrieval. Lance 205 must be as long as possible but cannot exceed the vertical spacing of the tube sheet support plates or else it can not be rotated from the vertical. Since the radii of both the W44 and the W51 generator tube sheet plates are greater than the vertical spacing of the tube sheet plates, there is an area shown in
Lance 200,
The Support Mechanism
Although the vertical deployment and support system will be laterally supported on the bottom of the tube sheet, it is necessary to provide lateral support at the top proximate the deployed spray head as well. During cleaning of the upper spans of the steam generator, the vertical deployment and support system will be extended up to 25 feet. Sideloads will be applied during lance insertion into and retraction from the tube bundle as well as during jet sweeping operations. The upper lateral support subsystem of this invention is shown in FIG. 11 and provides mechanical engagement with and disengagement from a tube support plate such as tube support plate 250 and requires no additional actuators.
As shown in
Retrieval is a concern where any equipment is deployed into the inner regions of the steam generator. Emergency retrieval according to this invention is accomplished by tension on the cylinder extension control cable which is attached to the second stage cylinder. If the fingers are in the stowed positioned as shown in
Other Subsystems
There is shown in
The control subsystem 340 shown in
Although specific features of the invention are shown in some drawings and not others, this is for convenience only as some feature may be combined with any or all of the other features in accordance with the invention.
Other embodiments will occur to those skilled in the art and are within the following claims:
Ashton, Augustus, Lovett, Timothy, Fischbach, Daniel L.
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