Pre-Formed Plug with Inter-Blade Profiles for Hydraulic Turbines
20200040740 · 2020-02-06
Inventors
- Benoît Papillon (Quebec, CA)
- Carl-Anthony Beaubien (Quebec, CA)
- David Allan Scott (Quebec, CA)
- Laurent Bornard (Quebec, CA)
- Louis Mathieu (Quebec, CA)
Cpc classification
F01D5/147
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2220/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B3/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B11/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2230/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B3/121
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/20
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
The invention concerns an inter-blade profile (14) for a turbine runner blade, said inter-blade profile (14) comprising a profile (16), and a plug (18), forming a basis of the profile (16) and intended for being inserted into a corresponding hole (21) made in a blade.
Claims
1. An inter-blade profile for a turbine runner blade, said inter-blade profile comprising a profile, and a plug, forming a basis of said profile and intended for being inserted into a corresponding hole made in said turbine runner blade.
2. An inter-blade profile according to claim 1, comprising at least one zone with a finite radius of curvature r between the lower part of the profile and an upper side of the plug.
3. An inter-blade profile according to claim 2, said radius of curvature r being variable along at least part of said lower part of the profile and at least part of said upper side of the plug.
4. An inter-blade profile according to claim 1, comprising at least one aeration passage.
5. An inter-blade profile according to claim 4, said at least one aeration passage comprising at least one slot and/or at least one hole through at least one of its lateral sides.
6. An inter-blade profile according to claim 1, comprising a removable cover plate, said cover comprising at least one aeration passage and securing means for securing said removable cover-plate onto said profile.
7. An inter-blade profile according to claim 6, said at least one aeration passage comprising at least one slot and/or at least one hole.
8. An inter-blade profile according to claim 6, said securing means comprising at least one hole for at least one screw.
9. A runner blade, comprising a blade comprising a hole, a hollow channel and at least one inter-blade profile according to claim 1.
10. A runner blade according to claim 9, said blade and said at least one inter-blade profile being fixed together.
11. A runner blade according to claim 10, said blade and said at least one inter-blade profile being welded or bolted or glued together.
12. A turbine runner, comprising runner blades, at least one of them according to claim 10, said runner blades being arranged between a crown and a band or said runner blades extending from a crown or from a central hub.
13. A method for fabricating a runner blade, comprising a blade and at least one inter-blade profile according to claim 1, said method comprising: fabricating a blade comprising a hole; positioning the plug of said inter-blade profile and assembling said plug with said blade.
14. The method according to claim 13, wherein said assembling comprises welding said plug and said blade together.
15. A method for fabricating a turbine runner, comprising runner blades arranged between a crown and a band or extending from a crown or from a central hub, at least one of said runner blades being according to claim 9, comprising assembling said blades with at least said crown or said central hub, and assembling said at least one blade according to claim 9 and at least one inter-blade profile according to claim 1.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0042]
[0043]
[0044]
[0045]
[0046]
[0047]
[0048]
DETAILED DISCLOSURE OF EMBODIMENTS
[0049]
[0050] The inter-blade profile 14 comprises a profile 16, delimited by 2 lateral walls 16.sub.1, 16.sub.2, and a plug 18 (
[0051] Said plug is intended to be inserted into a corresponding hole 21 made in the blade as illustrated on
[0052] The profile 16 has any shape adapted to the hydraulic requirements. In particular, it has at least one aeration passage, for example at least one slot(s) 30 (
[0053] It shall be noted that the geometries previously mentioned or illustrated in
[0054] The plug substantially extends in a plane XZ (
[0055] The profile substantially extends in a plane XY (
[0056] The profile has, along a Z axis which extends perpendicularly to plane XY (
[0057] The thickness of the profile is taken along the z direction. Said thickness can vary along the height of the profile. For example the thickness can be longer at the base than at the top, or vice-versa. The hydraulic shape of the profile can thus be constant or can vary along the height of the profile in length, thickness or shape.
[0058] The profile and its plug can be pre-shaped to have all the attributes normally achieved after welding. In particular, fillets can be provided at the intersections 24, 26 of the profile and the upper side 20 of the plug. An example of such a fillet is shown on
[0059] These fillets are pre-fabricated before assembly of the inter-blade profile with the blade, thus avoiding a manual control of the weld fillet radius during assembly between 2 neighbouring blades of an already assembled turbine, the space between such 2 neighbouring blades being limited.
[0060] The plug is shown on
[0061] As can be understood from
[0062] The profile is hollow and an internal channel of the profile communicates through said hole 21 with a channel inside the blade for the circulation of air through the blade, then through said internal channel of the profile and then through at least one aeration passage in the profile surface and finally into the flowing water.
[0063] The profile is fabricated with its plug. This can be done in a monobloc (as a single piece) or as a multi-piece assembly joining a base with a profile. The plug has a shape that fits into the hole 21 made in the blade (see
[0064] Alternatively, the plug can be fixed to the blade by screwing or bolting, with help of screws or bolts and corresponding holes in the plug and in the blade, wherein one or more gaskets can be used for water tightness. This makes the mounting and dismounting of the plug easier.
[0065]
[0066] A turbine runner according to the invention can comprise runner blades, at least one of them according to the invention, said runner blades being arranged between a crown and a band like on
[0067] Alternatively,
[0068] Another aspect of the invention, which can be combined with one or more of the above embodiments of an inter-blade profile, is illustrated on
[0069] At least one part 160 of at least one lateral wall 16.sub.1 or 16.sub.2 of the inter-blade profile is removable. The other part of the inter-blade profile is fixed to the blade.
[0070] Said removable part 160, or cover plate, comprises one or more aeration passage(s) 30, for example at least one slot(s) and/or hole(s), for providing aeration to the water flow. Other shapes of aeration passage were disclosed above in connection with
[0071]
[0072] Cover plate 160 is sufficiently small and the cover plate can be easily removed without disassembling the turbine, reducing stoppage time.
[0073] The cover plate can have a substantially square or rectangular shape as illustrated on
[0074] Removing said cover plate 160 from said inter-blade profile: [0075] offers access to the aeration channel 162 (located behind the cover plate) thus allowing cleaning and/or maintenance of said aeration channel 162 and/or removal of any foreign materials that are too large to fit through the aeration passages and are stuck behind them; [0076] and/or offers access to the aeration passage(s) 30, thus allowing cleaning and/or maintenance of this/these aeration passage(s) and/or of the outside and/or the inner surface of the cover plate 160; [0077] and/or allows modifications of the aeration passage(s) geometry or of the geometry of the inter-blade profile itself (since the cover plate itself forms part of the inter-blade profile, its geometry is part of the geometry of the inter-blade profile).
[0078] The cover plate 160 can also be replaced with another removable part having for example different aeration slot(s) and/or hole(s).
[0079] Thus a damaged cover plate (for example a cover plate having damaged aeration passages) can be easily replaced or design improvements can be integrated into the turbine design without requiring a major stoppage to remove and replace the turbine runner. These modifications can be incorporated directly into the removable and replaceable cover plate 160.
[0080] The removable cover plate according to the above embodiments can also be adapted to profiles fabricated together with a blade according to known techniques: it is compatible with a profile mounted on a plug, as explained above in connection with
[0081] A runner can be fabricated, incorporating inter blade profiles, for example according to the above embodiments disclosed in connection with