ASSEMBLY AND METHOD FOR CONNECTING ENDS OF GENERATOR STATOR COILS WITH MANIFOLD
20190020250 ยท 2019-01-17
Inventors
Cpc classification
H02K15/028
ELECTRICITY
H02K9/197
ELECTRICITY
H02K15/0093
ELECTRICITY
H02K15/0006
ELECTRICITY
International classification
H02K15/00
ELECTRICITY
H02K9/197
ELECTRICITY
Abstract
An assembly and a method for connecting ends of generator stator coils with a manifold are presented. The assembly includes an adapter having a sleeve connection conduit connected to a sleeve of the manifold and two hose connection conduits. Two hoses are connected between the two hose connection conduits and end of top stator coil and end of bottom stator coil respectively. The adapter provides two separate coolant flow paths from one sleeve of the manifold to the top stator coil and the bottom stator coil through two hoses. The assembly provides a simple modification to resolve connection issues between generator stator coils and manifold during stator coil rewinding as well as a possibility to monitor coolant temperatures of top and bottom stator coils independently.
Claims
1. An assembly for connecting an end of a generator stator coil with a manifold, wherein the stator coil comprises a top stator coil and a bottom stator coil, wherein the manifold supplies coolant for cooling the stator coil, the assembly comprising: a sleeve connected to the manifold; an adapter, wherein the adapter comprises a sleeve connection conduit configured to be attached to the sleeve, and wherein the adapter further comprises two hose connection conduits; and two hoses, wherein the two hoses are configured to be connected between the two hose connection conduits of the adapter and an end of the top stator coil and an end of the bottom stator coil respectively, wherein the adapter is arranged between the sleeve and the two hose for providing two separate coolant flow paths from the sleeve connected to the manifold to the top stator coil and the bottom stator coil through the two hoses.
2. The assembly as claimed in claim 1, wherein the adapter is attached to the sleeve by inserting into the sleeve.
3. The assembly as claimed in claim 1, wherein the adapter is attached to the sleeve by welding to the sleeve.
4. The assembly as claimed in claim 1, wherein the adapter further comprises a chamber between the sleeve connection conduit and the two hose connection conduits.
5. The assembly as claimed in claim 4, wherein the adapter further comprises a plug to seal a plenum inside the chamber.
6. The assembly as claimed in claim 1, wherein the adapter has a Y-shape with the two hose connection conduits symmetrically branching out from the sleeve connection conduit.
7. The assembly as claimed in claim 1, wherein the adapter has a Wye-shape with one hose connection conduit straightly extending out from the sleeve connection conduit and the other hose connection conduit branching out from the sleeve connection conduit.
8. The assembly as claimed in claim 1, further comprising two thermal sensors attached to the two hose connection conduits of the adapter respectively.
9. A method for connecting an end of a generator stator coil with a manifold, wherein the stator coil comprises a top stator coil and a bottom stator coil, wherein the manifold supplies cooling flow to the stator coil, the method comprising: connecting a sleeve to the manifold; attaching an adapter to the sleeve, wherein the adapter comprises a sleeve connection conduit configured to be attached to the sleeve, and wherein the adapter further comprises two hose connection conduits; and connecting two hoses between the two hose connection conduits of the adapter and an end of the top stator coil and an end of the bottom stator coil respectively, wherein the adapter is arranged between the sleeve and the two hoses for providing two separate coolant flow paths from the sleeve connected to the manifold to the top stator coil and the bottom stator coil through the two hoses.
10. The method as claimed in claim 9, wherein the adapter is attached to the sleeve by inserting into the sleeve.
11. The method as claimed in claim 9, wherein the adapter is attached to the sleeve by welding to the sleeve.
12. The method as claimed in claim 9, wherein the adapter further comprises a chamber between the sleeve connection conduit and the two hose connection conduits.
13. The method as claimed in claim 12, wherein the adapter further comprises a plug to seal a plenum inside the chamber.
14. The method as claimed in claim 9, wherein the adapter has a Y-shape with the two hose connection conduits symmetrically branching out from the sleeve connection conduit.
15. The method as claimed in claim 9, wherein the adapter has a Wye-shape with one hose connection conduit straightly extending out from the sleeve connection conduit and the other hose connection conduit branching out from the sleeve connection conduit.
16. The method as claimed in claim 9, further comprising attaching two thermal sensors to the two hose connection conduits of the adapter respectively.
17. A method for modifying a manifold connection, wherein the manifold connection is configured to be connected to an end of a generator stator coil comprising a top stator coil and a bottom stator coil, wherein the manifold connection comprises a sleeve connected to a manifold supplying coolant and a hose connected to the sleeve, the method comprising: removing the hose from the sleeve; attaching an adapter to the sleeve, wherein the adapter comprises a sleeve connection conduit configured to be attached to the sleeve, and wherein the adapter further comprises two hose connection conduits; and connecting two hoses to the two hose connection conduits of the adapter, wherein the adapter is arranged between the sleeve and the two hoses for providing two separate coolant flow paths from the sleeve connected to the manifold to the top stator coil and the bottom stator coil through the two hoses.
18. The method as claimed in claim 17, wherein the adapter is attached to the sleeve by inserting into the sleeve.
19. The method as claimed in claim 17, wherein the adapter is attached to the sleeve by welding to the sleeve.
20. The method as claimed in claim 17, further comprising attaching two thermal sensors to the two hose connection conduits of the adapter respectively.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0011] Exemplary embodiments of the application are explained in further detail with respect to the accompanying drawings. In the drawings:
[0012]
[0013]
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[0019] To facilitate understanding, identical reference numerals have been used, where possible, to designate identical elements that are common to the figures.
DETAILED DESCRIPTION OF INVENTION
[0020] A detailed description related to aspects of the present invention is described hereafter with respect to the accompanying figures.
[0021]
[0022] As illustrated in
[0023]
[0024]
[0025] According to an exemplary embodiment as illustrated in
[0026]
[0027] According to the embodiments of the invention, the new manifold connection 300 using an adapter 310 provides two separate hose conduit connections 314 from one single sleeve 220 connected to a manifold 210. The new manifold connection 300 allows two hoses 230 to be separately connected between the top stator coil 112 and the bottom stator coil 114 to a manifold 210 through one single sleeve 220. Temperatures of coolant flowing through the top stator coil 112 and the bottom stator coil 114 may be measured separately by two separate thermal sensors 250 attached to the two separate hose conduit connections 314 of the adapter 310. The new manifold connection 300 provides advantages of monitoring operation of a generation stator 100.
[0028] During generator stator coil rewinding of an existing generator stator 100, such as a generator stator 100 having a configuration shown in
[0029] According to aspects of the invention, an existing manifold connection 200 in an existing generator stator 100 may be modified to the new manifold connection 300 so that existing top stator coil 112 and existing bottom stator coil 114 may be connected to two hoses 230 separately. Two thermal sensors 250 may be attached to the two hose connection conduits 314 of the adapter 310 at an outlet side so that the coolant temperatures of the top stator coil 112 and the bottom stator coil 114 may be measured independently. Referring to
[0030] According to the embodiments of the invention, modification of an existing manifold connection 200 using an adapter 310 provides two separate hose conduit connections 314 from one single sleeve 220 connected to an existing manifold 210 without replacing the existing manifold 210, or without changing design of a generator stator coil during stator coil rewinding. The adapter 310 provides two separate coolant flow paths from the one single sleeve 220 of the manifold 210 to the top stator coil 112 and the bottom stator coil 114 through the two hoses 230.
[0031] Various embodiments of an adapter 310 are illustrated in
[0032] With reference to
[0033] With reference to
[0034] According to an aspect, the proposed manifold connection 300 may connect two hoses 230 to one sleeve 220 of a manifold 210. The proposed manifold connection 300 may allow connecting a stator coil having a different design to an existing manifold 210 during stator coil rewinding. The proposed manifold connection 300 may provide a simple modification to resolve connection issues between generator stator coils and manifold 210 during stator coil rewinding, and thus significantly reduces cost during stator coil rewinding.
[0035] According to an aspect, the proposed manifold connection 300 may replace leak-prone brazed joint hose connection by welding and clamping.
[0036] According to an aspect, the proposed manifold connection 300 may allow measuring coolant temperatures of the top stator coil 112 and the bottom stator coils 114 independently by attaching two thermal sensors 250 to two hose connection conduits 314 separately. The proposed manifold connection 300 may provide better fault detection of stator coil without attaching additional thermal sensors between the top stator coils 112 and the bottom stator coils 114.
[0037] Although various embodiments that incorporate the teachings of the present invention have been shown and described in detail herein, those skilled in the art can readily devise many other varied embodiments that still incorporate these teachings. The invention is not limited in its application to the exemplary embodiment details of construction and the arrangement of components set forth in the description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. The use of including, comprising, or having and variations thereof herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items. Unless specified or limited otherwise, the terms mounted, connected, supported, and coupled and variations thereof are used broadly and encompass direct and indirect mountings, connections, supports, and couplings. Further, connected and coupled are not restricted to physical or mechanical connections or couplings.
REFERENCE LIST
[0038] 100: Generator Stator [0039] 112: Top Stator Coil [0040] 114: Bottom Stator Coil [0041] 200: Existing Manifold Connection [0042] 210: Manifold [0043] 220: Manifold Sleeve [0044] 222: Sleeve Insert [0045] 224: Sleeve Cutting Location [0046] 230: Hose [0047] 240: End Fitting [0048] 250: Thermal Sensor [0049] 300: New Manifold Connection of the Invention [0050] 310: Adapter [0051] 312: Sleeve Connection Conduit [0052] 314: Hose Connection Conduit [0053] 316: Chamber [0054] 317: Plenum [0055] 318: Plug [0056] 320: Clamp