EP2379366A2 - Transport protection - Google Patents

Transport protection

Info

Publication number
EP2379366A2
EP2379366A2 EP09753061A EP09753061A EP2379366A2 EP 2379366 A2 EP2379366 A2 EP 2379366A2 EP 09753061 A EP09753061 A EP 09753061A EP 09753061 A EP09753061 A EP 09753061A EP 2379366 A2 EP2379366 A2 EP 2379366A2
Authority
EP
European Patent Office
Prior art keywords
load
mat
insulating material
electrically insulating
transports
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP09753061A
Other languages
German (de)
French (fr)
Inventor
Lennart HÄRDELL
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ABB Schweiz AG
Original Assignee
ABB Technology AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ABB Technology AG filed Critical ABB Technology AG
Publication of EP2379366A2 publication Critical patent/EP2379366A2/en
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60MPOWER SUPPLY LINES, AND DEVICES ALONG RAILS, FOR ELECTRICALLY- PROPELLED VEHICLES
    • B60M1/00Power supply lines for contact with collector on vehicle
    • B60M1/02Details
    • B60M1/04Mechanical protection of line; Protection against contact by living beings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61DBODY DETAILS OR KINDS OF RAILWAY VEHICLES
    • B61D39/00Wagon or like covers; Tarpaulins; Movable or foldable roofs

Definitions

  • the present invention relates to a method of protecting a high load, transported by means of an electrified track- guided transport system, against electrical flashover caused by the vicinity to electric contact lines.
  • the present invention also relates to a device for carrying out the method and to use of said device.
  • the height of the load is limited by the distance between the upper edge of the rail and a safe headway, > 150 mm, to a live contact line with supporting live cantilevers.
  • safe headway is meant the distance from the top part of the load to said live contact line.
  • the size of the load, in height, is limited by said safe headway, which is negative since this may necessitate manufacturing the pro- duct in several parts and then, after transport, assembling these parts at the final destination. Alternatively, it may be necessary to manufacture the product with dimensions that deteriorate its performance to a level below that which is actually desired.
  • the transport may be allowed to be performed with a diesel locomotive, while at the same time the contact line is caused to become dead.
  • this method is time-consuming and very costly since in many cases the load has to be transported over considerable distances.
  • it is not possible to make the contact line dead along many and long railway lines since this is not feasible within the framework of scheduled timetables for other traffic.
  • different lines may be owned by different operators, which additionally complicates the task of rendering the entire transport route dead.
  • the object of the present invention is to bring about a solution that does not exhibit any of the above-mentioned drawbacks.
  • a solution is aimed at which allows increasing the size of the load in the vertical direction .
  • the device comprises a mat of an electrically insulating material.
  • the distance between load and electric contact lines may be reduced without the risk of electrical flashovers increasing.
  • An additional advantage is that the load may be made higher than earlier. This is particularly advantageous if the basic structure of the load can be influenced by the fact that the height may be increased.
  • Another advantage is that, during transports, it is not necessary to render any electric con- tact lines dead, which entails a faster and simpler transport of the load while at the same time the other traffic is not affected.
  • the above-mentioned mat consists of a flexible material.
  • a flexible electrically insulating material is that, because the material is bendable, it is possible to use it over a broad spectrum of varying sizes of the load.
  • the electrically insulating material has an insulation level, Um, which at least amounts to 170/70 kV.
  • the requirements for such an insulation level apply to equipment that is to be used in the contact line and the electrically insulating material shall at least fulfil the same requirements for insulation level.
  • the distance from the load to the live parts in the contact line may be reduced by up to 150 mm.
  • the device comprises at least one spacer which is arranged between the electrically insulating material and the load. In this way, the electrically insulating material will have a highest point, which facilitates water run-off and hence reduces the risk of electrical flashovers caused by the vicinity to the live contact line.
  • the invention also relates to methods, in electrified track- guided transports of high loads, of protecting said load from electrical flashovers caused by the vicinity to electric contact lines, where a mat of an electrically insulating material is arranged adjacent to the load and between the upper side of said load and said contact lines.
  • a further aim is for the electrically insulating material to be arranged so that it covers the whole upper side of the load and also so as to cover part of the side panels of the load adjoining the upper side of the load. Hence, the risk of electrical flashovers between the load and electrical contact lines is reduced.
  • the electrically insulating material is arranged with a highest point on the upper side of the load. This ensures that any water collected on the electrically insulating material runs off and does not risk causing electrical flashovers between the electrically insulating material and the contact line.
  • the invention relates to use of a device accor- ding to the above which, in connection with electrified track-guided transports of a transformer or a reactor, is configured to protect the transformer/reactor from electrical flashovers between the transformer/reactor and an electric contact line.
  • Figure 1 shows a load arranged on a railway wagon, the load being covered with a device according to the invention.
  • Figure 2 shows a side view of a load arranged on a railway wagon, the load being covered with a device according to the invention .
  • Figure 1 shows a side view of a railway wagon 3, standing on a rail 1, on which a high load 5, such as a transformer or a reactor, is loaded.
  • the figure also shows a live contact line 7 with associated electricity pylons 9 and supporting cantilevers 11.
  • the distance 13 in air between the top part 15 of the load 5 and the contact line 7 is determined by the height of the load 5 counting from the bottom of the railway wagon 3.
  • the wagon 3 is coupled to one or more hauling locomotives (not shown) .
  • a high load 5 is meant in this context a load 5 whose top part 15, viewed from the bottom of the railway wagon 3, is located ⁇ 150 mm from the live contact line 7.
  • a mat 17 of an electrically insulating material is arranged over the top part 15 of the entire load 5, and also down over part of the sides of the load 5.
  • the mat 17 is advantageously made of a flexibly bendable electrically insulating material, but also a stiff electrically insulating material may be used.
  • Figure 2 shows a side view, viewed in the longitudinal direction (X) of the rail 21, of Figure 1.
  • a spacer 29 is arranged for the purpose of creating an uppermost point 31 on the mat 27 when the mat is arranged so as to cover the load 23.
  • the uppermost point 31 of the mat 27 lies closer to the live electric contact line 33 compared with the point 35 which is the point where the mat 27 is in contact with the edge between the side edges 37 of the load 23 and the uppermost part 25 of the load. This creates a slope on the mat 27 which facilitates run-off of water.
  • the uppermost point 31 on the mat 27 should be located straight below the live contact line 33, since this, when any water has run off, redu- ces the risk of electrical flashovers caused by the vicinity to the live electric contact line 33.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transportation (AREA)
  • Emergency Protection Circuit Devices (AREA)
  • Electric Cable Arrangement Between Relatively Moving Parts (AREA)

Abstract

The invention relates to a device, in electrified track-guided transports of high loads (5), designed to protect said load against electrical flashovers caused by the vicinity to live electric contact lines (7), wherein the device comprises a mat (17) of an electrically insulating material. In one application of the invention, said high load (5) comprises a transformer or a reactor.

Description

Transport protection
BACKGROUND OF THE INVENTION AND PRIOR ART
The present invention relates to a method of protecting a high load, transported by means of an electrified track- guided transport system, against electrical flashover caused by the vicinity to electric contact lines. The present invention also relates to a device for carrying out the method and to use of said device.
In electrified track-guided transports, such as railway transports, the height of the load is limited by the distance between the upper edge of the rail and a safe headway, > 150 mm, to a live contact line with supporting live cantilevers. By safe headway is meant the distance from the top part of the load to said live contact line. The size of the load, in height, is limited by said safe headway, which is negative since this may necessitate manufacturing the pro- duct in several parts and then, after transport, assembling these parts at the final destination. Alternatively, it may be necessary to manufacture the product with dimensions that deteriorate its performance to a level below that which is actually desired.
To be able to transport as high loads as possible, the transport may be allowed to be performed with a diesel locomotive, while at the same time the contact line is caused to become dead. However, this method is time-consuming and very costly since in many cases the load has to be transported over considerable distances. In many cases, however, it is not possible to make the contact line dead along many and long railway lines since this is not feasible within the framework of scheduled timetables for other traffic. In addition, different lines may be owned by different operators, which additionally complicates the task of rendering the entire transport route dead. SUMMARY OF THE INVENTION
The object of the present invention is to bring about a solution that does not exhibit any of the above-mentioned drawbacks. In particular, a solution is aimed at which allows increasing the size of the load in the vertical direction .
This object is achieved according to the invention with the initially mentioned device, which is characterized in that the device comprises a mat of an electrically insulating material. With such an electrically insulating material, the distance between load and electric contact lines may be reduced without the risk of electrical flashovers increasing. An additional advantage is that the load may be made higher than earlier. This is particularly advantageous if the basic structure of the load can be influenced by the fact that the height may be increased. Another advantage is that, during transports, it is not necessary to render any electric con- tact lines dead, which entails a faster and simpler transport of the load while at the same time the other traffic is not affected.
According to a preferred embodiment of the invention, the above-mentioned mat consists of a flexible material. One advantage of using a flexible electrically insulating material is that, because the material is bendable, it is possible to use it over a broad spectrum of varying sizes of the load.
According to another embodiment of the invention, the electrically insulating material has an insulation level, Um, which at least amounts to 170/70 kV. The requirements for such an insulation level apply to equipment that is to be used in the contact line and the electrically insulating material shall at least fulfil the same requirements for insulation level. When these requirements are fulfilled, the distance from the load to the live parts in the contact line may be reduced by up to 150 mm. According to a further embodiment of the invention, the device comprises at least one spacer which is arranged between the electrically insulating material and the load. In this way, the electrically insulating material will have a highest point, which facilitates water run-off and hence reduces the risk of electrical flashovers caused by the vicinity to the live contact line.
The invention also relates to methods, in electrified track- guided transports of high loads, of protecting said load from electrical flashovers caused by the vicinity to electric contact lines, where a mat of an electrically insulating material is arranged adjacent to the load and between the upper side of said load and said contact lines. A further aim is for the electrically insulating material to be arranged so that it covers the whole upper side of the load and also so as to cover part of the side panels of the load adjoining the upper side of the load. Hence, the risk of electrical flashovers between the load and electrical contact lines is reduced.
According to an additional embodiment of the invention, the electrically insulating material is arranged with a highest point on the upper side of the load. This ensures that any water collected on the electrically insulating material runs off and does not risk causing electrical flashovers between the electrically insulating material and the contact line.
In addition, the invention relates to use of a device accor- ding to the above which, in connection with electrified track-guided transports of a transformer or a reactor, is configured to protect the transformer/reactor from electrical flashovers between the transformer/reactor and an electric contact line.
BRIEF DESCRIPTION OF THE DRAWING
Figure 1 shows a load arranged on a railway wagon, the load being covered with a device according to the invention. Figure 2 shows a side view of a load arranged on a railway wagon, the load being covered with a device according to the invention .
DETAILED DESCRIPTION OF THE INVENTION
The invention will now be illustrated in various embodiments, wherein the device according to the invention has been applied to a load.
Figure 1 shows a side view of a railway wagon 3, standing on a rail 1, on which a high load 5, such as a transformer or a reactor, is loaded. The figure also shows a live contact line 7 with associated electricity pylons 9 and supporting cantilevers 11. The distance 13 in air between the top part 15 of the load 5 and the contact line 7 is determined by the height of the load 5 counting from the bottom of the railway wagon 3. To enable transport of the railway wagon 3, including its load, the wagon 3 is coupled to one or more hauling locomotives (not shown) . By a high load 5 is meant in this context a load 5 whose top part 15, viewed from the bottom of the railway wagon 3, is located ≤ 150 mm from the live contact line 7.
To make it possible for the top part 15 of the load 5 to be < 150 mm from the live contact line 7, without the risk of electrical flashovers caused by the vicinity between the load 5 and the line 7, a mat 17 of an electrically insulating material is arranged over the top part 15 of the entire load 5, and also down over part of the sides of the load 5. The mat 17 is advantageously made of a flexibly bendable electrically insulating material, but also a stiff electrically insulating material may be used.
Figure 2 shows a side view, viewed in the longitudinal direction (X) of the rail 21, of Figure 1. Between the upper part 25 of the load 23 and the mat 27 of electrically insulating material arranged above the load 23, a spacer 29 is arranged for the purpose of creating an uppermost point 31 on the mat 27 when the mat is arranged so as to cover the load 23. The uppermost point 31 of the mat 27 lies closer to the live electric contact line 33 compared with the point 35 which is the point where the mat 27 is in contact with the edge between the side edges 37 of the load 23 and the uppermost part 25 of the load. This creates a slope on the mat 27 which facilitates run-off of water. The uppermost point 31 on the mat 27 should be located straight below the live contact line 33, since this, when any water has run off, redu- ces the risk of electrical flashovers caused by the vicinity to the live electric contact line 33.
The invention is not limited to the embodiments shown but may be varied and modified within the scope of the appended claims.

Claims

1. A device, in electrified track-guided transports of high loads (5) , designed to protect said load from electrical flashovers caused by the vicinity to live electric contact lines (7), characterized in that the device comprises a mat (17) of an electrically insulating material.
2. A device according to claim 1, characterized in that said mat (17) consists of a flexible material.
3. A device according to claims 1-2, characterized in that the electrically insulating material has an insulation level, Um, that amounts at least to 170/70 kV.
4. A device according to the preceding claims, characterized in that the device comprises at least one spacer (29) that is arranged between the mat (17) and the load (5) .
5. A method in track-guided transports of high loads (23), comprising an upper side (25) and one or more side edges (37), for protecting said load from electrical flashovers caused by the vicinity to live electric contact lines (33) , characterized in that a mat (27) of an electrically insu- lating material is arranged adjacent to the load (23) and between the upper side (25) of said load and said contact lines (33) .
6. A method according to claim 5, characterized in that the mat (27) is arranged so as to cover the upper side (25) of the entire load (23) .
7. A method according to claim 5 or 6, characterized in that the mat (27) is arranged so as to cover part of the side edges (37) of the load (23) adjoining the upper side (25) of the load (23) .
8. A method according to any of claims 5-7, characterized in that between the mat (27) and the load (23) there is arranged a spacer (29) .
9. Use of a device according to claims 1-4, in electrified track-guided transports of a transformer, for protecting the transformer against electrical flashovers between the transformer and a live electric contact line.
10. Use of a device according to claims 1-4, in electrified track-guided transports of a reactor, for protecting the reactor against electrical flashovers between the reactor and a live electric contact line.
EP09753061A 2008-12-22 2009-10-29 Transport protection Withdrawn EP2379366A2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
SE0802654A SE532076C2 (en) 2008-12-22 2008-12-22 Device and method for protecting loads from electrical overloads
PCT/EP2009/064278 WO2010072452A2 (en) 2008-12-22 2009-10-29 Transport protection

Publications (1)

Publication Number Publication Date
EP2379366A2 true EP2379366A2 (en) 2011-10-26

Family

ID=41171354

Family Applications (1)

Application Number Title Priority Date Filing Date
EP09753061A Withdrawn EP2379366A2 (en) 2008-12-22 2009-10-29 Transport protection

Country Status (3)

Country Link
EP (1) EP2379366A2 (en)
SE (1) SE532076C2 (en)
WO (1) WO2010072452A2 (en)

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2873692A (en) * 1955-02-03 1959-02-17 St Louis Railroad Company Load confining skid for use in railway cars
US5974740A (en) * 1997-02-14 1999-11-02 Park; Peter C. Adjustable tarpaulin
US6474022B1 (en) * 2000-10-31 2002-11-05 Canamer International, Inc. Multi-purpose tarpaulin system

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
SE0802654L (en) 2009-10-20
SE532076C2 (en) 2009-10-20
WO2010072452A2 (en) 2010-07-01
WO2010072452A3 (en) 2011-04-21

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