This application is based upon and claims the benefit of priority from the prior Japanese Patent Application No. 2011-131516, filed on Jun. 13, 2011, the entire contents of which are incorporated herein by reference.
The present invention relates to a construction method of an in-plant trench of a nuclear power plant.
The structure of a nuclear power plant is described with reference to
Further, a construction method of an in-plant trench in a conventional construction of a nuclear power plant is described with reference to
As described above, after the construction of the nuclear reactor building 51 and the auxiliary boiler building 58 has been completed, the area on the rock mass 55 around the nuclear reactor building 51 and the auxiliary boiler building 58 and/or the area on the unexcavated portion 63 is backfilled with dirt and/or sands, and then the construction of the trench 52 is performed. Thus, so far the system test for the nuclear reactor building 51 and the auxiliary boiler building 58 cannot be conducted at an earlier stage, whereby there is a problem in that a long term is required for completion of the construction of an atomic power plant until completion of installation of pipe 53 and cable tray 54 as described the above.
On the other hand, Patent Document 1 discloses a package module for storing an electric equipment for facilitating a wiring operation (Patent Document 1: JP2005-150433A).
Embodiments will now be explained with reference to the attached drawings.
The embodiments of the present invention has been made in view of the above problem so as to effectively solve the same. The object of the embodiments is to provide a preliminary construction method of an in-plant trench of a nuclear power plant which can allow construction of a trench at an earlier stage, after completion of construction of a nuclear reactor building.
One embodiment of the present invention is a preliminary construction method of an in-plant trench of a nuclear power plant. The method includes: constructing a plurality of buildings for generating an atomic energy; constructing a trench between the buildings via a platform configured to adjust a level of the trench with an installation level of the trench; and backfilling an area between a ground and the trench, after the construction of the trench.
According to the embodiment, the installation of the trench can be performed before the bottom of the trench is backfilled with dirt and/or sand up to a height corresponding to the installation level of the trench. Thus, installation of a pipe, a cable tray and so on in the trench can be executed at an earlier stage. Thus, a system test between the buildings can be conducted at an earlier stage, whereby a term required for completing the construction of a nuclear power plant can be shortened.
Preferably, the platform is previously imposed on the trench, and thereafter the construction of the trench is performed. In this case, since the imposition of the platform can be performed before completion of the construction of the buildings, the construction of the trench can be performed at an earlier stage. That is to say, a term required for completing the construction of a nuclear power plant can be shortened.
On the other hand, there is a case in which it is preferable that the platform is installed with respect to the ground, and thereafter the construction of the trench is performed. For example, such an embodiment is preferred when a part of a ground on which a trench is installed is significantly rough and/or when it is difficult to previously impose a platform on a trench in a yard area.
Preferably, the trench is structured as a trench module with which at least a pipe or a cable is previously integrated. In this case, installation of the pipe, the cable tray and so on in the trench can be executed at an earlier stage. As a result, a term required for completing the construction of a nuclear power plant can be shortened.
A first embodiment of the present invention is described herebelow with reference to the drawings.
As shown in
Then, in order to adjust a level of a trench or tunnel 2 with an installation level of the trench 2, a platform for installation 10 is made in conformity to the shape of an unexcavated portion 13. Then, the platform for installation 10 is imposed on or coupled to the trench 2. The trench 2, on which the platform for installation 10 has been imposed, is structured as an integrated trench module 11 containing a pipe 3 and a cable tray 4. As can be understood from
Then, as shown in
Then, as shown in
On the other hand, as shown in
As can be understood from
Next, a second embodiment of the present invention is described with reference to the drawings.
This embodiment is available when a part of a ground on which a trench or tunnel is installed is significantly rough and/or when it is difficult to previously impose or couple a platform on a trench in a yard area.
As show in
Then, as shown in
Then, as shown in
Then, after the construction of the second trench module 15 has been completed, unconnected portions of the pipe 3 and the cable tray 4, which are to connect the nuclear reactor building 1 and the auxiliary boiler building 8, are connected to the nuclear reactor building 1 and the auxiliary boiler building 8. Thus, the nuclear reactor building 1 and the auxiliary boiler building 8 are connected to each other. With the use of the second integrated trench module 15, the installation of the pipe, the cable tray and so on can be performed at an earlier stage.
On the other hand, after the construction of the platform 14 has been completed, backfilling of the bottom of the trench with dirt and/or sand up to a height corresponding to the ground 6 is started (backfill parts 7A and 7B). Then, after the cable tray 4 has been constructed, a cable is laid, and a system test is conducted.
According to this embodiment, even when a part of the ground 6 on which the trench 2 is installed is significantly rough and/or when it is difficult to previously impose a platform on the trench 2 in a yard area, the installation of the trench 2 can be executed before the bottom of the trench is backfilled with dirt and/or sand up to a height corresponding to the installation level of the trench 2. Thus, the installation of the pipe 3, the cable tray 4 and so on in the trench 2 can be performed at an earlier stage. Further, the backfilling of the bottom of the trench with dirt and/or sand can be performed simultaneously with the installation of the pipe 3 and the cable tray 4. Thus, the system test between the buildings 1, 8 can be conducted at an earlier stage, whereby a term required for completing the construction of a nuclear power plant can be shortened.
While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the novel methods and systems described herein may be embodied in a variety of other forms; furthermore, various omissions, substitutions and changes in the form of the methods and systems described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications as would fail within the scope and spirit of the inventions.
Number | Date | Country | Kind |
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2011-131516 | Jun 2011 | JP | national |