 |
|
 |
| |
 |
|
|
 |
|
| |
|
|
 |
|
|
 |
|
| |
|
|
| |
 |
|
|
 |
|
| |
|
|
| The main tunnel will be constructed with two double shields Tunnel Boring Machines (TBM). |
| |
|
| Tunnel Boring Machines: |
 |
Design: |
Designed in Germany |
 |
Manufacture: |
Manufactured in Germany and China |
 |
Specifications: |
The diameters of the cutter head are 7.2m and 8.3m for the construction of the eastern and western portions of the tunnel respectively. The total length is about 170m. |
 |
Features: |
The TBM's are equipped with multi-functional features. These include drilling, excavating, removing soils and mucking out etc. In addition, the precast concrete tunneling lining segments will be installed onto the excavated tunnel surface with the aid of the TBM. |
| |
|
 |
After the TBM's are manufactured, the machines will be disassembled into parts and delivered to Hong Kong. The parts will then be reassembled at the construction site. |
| |
 |
|
 |
|
| Front view of the Tunnel Boring Machine cutter head |
Side view of the Tunnel Boring Machine |
|
| |
| |
|

|
|
| |
|
|
 |
| |
Minimize Impacts to the Environment
The excavation of the main drainage tunnel and most of the construction works for the intakes will be carried out underground by using Tunnel Boring Machines and Raise Boring Machines respectively. Compared with the traditional approach of extensive road opening, the drainage tunnel approach can effectively minimize dust and noise pollution during the course of construction.
Reduce Construction Time
Tunnel Boring Machines will be used to build the drainage tunnel in an efficient manner. This construction method is advantageous compared to the traditional drainage improvement works that involve extensive road opening. The use of Tunnel Boring Machines will also enable the construction to be finished in the shortest possible time.
Eliminate Disruption to Traffic
Construction of the drainage tunnel system can considerably reduce the extent of traditional drainage upgrading works in the lower catchment areas, thus avoiding disruption to traffic which would cause inconvenience to the public. |
|
 |
| |
| |
 |
|
|
 |
|
| |
|
|
Under the Project, there are 34 intakes to intercept the existing drains or streams. Surface runoff intercepted by the intakes will be conveyed via dropshaft, adits and the main tunnel to the sea. Majority of the intake dropshafts will be constructed by “Raise Boring Method“. Details of the Raise Boring Method are as follows: |
| |
|
| |
Benefits of Raise Boring Method:
- Excavation of shafts will mainly be carried out underground, thus effectively confining the noise and dust generated underground. Compared with traditional approach to excavate intakes from the ground downwards, this can effectively minimize disturbance to the environment.
- During the shaft boring upwards, excavated spoils will fall down to the adit and then be removed through the tunnel. As such, the number of construction vehicles for spoil removal will be much reduced and therefore traffic impact to the vicinity can be minimized.
|
| |
| |
 |
|
| |
|
|
| |
 |
|
| |
|
|
| |
|
| |
|
| |
|
| |
Vibration monitoring device |
|
| |
|
|
| |

|
|
| |
|
|
| |
|
|
| |
Last Reviewed on 26 Mar 2012 |
| |
|
|