ERS
is short for Emergency Restoration System, well known to the line crew of
national grid, and utility companies, and associated with other power transmission
and distribution companies. ERS structures are designed for quick bypassing and
restoring the transmission line in an emergency.
Why ERS Structure Is Required?
ERS Tower |
Damage
or breakdown is always unplanned. So, always a pre-planned is necessary to
overcome the breakdown within the shortest time. ERS structure is pre-fabricated for
quickly and safely bypassing damaged permanent structures; also ERS structures
allow us to rebuild or replace the permanent structures with minimum time
constraints.
What Is Terrain ERS Tower?
The same ERS tower is not effectively used everywhere in the glove due to the geographical diversity in the world. So, ERS tower or ERS structure types are mainly
considered:
I.
support
mountain-to-mountain span;
II.
crossing the hot
and hard-packed sands in the desert area;
III.
Soft-soiled flood
plains territory.
What Specification Should Consider for ERS Tower?
The following specification should be considered for selecting an emergency restoration system (ERS) tower:
i.
the column
sections' workability of ERS;
ii.
the foundations
for erection ERS;
iii.
the articulating
gimbal joint of ERS tower;
iv.
the guy wire
specification;
v.
the guy wire
accessories;
vi.
the insulators;
vii.
the anchors to
balance the load;
viii.
the guy plates to
take sufficient tension;
ix.
the conductor hardware;
x.
Construction
tools;
xi.
other spare
parts;
xii.
computer software
and trained personnel.
What Standard Should Follow for ERS Structure?
ERS structure is principally used in an emergency situation. So, product quality considering safety must be the highest prioritized. Marinating international standard-there is the “IEEE Guide for the Design and Testing of Transmission Modular Restoration Structure Components”, including earlier or later versions. Strict conformance of IEEE 1070-2006 includes testing requirements, material requirements, fabrication requirements, and all other geometric and dimensional requirements listed in the IEEE 1070 standard, without exception. The manufacturer shall submit with his proposal, a certified copy of the Design Test Report as required in Section 4 of IEEE Standard 1070-2006.
Feature Components of ERS Structure
ERS
structure needs to contain the following feature components to make it easy and
simplified various configurations to comply with emergency system restoration:
a. light-weight to allow for manual
transportation;
b. different configurations;
c. Comply with IEEE Standard 1070-2006, “IEEE
Guide for the Design and Testing of Transmission Modular Restoration Structure
Components”;
d. minimizing the number of guy wires used to be;
e. welding complies with Section 3 of IEEE Standard
1070;
f. Testing complies with the IEEE Standard
1070-2006 “IEEE Guide for the Design and Testing of Transmission Modular Restoration
Structure Components”;
g. size and diameter of threaded fastener comply
with IEEE Standard 1070;
h. All used ferrous materials must be galvanized
complying with standard ASTM A153;
i. All Column sections must comply with IEEE
Standard 1070;
j. All column sections must be tested in
accordance with Sections 5.1 and 5.2 of IEEE Standard 1070;
k. All Foundation Plates, Gimbal Joint, Guy
Plates, Box Sections, and Insulators must be made in accordance with IEEE Standard
1070.
Listed Tools for Installation ERS Tower
A number of hydraulic tools and hand tools are required to assemble and erection ERStower:
A. Anchor Installation Tools
i.
gasoline
hydraulic power unit;
ii.
hydraulic driving
hammer;
iii.
hydraulic rotary
hammer;
iv.
hydraulic proof
testing unit;
v.
hydraulic hoses,
rock drill bits, torque installation tools, etc.
B. Construction Tools
i.
snatch blocks and
rigging ropes;
ii.
A ½ ton hydraulic
capstan winch with foot pedals;
iii.
high-quality
2-ton Tractel Tirfor-style grip hoists;
iv.
reversible
ratchet;
v.
six (6) to three
(3) ton reversible chain hoists;
vi.
pulling eyes;
vii.
automatic wire
grips;
viii.
double loop 6x37
steel wire rope slings;
ix.
self-contained 6-ton hydraulic wire cutter;
x.
foundation stakes;
xi. Aluminium
conductor lifting hooks, etc.
Testing and Commissioning:
After
installation must carry out the field testing and commission before going to
operate. This test may include visual, equipment-oriented, or even software
base computerization.
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