(a)
Towers. The design of towers shall satisfy the requirements
of §
7.427(p)
(relating to terminals and stations) and all of the following:
(1) If clearance is not adequate, towers
shall be equipped with guards designed to prevent the cabins from swinging into
the towers. Reference should also be made to subsection (c).
(2) If guyed towers are used and guys
intersect the ground within or near ski runs, the guys shall be marked for
visibility, preferably with boards painted with black and yellow
stripes.
(3) All towers shall be
equipped with access ladders located in such a manner as to prevent any moving
parts from becoming engaged in the rungs.
(4) All towers should be grounded by
individual grounds, by buried ground wires connecting all towers, or by tying
all towers into a suspended ground wire, which may also be used as a ground for
the signal system, and is itself grounded. The ground shall satisfy all
national and local codes. The local electric power company is a good source of
information regarding such requirements.
(5) Towers shall be clearly identified with
successive numbers.
(b)
Foundations. The structure of foundations shall be designed to
satisfy the requirements of §
7.427(p) and (q).
Foundations shall be designed to resist overturning or sliding with a factor of
safety of two with respect to dead load and live load, and 1 1/2 with respect
to such loadings and wind acting simultaneously. Under the action of all loads,
pressure on the underlying earth shall not exceed allowable values for the
subsurface material encountered. Bottoms of foundations shall be below the
normal frost line unless they rest on solid rock, and tops shall be a minimum
of 6 inches above finish grade. Foundations on rock shall be firmly anchored to
the rock.
(c)
Guards. The clearance between fixed objects, such as
intermediate towers, rocks, and the like, and the cabin shall be sufficient to
allow the latter to swing ten degrees laterally from the vertical. If this
cannot be done without reducing the clearance to less than 18 inches, suitable
guards shall be provided.
(d)
Hauling rope sheaves (or rollers) and mounts. Hauling rope
sheaves (or rollers) and mounts shall conform to §
7.427(k)(1),
except that this application is that of a tower roller, not a large-angle
deflection sheave. The following shall also apply:
(1) The recommended diameter should not be
less than 10 times the diameter of the rope. Grounding of the hauling rope is
not necessary at each tower. The allowable load on each sheave should be
determined after consultation with the manufacturers of the material, if any,
with which the sheave groove is lined.
(2) Sheave grooves shall be designed with
deep flanges to discourage the rope from leaving the sheaves. In addition,
suitable guards shall be installed to prevent the rope from falling into
dangerous positions either within or outside of the tower structure in case it
does leave the sheaves, and suitable devices should be installed to stop the
tramway in such event.
(3) Rope
grips should be designed in relation to the sheave groove so as not to contact
sheave flanges during normal operations, taking into consideration the
anticipated amount of wear on the grooves. Furthermore, rope grips, sheave
flanges, and hanger guides shall be designed so that hangers may not be caught
behind guides, and ropes and grips may not be derailed from sheaves, if the
carrier is swinging as it approaches or passes the tower.
(4) If the gage of the tramway is varied at
any point along the line, the horizontal departure at any one tower shall be
kept to a minimum so that the rope cannot become derailed from the sheaves due
to such departure.
(5) Sheave
mounts or mounting frames should be designed to be adjustable laterally and
rotationally, so that sheave units may be lined up and held in the plane of the
rope.
(6) On monocable tramways,
single sheave units shall not be used except for bull wheel guide sheaves.
Sheave units shall be completely articulated to provide uniform distribution of
pressure.
(7) The effect of tower
height and location on sheave units shall be governed by §
7.425 (relating to
towers).
(e)
Track cable saddles and mounts. Track cable saddles and mounts
shall comply with the following:
(1) The
radius of a track cable saddle shall be determined by whichever one of the
following criteria requires the largest radius:
(i) That it be large enough to minimize
bending stresses in the cable and thus prolong cable life. Wire rope
manufacturers are a good source of recommendations on this point.
(ii) That it be large enough to provide
smooth transition of the carriage from span to span.
(iii) That it be large enough to reduce the
bearing pressure to a value that permits the cable to slide in the saddle
groove.
(iv) That it be large
enough so that if the carriage were to travel over the saddle at three times
normal speed the centrifugal force would not produce enough uplift to make the
carriage wheels lose contact.
(2) The saddle shall be long enough to ensure
that under maximum loading conditions the cable will not come into contact with
the end of the saddle groove.
(3)
Saddles shall be so designed so that the track cable brake, if any, may
function at the time the cabin is passing the saddle without derailment of the
tracks.
(4) Saddles shall permit
free passage of the carriage even when the cabin is swinging laterally as it
approaches or passes the tower.
(5)
If the gage of the tramway is varied at any point along the line, horizontal
departure at any one tower shall be kept to a minimum to avoid derailment of
the carriage as it passes over the saddle.
(6) The effect of tower height and location
on saddles shall be governed by §
7.425.