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Grade is usually expressed as a percentage - converted to the angle α by taking the inverse tangent of the standard mathematical slope, which is rise / run or the grade / 100. If one looks at red numbers on the chart specifying grade, one can see the quirkiness of using the grade to specify slope; the numbers go from 0 for flat, to 100% at 45 ...
A 2015 survey [12] lists the 3.5 mile stretch between MP 87 and MP 90.5 at a 4% average grade and says there are isolated stretches approaching 7%. When originally built the ruling grade was 4.2% as listed by southern railway. But due to the fills settling it has drastically changed. [12] This segment of track has always been worked by adhesion.
Section through railway track and foundation showing the sub-grade. Grading in civil engineering and landscape architectural construction is the work of ensuring a level base, or one with a specified slope, [1] for a construction work such as a foundation, the base course for a road or a railway, or landscape and garden improvements, or surface drainage.
A narrow-gauge railway (narrow-gauge railroad in the US) is a railway with a track gauge narrower than 1,435 mm (4 ft 8 + 1 ⁄ 2 in) standard gauge. Most narrow-gauge railways are between 600 mm ( 1 ft 11 + 5 ⁄ 8 in ) and 1,067 mm ( 3 ft 6 in ).
The low weight of Z scale locomotives contributes to their difficulty pulling trains up grades. In practice, the grade is kept under 2% for reliable operation of trains up to seven, four-axle cars; shorter trains can operate on grades up to 4%. Pulling power of locomotives can be increased by use of traction tires, or by adding weight using ...
[2] [3] Initially, the UIAA scale was closed-ended and went from Grade I (easiest) up to Grade VI (hardest), where it stopped. In 1978, the "seventh grade" was added—though climbers had been climbing at that level for years—and by 1985 it was formally made into an open-ended scale that went beyond Grade VII. [2] [4]
Trains would leave Sparks with enough engine to manage the 0.43% grade (e.g. a 2-10-2 with a 5500-ton train) and would get helper engines at Wells; the "ruling grade" from Sparks to Ogden could be considered 0.43%. But nowadays the railroad doesn't base helper engines at Wells so trains must leave Sparks with enough power to climb the 1.4% ...
Chief Engineer H.A. Sumner, needing to enter the canyon area as high as possible but still maintain a 2% grade, gained the necessary altitude via the Big Ten Curve and some eight tunnels. As a bonus, his routing scheme along the front range provided rail passengers majestic views of Denver and its surrounding countryside. [2]
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