Height of Obstruction Given Angle Grades Solution

STEP 0: Pre-Calculation Summary
Formula Used
The Height of The Obstruction = (Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)*Negative Grade Angle
h2 = (S-Ls/2-h1/n1)*n2
This formula uses 6 Variables
Variables Used
The Height of The Obstruction - (Measured in Meter) - The Height of The Obstruction refers to its vertical dimension, blocking a line of sight or path, often in transportation, construction or safety.
Sight Distance - (Measured in Meter) - Sight Distance is s the minimum distance between two vehicles moving along a curve, when the driver of one vehicle can just see the other vehicle on the road.
Length of Curve - (Measured in Meter) - Length of Curve is the distance along the road where the alignment changes from upward to downward slope, creating a valley-shaped concave.
Driver Sight Height - (Measured in Meter) - Driver Sight Height refers to the vertical distance between the driver's eye level and the road surface while seated in a vehicle.
Positive Grade Angle - (Measured in Radian) - A positive grade angle indicates an upward slope.
Negative Grade Angle - A negative grade angle indicates an incline slope.
STEP 1: Convert Input(s) to Base Unit
Sight Distance: 3.56 Meter --> 3.56 Meter No Conversion Required
Length of Curve: 7 Meter --> 7 Meter No Conversion Required
Driver Sight Height: 0.75 Meter --> 0.75 Meter No Conversion Required
Positive Grade Angle: 45 Degree --> 0.785398163397301 Radian (Check conversion ​here)
Negative Grade Angle: -45 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
h2 = (S-Ls/2-h1/n1)*n2 --> (3.56-7/2-0.75/0.785398163397301)*(-45)
Evaluating ... ...
h2 = 40.2718346348198
STEP 3: Convert Result to Output's Unit
40.2718346348198 Meter --> No Conversion Required
FINAL ANSWER
40.2718346348198 40.27183 Meter <-- The Height of The Obstruction
(Calculation completed in 00.021 seconds)

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Length of Summit Curve with Grade Angles Calculators

Negative Grade Angle Given Sight Distance
​ LaTeX ​ Go Negative Grade Angle = The Height of The Obstruction/(Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)
Height of Obstruction Given Angle Grades
​ LaTeX ​ Go The Height of The Obstruction = (Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)*Negative Grade Angle
Length of Summit Curve Given Angle Grades
​ LaTeX ​ Go Length of Curve = Sight Distance*2+Driver Sight Height/Positive Grade Angle+The Height of The Obstruction/Negative Grade Angle
Driver Sight Height given Angle Grades
​ LaTeX ​ Go Driver Sight Height = Length of Curve/2+Sight Distance*Positive Grade Angle+The Height of The Obstruction/Negative Grade Angle

Height of Obstruction Given Angle Grades Formula

​LaTeX ​Go
The Height of The Obstruction = (Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)*Negative Grade Angle
h2 = (S-Ls/2-h1/n1)*n2

The Height of The Obstruction GIven Angle Grades

The height of an obstruction can be determined by adding half the length of the curve to the driver's eye height divided by the angle of an incline and the sight distance multiplied by the angle of a decline.

How to Calculate Height of Obstruction Given Angle Grades?

Height of Obstruction Given Angle Grades calculator uses The Height of The Obstruction = (Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)*Negative Grade Angle to calculate the The Height of The Obstruction, Height of Obstruction Given Angle Grades formula is defined as the sum of half the length of the curve, the driver's eye height divided by the angle of an upward slope, and the sight distance multiplied by the angle of a downward slope. The Height of The Obstruction is denoted by h2 symbol.

How to calculate Height of Obstruction Given Angle Grades using this online calculator? To use this online calculator for Height of Obstruction Given Angle Grades, enter Sight Distance (S), Length of Curve (Ls), Driver Sight Height (h1), Positive Grade Angle (n1) & Negative Grade Angle (n2) and hit the calculate button. Here is how the Height of Obstruction Given Angle Grades calculation can be explained with given input values -> 40.27183 = (3.56-7/2-0.75/0.785398163397301)*(-45).

FAQ

What is Height of Obstruction Given Angle Grades?
Height of Obstruction Given Angle Grades formula is defined as the sum of half the length of the curve, the driver's eye height divided by the angle of an upward slope, and the sight distance multiplied by the angle of a downward slope and is represented as h2 = (S-Ls/2-h1/n1)*n2 or The Height of The Obstruction = (Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)*Negative Grade Angle. Sight Distance is s the minimum distance between two vehicles moving along a curve, when the driver of one vehicle can just see the other vehicle on the road, Length of Curve is the distance along the road where the alignment changes from upward to downward slope, creating a valley-shaped concave, Driver Sight Height refers to the vertical distance between the driver's eye level and the road surface while seated in a vehicle, A positive grade angle indicates an upward slope & A negative grade angle indicates an incline slope.
How to calculate Height of Obstruction Given Angle Grades?
Height of Obstruction Given Angle Grades formula is defined as the sum of half the length of the curve, the driver's eye height divided by the angle of an upward slope, and the sight distance multiplied by the angle of a downward slope is calculated using The Height of The Obstruction = (Sight Distance-Length of Curve/2-Driver Sight Height/Positive Grade Angle)*Negative Grade Angle. To calculate Height of Obstruction Given Angle Grades, you need Sight Distance (S), Length of Curve (Ls), Driver Sight Height (h1), Positive Grade Angle (n1) & Negative Grade Angle (n2). With our tool, you need to enter the respective value for Sight Distance, Length of Curve, Driver Sight Height, Positive Grade Angle & Negative Grade Angle and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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