Ask Question, Ask an Expert

+61-413 786 465

info@mywordsolution.com

Ask Mechanical Engineering Expert

Objectives

This assessment item relates to the course learning outcomes 1, 3 and 4. It develops students' ability to design road geometric elements including roadside drainage.

Details/Questions

On the contour plan shown in attached map, a two-lane two-way road is to be designed for 70km/hr speed joining Pub Road at Point A (CH0+000) and Fun Road at Point B alongside the pond . The design covers route location, horizontal and vertical alignments, cross-sectional elements, earthworks and road drainage design to achieve the most safety and economical outcome. The following are the requirements:

  • At Point A, the reduced level of the road is to be RL675.
  • At Point B, the reduced level of the road is to be RL675.
  • There will be only one horizontal curve and only one vertical curve.
  • The truck traffic is negligible. Hence consider only cars for design.
  • Radius of horizontal curve [R= LN(student ID)×8.4] is upward rounded to 5m.
  • Length of vertical curve [L= (student ID)1/4] is rounded to nearest 5m.
  • Side slope of cut is 1:1, fill is 1:2. Shrinkage factor = 10%.
  • Uniform ground slope at a particular chainage can be assumed. It can be obtained from contour map by joining two points at two sides of the road centreline, each at 20m distance perpendicular to the road centreline.
  • Lane width= 3.3m, sealed shoulder width= 1.2m.
  • Normal crossfall is -3% for lanes and -5% of sealed shoulder.
  • Rainfall intensity is 60mm/hr ( 1 year ARI) and 120mm/hr (10 year ARI)

Within the constraints described above, design should include the following design elements (note: you cannot finalise these elements in sequence and iterative process is required):

1. Sketch two alternative alignments. Choose one alignment for your design. Justify.

2. Locate your alignment considering both vertical and horizontal controls. Coordinate both horizontal and vertical alignments.

3. Design horizontal alignment (tangents and circular curve- also transition curves if required). Develop a horizontal alignment design table.

4. Design vertical alignment (grades and parabola) in detail. Develop vertical alignment design table.

5. Design superelevation for your road.

6. Design side drain for your road for the runoff accumulated from road surfaces only.

7. Draw an appropriate longitudinal section showing both horizontal and vertical curves.

8. Determine and tabulate the cross section levels (left end of the shoulder, left end of lane, centreline, right end of lane and right end of shoulder) at 20m interval.

9. Draw cross-sections at 40m interval including the side drain.

10. Calculate earthwork quantities using 40m cross-sections over the length of the road (pavement depth can be neglected). Draw mass-haul diagram and discuss the properties of your mass-haul diagram.

11. Check stopping sight distance on horizontal and vertical curves.

12. Check road-ponding/aquaplaning safety

Mechanical Engineering, Engineering

  • Category:- Mechanical Engineering
  • Reference No.:- M91527971
  • Price:- $75

Priced at Now at $75, Verified Solution

Have any Question?


Related Questions in Mechanical Engineering

Life cycle assessmentfor your chosen service eg white board

LIFE CYCLE ASSESSMENT For your chosen service (e.g. white board markers), identify two alternatives of getting the service (e.g. brand A, brand B). Choose the most environmentally friendly option by conducting life cycle ...

Fluid mechanics assignment - viscous flow in pipesq1 as

Fluid Mechanics Assignment - Viscous Flow in Pipes Q1. As shown in the figure below, water "bubbles up" 3 in. above the exit of the vertical pipe attached to three horizontal pipe segments. The total length of the 0.75-i ...

Problem -a long pipe od 1413 mm id 1318 mm kp 20 wmk

Problem - A long pipe (OD = 141.3 mm, ID =131.8 mm, k p = 20 W/m.K) supplies hot pressurized liquid water at 400 K to a heater in a factory. The pipe has an insulation thickness of 100 mm. A new efficient heater replaces ...

Assignment -q1 explain the difference between the

Assignment - Q1. Explain the difference between the metacentric height of a ship during 'Partially Afloat condition and 'Free Floating' condition; aid a sketch to support your answer. Q2. With the aid of sketches, explai ...

Structural mechanics questions -q1 a 150-lb bucket is

Structural Mechanics Questions - Q1. A 150-lb bucket is suspended from a cable on the wooden frame. Determine the resultant internal loadings on the cross section at D, and at E. Q2. The shaft is supported at its ends by ...

Life cycle assessmentfor your chosen service eg white

LIFE CYCLE ASSESSMENT For your chosen service (e.g. white board markers), identify two alternatives of getting the service (e.g. brand A, brand B). Choose the most environmentally friendly option by conducting life cycle ...

Mechanical engineering assignment task - solve the given

Mechanical Engineering Assignment Task - Solve the given problem. Task 1 - A spring with a one-turn loop of 40mm mean radius is formed from a round section of wire having 5 mm diameter. The straight tangential legs of th ...

Questions -q1 a qualitative estimate of the effect of a

Questions - Q1. A qualitative estimate of the effect of a wind-tunnel contraction (Figure) on turbulent motion can be obtained by assuming that the angular momentum of eddies does not change through the contraction. Let ...

Heat transfer and combustionyou will need graph paper a

HEAT TRANSFER AND COMBUSTION You will need graph paper, a calculator, a copy of Appendix 1 from lesson HTC - 4 - 2 and access to steam tables to answer this TMA. 1. A fuel gas consists of 75% butane (C 4 H 10 ), 10% prop ...

Assignment - machine learning for signal processingproblem

Assignment - Machine Learning for Signal Processing Problem 1: Instantaneous Source Separation 1. As you might have noticed from my long hair, I've got a rock spirit. However, for this homework I dabbled to compose a pie ...

  • 4,153,160 Questions Asked
  • 13,132 Experts
  • 2,558,936 Questions Answered

Ask Experts for help!!

Looking for Assignment Help?

Start excelling in your Courses, Get help with Assignment

Write us your full requirement for evaluation and you will receive response within 20 minutes turnaround time.

Ask Now Help with Problems, Get a Best Answer

Why might a bank avoid the use of interest rate swaps even

Why might a bank avoid the use of interest rate swaps, even when the institution is exposed to significant interest rate

Describe the difference between zero coupon bonds and

Describe the difference between zero coupon bonds and coupon bonds. Under what conditions will a coupon bond sell at a p

Compute the present value of an annuity of 880 per year

Compute the present value of an annuity of $ 880 per year for 16 years, given a discount rate of 6 percent per annum. As

Compute the present value of an 1150 payment made in ten

Compute the present value of an $1,150 payment made in ten years when the discount rate is 12 percent. (Do not round int

Compute the present value of an annuity of 699 per year

Compute the present value of an annuity of $ 699 per year for 19 years, given a discount rate of 6 percent per annum. As