Engineering
Engineering, 26.02.2020 05:57, toni240

A roadway is determined to have the following daily traffic for each direction: 2,000 passenger cars with two 2-kip single axle, 200 passes of single-unit trucks with one 10-kip single axle and one 22-kip tandem axle, and 100 passes of tractor semi-trailer trucks with one 12-kip single axle, one 18-kip tandem axle and one 50-kip triple axle. The soil resilient modulus of the subgrade is 3000 lb/in2 and the roadway pavement is designed for an overall standard deviation of 0.4, a reliability of 99% and the initial PSI is 4.5 and the TSI is 2.5. One newly constructed section of this roadway is a rigid pavement designed with a 9-inch slab with a modulus of subgrade reaction of 100 lb/in3 , a modulus of rupture of 700 lb/in2 , a modulus of elasticity of 4.0 million lb/in2 , and a joint transfer coefficient of 3.0. Another newly constructed section of the same roadway is a flexible pavement with a 5-inch hot-mix asphalt (HMA) surface, 10-inch dense-graded crushed stone base and a 9-inch crushed stone subbase. If the roadway has four lanes in each direction and is conservatively designed, which of the pavement sections will last longer and by how many years (all drainage coefficients are 1.0)

answer
Answers: 3

Other questions on the subject: Engineering

image
Engineering, 04.07.2019 18:10, aliopqwas
Condition monitoring is a major component of. (clo4) a)- predictive maintenance. b)-preventive maintenance c)-proactive maintenance d)-reactive maintenance.
Answers: 1
image
Engineering, 04.07.2019 19:10, kimmy6973
What is creep? what is stress relaxation?
Answers: 1
image
Engineering, 04.07.2019 19:10, jennymares
Abarometer contains mercury with a density of 13600 kg/m3. atmospheric conditions are 95.8 kpa and 20 °c at 20 °c, the vapor pressure of the mercury is 0.000173 kpa. the column of mercury will rise to a height of most nearly. select one: a)- 0.38 m b)- 0.82 m c)- 0.48 m d)- 0.72 m
Answers: 1
image
Engineering, 04.07.2019 19:20, anggar20
Air enters a horizontal, constant-diameter heating duct operating at steady state at 290 k, 1 bar, with a volumetric flow rate of 0.25 m°/s, and exits at 325 k, 0.95 bar. the flow area is 0.04 m2. assuming the ideal gas model with k = 1.4 for the air, determine (a) the velocity at the inlet and exit, each in m/s, and (c) the rate of heat transfer, in kw flow rate, in kg/s, (b) the mass kg 0.3
Answers: 2
Do you know the correct answer?
A roadway is determined to have the following daily traffic for each direction: 2,000 passenger cars...

Questions in other subjects:

Konu
Mathematics, 10.12.2020 02:20