CONCEPT:Moving observer method:Moving CAR or moving observer method of traffic stream measurement has been developed to provide simultaneous measurement of traffic stream variables. It has the advantage of obtaining the complete state with just three observers and a vehicle.The MEAN speed by moving the observer method is given as follows\({{\rm{V}}_{\rm{s}}} = \frac{{\rm{L}}}{{{{\rm{t}}_{\rm{w}}} - \frac{{{{\rm{m}}_{\rm{w}}}}}{{\rm{q}}}}}\)tw = Observation time when the observer is moving with the streammw = Net vehicles overtake the observer when it is moving with the streamq = Flow density when the observer is at rest in vehicles/minCalculation:Total time taken by the student to reach home = 40 minStudent’s stop time = 15 min∴ tw = 40 – 15 = 25 min = 0.416 hrL = 5 km\({\rm{q}} = \frac{{45{\rm{\;vehicles}}}}{{15{\rm{\;min}}}} = 3\frac{{{\rm{veh}}}}{{{\rm{MINUTE}}}} = 180{\rm{\;veh}}/{\rm{hr}}\)mw = 60 vehicles\({{\rm{V}}_{\rm{s}}} = \frac{{\rm{L}}}{{{{\rm{t}}_{\rm{w}}} - \frac{{{{\rm{m}}_{\rm{w}}}}}{{\rm{q}}}}}\)\({{\rm{V}}_{\rm{s}}} = \frac{5}{{0.416 - \frac{{60}}{{180}}}} = 60.48{\rm{\;km}}/{\rm{hr}}\)Hence the speed of vehicle stream = 60 km/hr "> CONCEPT:Moving observer method:Moving CAR or moving observer method of traffic stream measurement has been developed to provide simultaneous measurement of traffic stream variables. It has the advantage of obtaining the complete state with just three observers and a vehicle.The MEAN speed by moving the observer method is given as follows\({{\rm{V}}_{\rm{s}}} = \frac{{\rm{L}}}{{{{\rm{t}}_{\rm{w}}} - \frac{{{{\rm{m}}_{\rm{w}}}}}{{\rm{q}}}}}\)tw = Observation time when the observer is moving with the streammw = Net vehicles overtake the observer when it is moving with the streamq = Flow density when the observer is at rest in vehicles/minCalculation:Total time taken by the student to reach home = 40 minStudent’s stop time = 15 min∴ tw = 40 – 15 = 25 min = 0.416 hrL = 5 km\({\rm{q}} = \frac{{45{\rm{\;vehicles}}}}{{15{\rm{\;min}}}} = 3\frac{{{\rm{veh}}}}{{{\rm{MINUTE}}}} = 180{\rm{\;veh}}/{\rm{hr}}\)mw = 60 vehicles\({{\rm{V}}_{\rm{s}}} = \frac{{\rm{L}}}{{{{\rm{t}}_{\rm{w}}} - \frac{{{{\rm{m}}_{\rm{w}}}}}{{\rm{q}}}}}\)\({{\rm{V}}_{\rm{s}}} = \frac{5}{{0.416 - \frac{{60}}{{180}}}} = 60.48{\rm{\;km}}/{\rm{hr}}\)Hence the speed of vehicle stream = 60 km/hr ">

A student riding a bicycle on a 5 km one-way street takes 40 minutes to reach home. The student stopped for 15 minutes during this ride. 60 vehicles overtook the student (assume the number of vehicles overtaken by the student is zero) during the ride and 45 vehicles while the student stopped. The speed of vehicle stream on that road (in km/hr) is

Highway Engineering Traffic Engineering Studies Analysis in Highway Engineering 10 months ago

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CONCEPT:Moving observer method:Moving CAR or moving observer method of traffic stream measurement has been developed to provide simultaneous measurement of traffic stream variables. It has the advantage of obtaining the complete state with just three observers and a vehicle.The MEAN speed by moving the observer method is given as follows\({{\rm{V}}_{\rm{s}}} = \frac{{\rm{L}}}{{{{\rm{t}}_{\rm{w}}} - \frac{{{{\rm{m}}_{\rm{w}}}}}{{\rm{q}}}}}\)tw = Observation time when the observer is moving with the streammw = Net vehicles overtake the observer when it is moving with the streamq = Flow density when the observer is at rest in vehicles/minCalculation:Total time taken by the student to reach home = 40 minStudent’s stop time = 15 min∴ tw = 40 – 15 = 25 min = 0.416 hrL = 5 km\({\rm{q}} = \frac{{45{\rm{\;vehicles}}}}{{15{\rm{\;min}}}} = 3\frac{{{\rm{veh}}}}{{{\rm{MINUTE}}}} = 180{\rm{\;veh}}/{\rm{hr}}\)mw = 60 vehicles\({{\rm{V}}_{\rm{s}}} = \frac{{\rm{L}}}{{{{\rm{t}}_{\rm{w}}} - \frac{{{{\rm{m}}_{\rm{w}}}}}{{\rm{q}}}}}\)\({{\rm{V}}_{\rm{s}}} = \frac{5}{{0.416 - \frac{{60}}{{180}}}} = 60.48{\rm{\;km}}/{\rm{hr}}\)Hence the speed of vehicle stream = 60 km/hr

Posted on 13 Nov 2024, this text provides information on Highway Engineering related to Traffic Engineering Studies Analysis in Highway Engineering. Please note that while accuracy is prioritized, the data presented might not be entirely correct or up-to-date. This information is offered for general knowledge and informational purposes only, and should not be considered as a substitute for professional advice.

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