There is a single gate at an entrance to a recreational park where arriving vehicles must stop to pay their tickets. The park opens at 8:00AM, at which time vehicles begin to arrive at a rate of 480 veh/hr. After 20 minutes the arrival flow rate declines to 120 veh/hr, and it continues at that level for the remainder of the day. If the service time is 15 seconds per vehicle, and assuming D/D/1 queuing, determine the Length of Queue at 8:10AM.

Traffic and Highway Engineering
5th Edition
ISBN:9781305156241
Author:Garber, Nicholas J.
Publisher:Garber, Nicholas J.
Chapter4: Traffic Engineering Studies
Section: Chapter Questions
Problem 21P
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There is a single gate at an entrance to a recreational
park where arriving vehicles must stop to pay their
tickets. The park opens at 8:00AM, at which time
vehicles begin to arrive at a rate of 480 veh/hr. After
20 minutes the arrival flow rate declines to 120 veh/hr,
and it continues at that level for the remainder of the
day. If the service time is 15 seconds per vehicle, and
assuming D/D/1 queuing, determine the Length of
Queue at 8:1OAM.
Note: Round off your answers to the nearest whole
number. Only include the numeric value of your answer
without the unit (i.e. 22).
Transcribed Image Text:There is a single gate at an entrance to a recreational park where arriving vehicles must stop to pay their tickets. The park opens at 8:00AM, at which time vehicles begin to arrive at a rate of 480 veh/hr. After 20 minutes the arrival flow rate declines to 120 veh/hr, and it continues at that level for the remainder of the day. If the service time is 15 seconds per vehicle, and assuming D/D/1 queuing, determine the Length of Queue at 8:1OAM. Note: Round off your answers to the nearest whole number. Only include the numeric value of your answer without the unit (i.e. 22).
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