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Module 3:
Lane
Management
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki Spring 2021
1. Management Strategies
• Shoulder Lane
• HOV Lane
• Lane Reversal
2. Assessment for Lane
Management Strategies
Lane Management
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
169
Spring 2021
Lane Management
What is Managed Lanes?
It can be defined as a combination of operational and design
actions that meet local and regional mobility objectives.
The overall goals of managed lanes are:
1. Improve traffic operations (better LOS)
2. Facilitate movement of people and goods (better LOS)
3. Enhance performance and efficiency (better LOS)
4. Promote air quality goals (Minimize congestion)
5. Improve safety
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
170
Spring 2021
Lane Management
Lane management Examples:
1. HOV lanes
2. High-occupancy/Toll (HOT) lanes
3. Dynamic shoulder lanes
4. Express lanes
5. Lane Reversal
6. Truck lanes
7. Interchange bypass lanes (usually transit, HOV or truck only)
8. Dual roadways in which at least one of the roadways is
managed
9. Separate express lane tollways constructed within freeways
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
171
Spring 2021
Lane Management
Examples: High Occupancy Vehicles(HOV) Lane
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
172
Spring 2021
Lane Management
Examples: Shoulder Use
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
173
Spring 2021
Lane Management Examples: Lane Reversal
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
174
Spring 2021
Lane Management Examples: Lane Reversal
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
175
Spring 2021
Lane Management Examples: Lane Reversal
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
176
Spring 2021
Lane Management Examples: Lane Reversal
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
177
Spring 2021
Lane Management Examples: Lane Reversal
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
178
Spring 2021
Eligibility
 Occupancy restrictions
 Vehicle type restrictions (e.g., buses, vanpools, taxis, carpools)
Access
 Express lanes with limited access
 Contraflow lanes
 Reversible lanes
 Ramp and mainline metering
Pricing
 Decal or sticker registration for use
 Congestion pricing on managed lanes
 Fixed or variable electronic tolling
Lane Management Strategies
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
179
Spring 2021
Lane Management
 HOV – High Occupancy Vehicle : a vehicle that is occupied with 3+ individuals
(including the driver)
It can be in one of the following forms:
1. HOV lanes
2. High-occupancy/Toll (HOT) lanes
3. Dynamic shoulder lanes
4. Express lanes
5. Truck lanes
6. Interchange bypass lanes (usually transit, HOV or truck only)
7. Dual roadways in which at least one of the roadways is managed
8. Separate express lane tollways constructed within freeways
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
180
Spring 2021
Active traffic management (ATM), generally represented as traffic control
applications that promote safer and more efficient operations, can be
used to support the above strategies.
Examples include:
 Speed advisories and controls
 Dynamic lane assignment
 Dynamic hard shoulder running
 Dynamic route diversion
Lane Management Strategies
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
181
Spring 2021
The supporting rational might be one or more of the following:
 A mobility policy that encourages commute choices,.
 A need to allocate limited spatial resources to a higher and better level of performance.
 An inability to manage the lane(s) or roadway through more conventional strategies.
 A willingness to segregate and prioritize some lanes to meet a variety of regional goals.
 A lack of other options for more conventionally expanding capacity among one or more
transportation modes.
 A desire to flexibly address demand over time due to changing traffic and corridor
conditions, often beyond the respective project design year.
 A need for the respective project to cover some of its operation and implementation cost
due largely to limited funding.
Lane Management: Context of Application
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
182
Spring 2021
Demand:
Demand for a single dedicated lane needs to meet two thresholds:
1. Enough near-term “opening year” minimum demand needs to exist to
support public acceptance, and
2. Demand for the longer-term should be present to justify
implementation.
The thresholds for demand can vary by concept and by the two
timelines indicated.
Lane Management: Determining Operational
Needs
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
183
Spring 2021
Capacity:
 Due to limited capacity: there is a need to manage demand to ensure
maximum utilization of limited capacity
 Managing demand does not mean allowing the lane to reach its vehicle
carrying capacity.
 Managing flow below capacity can better assure travel benefits.
 For Single lane , the maximum managed flow threshold of approximately
1600 to 1650 vehicles/hour/lane (vphpl)
 Multi-lane treatments may obtain somewhat higher values approaching
1700 to 1900 vphpl
Lane Management: Determining Operational
Needs
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
184
Spring 2021
Capacity:
Lane Management: Determining Operational
Needs
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
185
Spring 2021
Corridor and System Context :
 managed lanes may be only appropriate at a corridor level in a
region where congestion is limited in duration and extent on the
region’s freeway system
 In larger areas where traffic congestion is systemic to the freeway
network and may regularly recur for many hours, a regional context
to determining operational needs may be appropriate
Lane Management: Determining Operational
Needs
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
186
Spring 2021
 Provide more mobility options.
 Promote and sustain transit service.
 Reduce dependence on single occupant travel by promoting ridesharing.
 Enhanced travel reliability.
 Address air quality.
 Improve safety.
 Enhance trucking and commerce.
 Augment transportation funding & Generate revenue.
 Improve user information.
 Expand throughput
 Reduce travel delay.
Lane Management: Anticipated Benefits
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
187
Spring 2021
Case Studies:
Lane Reversal Assessment
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
188
Spring 2021
Impact of Lane Reversal on Highway Capacity & LOS
Operational Case: Existing Facility
Design Input:
Multilane Highway
Number of Lanes = 6 (both directions)
Lane Width = 3.2 m
Median = yes
Shoulders = 0.6
Traffic Volume = 41000 AADT ( K = 0.14 , D= 0.65 )
Topography (i.e. Terrain: Rolling
HV% = 12%, PHF= 0.90, BFFS = 70 km/hr
Design Objective:
Improving Current Level Of Service (LOS)
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
189
Spring 2021
Case Studies:
HOV Lane Assessment
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
190
Spring 2021
HOV Lane Feasibility Assessment: Example
Data: Evaluate the addition of HOV lane to a given freeway
 Lane width = 3.40 m , #lanes = 6 (3 in each direction) PHF = 0.90
 Truck% = 0 % (Trucks are not allowed during peak hours)
 Basic Free Flow Speed (BFFS) = 100 km/hr,
 Current Volume = 4860 veh/hr , Lateral Clearance = 1.2 m (Right) &
0.6m (Left)
 Interchange density = 0.5 interchange/ km
Occupancy Rate Survey Data:
 Current: 1 person  70%, 2 p.  18%, 3+ p.  12%
 Expected: 1 person  58%, 2 p.  20%, 3+ p.  22%
Estimate the new LOS for the HOV traffic and the average LOS
for the freeway
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki
191
Spring 2021
Module 4:
Traffic
Calming
Concepts
TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki Spring 2021
192

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Tteng 422 S2021 Module 3: Lane Management

  • 1. Module 3: Lane Management TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki Spring 2021 1. Management Strategies • Shoulder Lane • HOV Lane • Lane Reversal 2. Assessment for Lane Management Strategies
  • 2. Lane Management TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 169 Spring 2021
  • 3. Lane Management What is Managed Lanes? It can be defined as a combination of operational and design actions that meet local and regional mobility objectives. The overall goals of managed lanes are: 1. Improve traffic operations (better LOS) 2. Facilitate movement of people and goods (better LOS) 3. Enhance performance and efficiency (better LOS) 4. Promote air quality goals (Minimize congestion) 5. Improve safety TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 170 Spring 2021
  • 4. Lane Management Lane management Examples: 1. HOV lanes 2. High-occupancy/Toll (HOT) lanes 3. Dynamic shoulder lanes 4. Express lanes 5. Lane Reversal 6. Truck lanes 7. Interchange bypass lanes (usually transit, HOV or truck only) 8. Dual roadways in which at least one of the roadways is managed 9. Separate express lane tollways constructed within freeways TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 171 Spring 2021
  • 5. Lane Management Examples: High Occupancy Vehicles(HOV) Lane TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 172 Spring 2021
  • 6. Lane Management Examples: Shoulder Use TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 173 Spring 2021
  • 7. Lane Management Examples: Lane Reversal TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 174 Spring 2021
  • 8. Lane Management Examples: Lane Reversal TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 175 Spring 2021
  • 9. Lane Management Examples: Lane Reversal TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 176 Spring 2021
  • 10. Lane Management Examples: Lane Reversal TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 177 Spring 2021
  • 11. Lane Management Examples: Lane Reversal TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 178 Spring 2021
  • 12. Eligibility  Occupancy restrictions  Vehicle type restrictions (e.g., buses, vanpools, taxis, carpools) Access  Express lanes with limited access  Contraflow lanes  Reversible lanes  Ramp and mainline metering Pricing  Decal or sticker registration for use  Congestion pricing on managed lanes  Fixed or variable electronic tolling Lane Management Strategies TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 179 Spring 2021
  • 13. Lane Management  HOV – High Occupancy Vehicle : a vehicle that is occupied with 3+ individuals (including the driver) It can be in one of the following forms: 1. HOV lanes 2. High-occupancy/Toll (HOT) lanes 3. Dynamic shoulder lanes 4. Express lanes 5. Truck lanes 6. Interchange bypass lanes (usually transit, HOV or truck only) 7. Dual roadways in which at least one of the roadways is managed 8. Separate express lane tollways constructed within freeways TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 180 Spring 2021
  • 14. Active traffic management (ATM), generally represented as traffic control applications that promote safer and more efficient operations, can be used to support the above strategies. Examples include:  Speed advisories and controls  Dynamic lane assignment  Dynamic hard shoulder running  Dynamic route diversion Lane Management Strategies TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 181 Spring 2021
  • 15. The supporting rational might be one or more of the following:  A mobility policy that encourages commute choices,.  A need to allocate limited spatial resources to a higher and better level of performance.  An inability to manage the lane(s) or roadway through more conventional strategies.  A willingness to segregate and prioritize some lanes to meet a variety of regional goals.  A lack of other options for more conventionally expanding capacity among one or more transportation modes.  A desire to flexibly address demand over time due to changing traffic and corridor conditions, often beyond the respective project design year.  A need for the respective project to cover some of its operation and implementation cost due largely to limited funding. Lane Management: Context of Application TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 182 Spring 2021
  • 16. Demand: Demand for a single dedicated lane needs to meet two thresholds: 1. Enough near-term “opening year” minimum demand needs to exist to support public acceptance, and 2. Demand for the longer-term should be present to justify implementation. The thresholds for demand can vary by concept and by the two timelines indicated. Lane Management: Determining Operational Needs TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 183 Spring 2021
  • 17. Capacity:  Due to limited capacity: there is a need to manage demand to ensure maximum utilization of limited capacity  Managing demand does not mean allowing the lane to reach its vehicle carrying capacity.  Managing flow below capacity can better assure travel benefits.  For Single lane , the maximum managed flow threshold of approximately 1600 to 1650 vehicles/hour/lane (vphpl)  Multi-lane treatments may obtain somewhat higher values approaching 1700 to 1900 vphpl Lane Management: Determining Operational Needs TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 184 Spring 2021
  • 18. Capacity: Lane Management: Determining Operational Needs TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 185 Spring 2021
  • 19. Corridor and System Context :  managed lanes may be only appropriate at a corridor level in a region where congestion is limited in duration and extent on the region’s freeway system  In larger areas where traffic congestion is systemic to the freeway network and may regularly recur for many hours, a regional context to determining operational needs may be appropriate Lane Management: Determining Operational Needs TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 186 Spring 2021
  • 20.  Provide more mobility options.  Promote and sustain transit service.  Reduce dependence on single occupant travel by promoting ridesharing.  Enhanced travel reliability.  Address air quality.  Improve safety.  Enhance trucking and commerce.  Augment transportation funding & Generate revenue.  Improve user information.  Expand throughput  Reduce travel delay. Lane Management: Anticipated Benefits TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 187 Spring 2021
  • 21. Case Studies: Lane Reversal Assessment TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 188 Spring 2021
  • 22. Impact of Lane Reversal on Highway Capacity & LOS Operational Case: Existing Facility Design Input: Multilane Highway Number of Lanes = 6 (both directions) Lane Width = 3.2 m Median = yes Shoulders = 0.6 Traffic Volume = 41000 AADT ( K = 0.14 , D= 0.65 ) Topography (i.e. Terrain: Rolling HV% = 12%, PHF= 0.90, BFFS = 70 km/hr Design Objective: Improving Current Level Of Service (LOS) TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 189 Spring 2021
  • 23. Case Studies: HOV Lane Assessment TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 190 Spring 2021
  • 24. HOV Lane Feasibility Assessment: Example Data: Evaluate the addition of HOV lane to a given freeway  Lane width = 3.40 m , #lanes = 6 (3 in each direction) PHF = 0.90  Truck% = 0 % (Trucks are not allowed during peak hours)  Basic Free Flow Speed (BFFS) = 100 km/hr,  Current Volume = 4860 veh/hr , Lateral Clearance = 1.2 m (Right) & 0.6m (Left)  Interchange density = 0.5 interchange/ km Occupancy Rate Survey Data:  Current: 1 person  70%, 2 p.  18%, 3+ p.  12%  Expected: 1 person  58%, 2 p.  20%, 3+ p.  22% Estimate the new LOS for the HOV traffic and the average LOS for the freeway TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki 191 Spring 2021
  • 25. Module 4: Traffic Calming Concepts TTE 422 Traffic Operations - Copyright © 2021 Wael ElDessouki Spring 2021 192