Ramp Reversal Research. Roy Parikh, P.E. TxDOT Fort Worth District

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2007 WINTER TEXITE MEETING FEBRUARY 3,2007 Ramp Reversal Research Roy Parikh, P.E. TxDOT Fort Worth District Research Project 0-5105 RMC 4 Traffic Operations Project title Development of Guidelines for Ramp Reversal Projects Funding $135,262 Joint Texas Transportation Institute (TTI) and University of Texas at Arlington (UTA) project 1

TxDOT Project Team Lauren Garduno (ODA) Program Coordinator Roy Parikh (FTW) Project Director Project Advisors Brian Barth (DAL) Albert Durant (FTW) Doug Eichorst (ODA) Cynthia Landez (DES) Wade Odell (RTI) Photo Courtesy of TxDOT Photo Courtesy of TexITE 2

#1: When to Consider Reversals When & where should the use of ramp reversals be considered? SINGLE ON > OFF Mainlanes Frontage Mainlanes Frontage SINGLE OFF > ON Mainlanes Frontage Mainlanes Frontage PAIR Mainlanes Frontage Mainlanes Frontage #2: Diamond vs. X-ramp Pattern When & where should an X-ramp pattern be used as opposed to diamond ramp design? X-ramp Diamond 3

Pros and Cons: X vs. Diamond PROS + Increased development along frontage road + Reduced through demand on frontage road approach to intersection + Move the weaving area between an entrance ramp and exit ramp from the main lanes to the frontage road, where speeds and volumes are lower + Increased storage area for crossstreet intersection queuing + Better opportunity to use frontage road as alternate route as part of incident management if auxiliary lanes are provided CONS Costly means of improving signal operation Construction activities will disrupt business along frontage road Invites sling-shot maneuvers allowing motorists to bypass cross-street signals; this poses safety and capacity problems on frontage road Addresses the queue storage problem but queuing delay will not be remedied Likely increase in short trips on the freeway Construction of auxiliary lanes may require major reconstruction at cross-streets Braided Ramp Studies Bonilla & Urbanik (376-2F) 1986 Grade-separation when: Weaving or access problems not solved by ramp elimination or relocation Warrants Guidelines Photo Courtesy of TTI 15 4

DISTRICT SURVEYS Survey Questions Project type Date of implementation Roadway type Project cost Project rationale Evaluation studies 21 5

Roadway Type Roadway Type 3, 8% Interstate 2, 6% 8, 22% 23, 64% US Highway State Highway FM, Loop or Other 25 Project Rationale Safety issues 68% High traffic volumes 60% Inadequate ramp spacing 43% Main lane weaving 43% Political/developer request 41% Land access 30% Frontage road weaving 11% 6

Project Rationale - Others Two-way to one-way frontage road conversion (6) Exit ramp queue spillback (5) Better utilize frontage road capacity (2) Eliminate two consecutive entrance ramps Construction of an additional overpass Alleviate frontage road congestion at the arterial street CASE STUDIES 7

Identify and Select Study Sites Candidate sites Survey, internet searches & previous evaluations 12 ramp reversal case studies 3 X-ramp corridor case studies Graphic Courtesy of Texas Transportation Institute 29 Operational Evaluation Impacts System delay Volume fluctuations Freeway main lanes Frontage road Downstream intersection Queuing Ramp spacing 8

Safety Evaluation Crash rate before vs. after Main lane Frontage road Total Anecdotal Basic Economic Evaluation Sales tax receipts Corridor vs. citywide Property values Corridor Business development 9

2 WB IH 20 in Arlington Parks Mall of Arlington Reversed the Matlock entrance with the FM 157 (Cooper St.) exit Construction cost = $7,049,023 Driving force = improved access to Parks Mall Joint funding 2 Roadway Layout Parks Mall Cooper/ FM 157 IH 20 Matlock Road 10

2 Improved Frontage Road Overhead sign bridge 2-lane Cooper exit 1 2 3 4 2 Evaluation Results Evaluation Outcome + + + Lesson learned: speed enforcement needed on frontage road. 11

Following Evaluation Fort Worth Star-Telegram Accidents up on improved IH 20 frontage road Crash Frequency TTI Analysis Crash rate actually significantly reduced Crash Rate # of Crashes 30 25 20 15 10 5 0 18 Before 28 After Rate per 100 MVM 4 3.5 3 2.5 2 1.5 1 0.5 0 3.9 Before 2.3 After GUIDELINES FOR SUCCESSFUL IMPLEMENTATION OF RAMP REVERSAL AND X-RAMP PROJECTS 12

Guidelines Synergy Ramp modifications Access management Access Management Themes 13

Guidelines Framework 5 categories (based on 5Es of SR2S) Educational Encouragement Engineering Enforcement Evaluation Guideline 1: Educational Use the local media, department resources and other innovative techniques to promote projects: prior to construction during construction after completion following evaluation 14

Educational Guideline 15

Guideline 6 - Engineering Provide adequate storage to prevent vehicles from stacking onto the main lanes. Exit Ramp Spillback Queue spillback from exit ramps is a common occurrence in urban areas, particularly at locations where inadequate storage is available. 16

Guideline 17 - Enforcement Coordinate with law enforcement officials for speed enforcement on frontage roads following ramp modifications. Photo Courtesy Flickr.com (public) 144 Guideline 21 - Evaluation If evaluation studies are performed prior to project implementation, consider the operational impacts (capacity and level-of-service) on both the freeway main lanes and frontage road facilities. 17

Questions? 0-5105 Project Summary Report is Online at: ftp://ftp.dot.state.tx.us/pub/txdot-info/rti/psr/5105.pdf 18