Project Report

Despite stunning views of mountains and ocean, what proves most memorable to pilots and passengers approaching Juneau's International Airport is the extreme turbulence Juneau, Alaska pilots face some of the nation's most challenging navigational conditions, and the airport has a history of turbulence-related incidents. After a 737 aircraft was nearly lost upon encountering severe turbulence, the Federal Aviation Administration (FAA) imposed restrictive rules of operation to remain in effect until a warning system could be developed for the airport. Juneau's turbulence issues stem from the effects of surrounding mountainous terrain on wind-flow patterns. The airport's single runway sits at the end of the Gastineau Channel. Surrounded by steep mountains, winds streaming into and over the narrow channel tend to be complex. Under certain conditions, the combination of wind speed and direction means that turbulence is too strong for commercial jets to land or take off. Juneau has two strong wind regimes — one stemming from the north, the other from the southeast. Northerly winds are generated by pressure and/or temperature gradients between the Canadian interior and Alaska's southeast coastal regions. The southeasterly winds tend to be most prevalent and also the most problematic for the area. In addition, surface-level winds coursing up the Inland Passage can gain considerable steam because of funneling effects, while winds aloft often end up swinging in a southerly or southwesterly direction. Air traffic in Juneau tends to be heavy, averaging more than 400 flights daily. Additionally, with the city's economy largely tied to tourism, government-related work, and retail sales, safe, reliable air transit is critical. However, the northerly and southeasterly wind regimes led to enough aircraft turbulence-related incidents that Mark Air and Delta Airlines stopped serving Juneau. Alaska Airlines remains as the only commercial air carrier serving the city. Unlike the Hong Kong project, in which RAL provided only the alert-system software, the plan for Juneau included responsibilities for creating the prototype in its entirety. This expanded role meant that the team would have to identify best placement of weather profiling stations in order to pinpoint areas of greatest turbulence, then design, build and maintain the sensor sites that provide information about wind speed, wind direction, air temperature, etc. Initially, RAL purchased equipment that Alaska Airlines installed and used to enhance flight safety. Then, from this initial equipment suite, RAL expanded monitoring to include additional sites and new types of hardware, including wind profilers. Today, five anemometer sites and three wind profiler sites supply data to the prototype Juneau Airport Winds System (JAWS). Each site is found at a strategically located position to capture critical information on the northerly and southeasterly wind regimes from surface level to 6,000 feet. Data is fed from these sites to a central location at the airport where it is processed and alert information is generated. The weather sensors at each site route data through a network of wireless radios and telephone lines. Using this information, JAWS generates turbulence alerts every minute for hazardous areas in the vicinity of the airport. These alerts give pilots real-time information about wind speed, wind direction, and an indication of overall flight safety. While the output is designed for use by pilots flying 737 jets, the color-coded alerts (yellow for moderate, and red for severe) are useful to pilots of smaller planes who can assess flight safety level based on how their aircraft compares to a 737's size and capabilities. Begun in 1997, JAWS evolved steadily, improving and refining system capabilities with the goals of increased flight operational safety and alert system availability.. By FY2007 a JAWS prototype, tested and validated by the FAA, was operating with alerts. Shortly thereafter the FAA commenced development of its own "end-state" (JAWS-E) version of the system. The FAA development strategy included incorporation of NCAR's algorithms, display technology, and most remote site hardware. In FY2010 maintenance of the mountaintop sites transitioned to the FAA, followed by wind profiler site maintenance in FY2011. In early FY2012 the FAA commenced an Operational Readiness Demonstration of their system, following which they commenced formal operation of JAWS-E. At this time parallel operation of the NCAR prototype ceased, the prototype was shut down and dismantled. Formal commissioning of the JAWS-E occurred in July 2012, following which Alaska Airlines, the only part 121 commercial carrier operating in Juneau, changed their Operations Specification to use JAWS alerts for making go/no go decisions at the Juneau International Airport. Now that the JAWS program is completed, consideration could be focused on using JAWS-like systems at airports around the United States experiencing similar terrain–influenced turbulence. Pilots flying into and out of airports located in Maui, Reno, and Las Vegas, and other sites in Alaska, for example, could benefit from JAWS technology, and new prototypes would benefit from lessons learned during the Juneau alert system's development and maintenance.

Agency
National Science Foundation (NSF)
Institute
Division of Atmospheric and Geospace Sciences (AGS)
Type
Cooperative Agreement (Coop)
Application #
0915289
Program Officer
Stephan P. Nelson
Project Start
Project End
Budget Start
2008-10-01
Budget End
2013-09-30
Support Year
Fiscal Year
2009
Total Cost
$8,545,402
Indirect Cost
Name
University Corporation for Atmospheric Res
Department
Type
DUNS #
City
Boulder
State
CO
Country
United States
Zip Code
80305