Friends & Partners in Aviation Weather: Part 135

Similar documents
Weather Technology in the Cockpit (WTIC) Shortfall Analysis of Weather Information in Remote Airspace Friends and Partners of Aviation Weather Summer

Future of Weather Capabilities in General Aviation Avionics

Complementary Use of Airborne Wx Radar & Datalink Graphical Wx

Multi-Function Display Pilot s Guide Addendum

United Airlines Vision for Weather Decision Making

Advanced Weather Technology

AOPA. Mitigating Turbulence Impacts in Aviation Operations. General Aviation Perspective

DESIGNED FOR EASY INTEGRATION HOW TO GET STARTED. Global Data Products

Weather Radar The Next 10 Years NBAA 2012, Orlando Florida

Weather Technology in the Cockpit (WTIC) Program Program Update. Friends/Partners of Aviation Weather (FPAW) November 2, 2016

Strengthening the CDM triad: A view from the cockpit

Progress in Aviation Weather Forecasting for ATM Decision Making FPAW 2010

ipads/efbs and Weather the cockpit Captain Joe Burns Managing Director United Airlines Technology and Flight Test

Recap of the NTSB PIREP Forum: Optimizing Safety Benefits for Pilots, ATC, and Meteorologists. Paul Suffern NTSB Meteorologist

Strengthening the CDM triad: A view from the cockpit

Section 7: Hazard Avoidance

Aviation Weather Services (AJW-94)

Weather in the Connected Cockpit

Weather Evaluation Team (WET)

KMD 550/850 Multi-Function Display Quick Reference For Software Version 01/11 or Later

B KMD 550/850 Multi-Function Display Quick Reference For Software Version 01/14 or Later

ENSTROM 480B OPERATOR S MANUAL AND FAA APPROVED ROTORCRAFT FLIGHT MANUAL SUPPLEMENT GARMIN GDL 69AH XM WX SATELLITE WEATHER/RADIO RECEIVER

Synthetic Weather Radar: Offshore Precipitation Capability

Federal Aviation Administration

Corridor Integrated Weather System (CIWS) MIT Lincoln Laboratory. CIWS D. Meyer 10/21/05

Calculates CAT and MWT diagnostics. Paired down choice of diagnostics (reduce diagnostic redundancy) Statically weighted for all forecast hours

Survey EFB Weather Applications CAT FW

Deputy Director for Science NCAR Aviation Applications Program

FAA Weather Research Plans

Weather Considerations for UAS Integration

A Mission View of Aviation Wx Requirements. Mark Zettlemoyer, NWS/JPDO James Tauss, SENSIS FPAW, July

Montréal, 7 to 18 July 2014

Insert Title Here Presented by: Steve Abelman Manager of Weather Technology, American Airlines

Emerging Aviation Weather Research at MIT Lincoln Laboratory*

July 13, 2017 Session #1 In Lieu of the Surface Observation Including EWINS Authority, RTMA, Web Cams, and Remote Observation Systems

Sunday, 13 June 1999

and SUMMARY preliminary parameters. 1.1 MET/14-IP/ /15 In line 1.2 WORLD INTERNATIONAL CIVIL AVIATION ORGANIZATION 2/6/14 English only

Future Aeronautical Meteorology Research & Development

KMD 550/850. Flight Information Services (FIS) Pilot s Guide Addendum. Multi-Function Display. For Software Version 02/02 and later

Turbulence Avoidance Technologies

Weather Forecast Guidance and Impact on NAS Management August 3, 2016

Montréal, 7 to 18 July 2014

Measuring In-cloud Turbulence: The NEXRAD Turbulence Detection Algorithm

New Meteorological Services Supporting ATM

Introducing AOPA FlyQ EFB

An illustration of the practical use in aviation of operational real-time geostationary satellite data

FAA-NWS Aviation Weather Weather Policy and Product Transition Panel. Friends and Partners in Aviation Weather October 22, 2014 NOAA NOAA

Meteorological CLEAR BUT PRESENT DANGER

National Convective Weather Forecasts Cindy Mueller

J11.3 Aviation service enhancements across the National Weather Service Central Region

Translating Meteorological Observations into Air Traffic Impacts in Singapore Flight Information Region (FIR)

WMO Aviation Research Demonstration Project (AvRDP) and Seamless Trajectory Based Operation (TBO) PW Peter Li

LANDMARK TM. Class B TAWS

INTEGRATING IMPROVED WEATHER FORECAST DATA WITH TFM DECISION SUPPORT SYSTEMS Joseph Hollenberg, Mark Huberdeau and Mike Klinker

EMADDC. towards operational collection of Mode-S EHS observations in Europe

INTEGRATING IMPROVED WEATHER FORECAST DATA WITH TFM DECISION SUPPORT SYSTEMS Joseph Hollenberg, Mark Huberdeau and Mike Klinker

USE OF WEATHER INFORMATION BY GENERAL AVIATION PILOTS: PROVIDERS AND PRODUCTS

QNH: With this setting set on your altimeter you will be reading altitude above mean sea level based on the local station pressure.

Remote Oceanic Meteorology Information Operational (ROMIO) Demonstration

HEIGHT ALTITUDE FLIGHT LEVEL

Motivation for Operational Bridging and the Aviation Weather Statement

Weather Legends in FOREFLIGHT MOBILE

Use of lightning data to improve observations for aeronautical activities

FAA NextGen Weather Systems

Multi-Function Display Pilot s Guide Addendum

Weather Systems Implementation

Advances in weather and climate science

CAP 437 Offshore Meteorological Observer Training

ForeFlight Mobile Legends

Reprint 797. Development of a Thunderstorm. P.W. Li

Date: October 31, 2012

Meteorology in Continuous Descent Operations

AWOS Level Descriptions

AVIATION INVESTIGATION REPORT A04A0057 WING SCRAPE DURING A REJECTED LANDING

Weather Technology in the Cockpit (WTIC) Program Applying Cloud Technology and Crowd Sourcing to Enhance Cockpit Weather

STUDY UNIT SEVENTEEN GRAPHICAL AIRMAN S METEOROLOGICAL ADVISORY (G-AIRMET)

1.6 A RESPONSE TO HAZARDOUS WEATHER: INTEGRATE WEATHER INFORMATION INTO TRAFFIC FLOW MANAGEMENT

Cross-cutting Issues Impacting Operational ATM and Cockpit Usability of Aviation Weather Technology. John McCarthy Sherrie Callon Nick Stoer

WSI Pilotbrief Optima - for ipad

Accident Prevention Program

AMDAR Forecast Applications. Richard Mamrosh NWS Green Bay, Wisconsin, USA

Weather management what s new?

Weather Legends in FOREFLIGHT MOBILE

Enhanced Weather Radar (EWxR) System

SERIOUS INCIDENT. Aircraft Type and Registration: 2) Embraer EMB 121 Xingu F-TEZZ. Date & Time (UTC): 1 June 2010 at 1000 hrs.

FAA-NWS Aviation Weather Requirements Working Group (ARWG)

Paine Field Airport Existing and Future Environmental Assessment, Initiation of Commercial Service Noise Analysis

Marilyn Wolfson, Convective PDT lead Roy Rasmussen, Convective PDT Alternate lead FPAW meeting, 19 Oct 2006 Orlando. Convective Weather PDT

The next generation in weather radar software.

KMD 550/850. Flight Information Services (FIS) Pilot s Guide Addendum. Multi-Function Display. For Software Version 01/11 or later

Advances in Weather Technology

Doppler Weather Radars and Weather Decision Support for DP Vessels

The gains of an aligned weather impact management. Tzvetomir BLAJEV, NM Safety Unit

Aircraft-based Observations: Impact on weather forecast model performance

Winter Operations GENEVA CASE. AIRPORT OPERATIONS IN EXTREME WEATHER CONDITIONS (winter )

ADL110B ADL120 ADL130 ADL140 How to use radar and strike images. Version

Update on CoSPA Storm Forecasts

Pilot Report: flying with the Garmin GDL 39 ADS-B receiver

Network Severe Weather Programme

B KMD 550/850 Multi-Function Display Quick Reference For Software Version 01/14 or Later

Transcription:

Friends & Partners in Aviation Weather: Part 135 Thursday, October 12, 2017 Jason E. Herman, CAM Chairman, NBAA Part 135 Subcommittee

Part 135 On-Demand Operations A mix of many different operational environments Unique in that on-demand operations can span the globe and service thousands of familiar or unfamiliar airports at a moment s notice and at all hours (unscheduled) Operations may include a variety of aircraft from short range single engine aircraft operating below 10,000 MSL up to large range turbojets operating at FL450+ Flights frequently transit non-far 139 airports where operational services, weather reporting, and other resources may be limited Can be more difficult to obtain timely operational info such as airfield and runway conditions, noise restrictions, and available aircraft services (Fuel, De-Ice, etc.) Aircraft Dispatcher is not a required for FAR 135 operators, many tasks completed by flight crews or flight operations management (customs, weather, fuel planning, researching TFRs, NOTAMs, airport conditions, etc) 2

In-Cockpit Weather Challenges & Wishes Operations to 5000+ public use airports in the USA and beyond as an FAA Certified Air Carrier Variety of on-board installed and portable equipment available on the market (is everyone properly trained on each?) Smaller aircraft with new STC d equipment often have greater in-flight weather services/capability (ADS-B In) Advances in weather radar (Multi-Scan, Auto-Tilt) have typically been implemented in new avionic installations, not always available or cost-effective as a retrofit option Update rates for in-cockpit XM Weather can frequently lag behind other portable ADS-B In or Wifi based solutions NEXRAD coverage areas can be limited in mountainous areas where Part 135 operations are often conducted High altitude convective activity broadly depicted (low resolution) on NEXRAD and Echo Tops can often be lower than the actual tops of convective activity Strategic and tactical decisions to deviate or top weather (Aircraft capable of FL410, FL430, FL450+) Lack of timely and relevant PIREPs, reported PIREPs which do not get entered into the system after advising ATC 3

Lack of NEXRAD Coverage in certain areas, particularly over Gulf of Mexico can make it difficult for flight crews to strategically plan how to best avoid convective activity 4

Example: Lack of NEXRAD Coverage (gray area) over the Rocky Mountain region in northeastern Utah and western Colorado 5

Provided a Tops Report to ZMA while deviating on the SSCOT3 STAR to Miami (OPF). Did it ever make it into the system? How can other flight crews be aware of our observations? 6

NEXRAD is an excellent tool for strategic weather avoidance. When evaluating weather close to the airport, how does cell resolution and intensity affect our operation and decision making? Is the intensity accurate or does it disagree with our onboard radar system? 7

8

Rockwell Collins RTA-4112 Multi-Scan & Auto-Tilt Weather Radar in action while deviating around convective weather at FL450. Simply turn on, wait two or three sweeps, and enjoy a very sharp (gradient contours) and clear picture of convective weather activity. 9

Forecast Winds Aloft may not always display at optimized altitudes for flight operations. For example, the 175mb forecast winds at FL420 (unusable FL) may have to be interpolated or extrapolated to FL410 or FL430. 10

In-cockpit weather resources are great until they stop refreshing or the unit stops functioning. In this example, METARs, Echo Tops, and Lightning data is stale beyond defined latency thresholds and NEXRAD/SIGMET data is missing 11

Often portable solutions (ipad) can provide more timely weather info 12

Portable solutions may also be more cost effective for certain aircraft types where retrofit costs are extremely cost prohibitive 13

In-cockpit weather solutions using ADS-B In or XM WX work very well until you leave the United States. Weather information using these sources outside the USA may be limited or simply not available at all. Part 135 operations can span the world. 14

Brand new aircraft are being delivered today without ADS-B In. Many OEMs and Avionic Vendors have provided ADS-B Out solutions, but what about ADS-B In? 15

Many light Part 23 aircraft are starting to take advantage of cost effective ADS-B solutions which incorporate both OUT and IN. ADS-B In provides free weather and traffic info. 16

FIS-B weather, available through ADS-B In, can provide timely in-flight updates such as NEXRAD, METARs, TAFs PIREPs, Winds Aloft, SIGMET/AIRMET, NOTAMs and TFRs. 17