Satellite Data Utilisation at the National Meteorological Service of New Zealand (MetService) Wim van Dijk November 2015 AOMSUC6 SC 2-4

Similar documents
NOWCASTING PRODUCTS BASED ON MTSAT-1R RAPID SCAN OBSERVATION. In response to CGMS Action 38.33

WEATHER FORECASTING Acquisition of Weather Information WFO Regions Weather Forecasting Tools Weather Forecasting Tools Weather Forecasting Methods

WJEC 2014 Online Exam Review

PAGASA s Expectations of New-generation Satellites for Hazard Monitoring

Unit 5 Lesson 3 How is Weather Predicted? Copyright Houghton Mifflin Harcourt Publishing Company

Moisture, Clouds, and Precipitation: Clouds and Precipitation. Dr. Michael J Passow

" The usefulness of RGB products: the perspective of the Australian Bureau of Meteorology "

RGB Experts and Developers Workshop 2017 Tokyo, Japan

Advanced Geostationary Observations for the OzEWEX Community. Leon Majewski Bureau of Meteorology

A Questionnaire on the Utilization of Satellite Data from the New Generation of Geostationary Meteorological Satellites

Your Source for Global Aviation Forecasts

New Zealand Country Report

Weather Maps. Name:& & &&&&&Advisory:& & 1.! A&weather&map&is:& & & & 2.! Weather&fronts&are:& & & & & &

How the Bureau of Meteorology contributes to the integrated risk picture. Presented by Michael Berechree

Trends Forecasting. Overview: Objectives: GLEs Addressed: Materials: Activity Procedure:

A Review of the Australian VLab Centre of Excellence National Himawari-8 Training Campaign. AOMSUC-6 Conference Session

How to display RGB imagery by SATAID

RAV VLab Report Australian VLab Centre of Excellence

WEATHER AND CLIMATE EXTREMES MONITORING BASED ON SATELLITE OBSERVATION : INDONESIA PERSPECTIVE RIRIS ADRIYANTO

The known requirements for Arctic climate services

JOINT WMO TECHNICAL PROGRESS REPORT ON THE GLOBAL DATA PROCESSING AND FORECASTING SYSTEM AND NUMERICAL WEATHER PREDICTION RESEARCH ACTIVITIES FOR 2016

METEOSAT THIRD GENERATION

FUTURE PLAN AND RECENT ACTIVITIES FOR THE JAPANESE FOLLOW-ON GEOSTATIONARY METEOROLOGICAL SATELLITE HIMAWARI-8/9

EUMETSAT products and services for monitoring storms - New missions, more data and more meteorological products

Meteorology Curriculum Maps Unit 1: Basic Concepts of Meteorology Unit 2: The Atmosphere in Motion

An overview of Wet Season Forecasting in the Northern Territory

25. National warnings and advisories

National Maritime Center

Recommendations from RA III/RA IV SDR -2 Training Task Team (SDR-TTT)

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

Arctic Weather Every 10 Minutes: Design & Operation of ABI for PCW

25.1 Air Masses. Section 25.1 Objectives

3. Recognize that when a science investigation is replicated, very similar results are expected.

Lab 19.2 Synoptic Weather Maps

WEATHER. rain. thunder. The explosive sound of air as it is heated by lightning.

Implementation Guidance of Aeronautical Meteorological Observer Competency Standards

Earth and Space Science. Teacher s Guide

How Tokyo VAAC s forecasters uses RGB products

Direct Readout at the Meteorological Service of Canada

Strategic Radar Enhancement Project (SREP) Forecast Demonstration Project (FDP) The future is here and now

WMO/ICAO AMF Competencies

GRAPHICAL NZ SIGWX Graphical New Zealand Significant Weather Chart

Benefits of the new-generation Himawari-8 geostationary satellite for the Asia-Pacific region. Toshihiko HASHIDA Japan Meteorological Agency (JMA)

Module 11: Meteorology Topic 5 Content: Weather Maps Notes

Funding provided by NOAA Sectoral Applications Research Project CLIMATE. Basic Climatology Oklahoma Climatological Survey

Exercise Brunswick ALPHA 2018

Weather and Climate 1. Elements of the weather

Chapter Introduction. Weather. Patterns. Forecasts Chapter Wrap-Up

Use the terms from the following list to complete the sentences below. Each term may be used only once.

National Maritime Center

Nowcasting for New Zealand

Response of the London Volcanic Ash Advisory Centre to the Eyjafjallajökull Eruption

Advanced Spotter Training Welcome! Lesson 1: Introduction and Why Spotters are Important

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

3 Weather and Climate

The Variety of Maps By ReadWorks

MSGVIEW: AN OPERATIONAL AND TRAINING TOOL TO PROCESS, ANALYZE AND VISUALIZATION OF MSG SEVIRI DATA

AOMSUC-6 Training Event

Remote Sensing Observations AOSC 200 Tim Canty

WSI Pilotbrief Optima - for ipad

ÖBB Natural Hazard Management

Communicating uncertainty from short-term to seasonal forecasting

CURRICULUM OUTLINE. DEPARTMENT: Science DATE: January, 2004

Mr. P s Science Test!

A SMART SYSTEM FRAMEWORK ENABLING AN INNOVATIVE WEATHER AWARENESS SYSTEM FOR AIRPORTS AND BEYOND

Plan for operational nowcasting system implementation in Pulkovo airport (St. Petersburg, Russia)

Satellite-based Convection Nowcasting and Aviation Turbulence Applications

4.1 New Generation Satellite Data and Nowcasting Products: Himawari

Aurora Bell*, Alan Seed, Ross Bunn, Bureau of Meteorology, Melbourne, Australia

Guidance on Aeronautical Meteorological Observer Competency Standards

WORLD S CHOICE FOR GEO IMAGING. Advanced Baseline Imager (ABI)

Geography GCSE. Year 9 Term and Topic Unit Content Homework Opportunities

Critical Thinking Review

2) What general circulation wind belt is the place of origin for hurricanes? A) westerlies B) trade winds C) doldrums D) horse latitudes

Oklahoma Weather. Adaptable for 4 th -5 th Grade. by Allison Cassady, Ph.D. Brought to you by:

Joint RA II/V Workshop on WIGOS for DRR - The Jakarta Declaration - (12-14 October, Jakarta, Indonesia) NMSC/KMA

Weather Forecasting. pencils, colored daily weather maps for consecutive days (5)

FORMATION OF AIR MASSES

Signs in the Sky. by Michelle August

Monitoring Sand and Dust Storms from Space

MSG/SEVIRI AND METOP/AVHRR SNOW EXTENT PRODUCTS IN H-SAF

Observing Weather: Making the Invisible Visible. Dr. Michael J. Passow

Severe Weather Watches, Advisories & Warnings

RGB Experts and Developers Workshop - Introduction Tokyo, Japan 7-9 Nov 2017

Khalid Y. Muwembe UGANDA NATIONAL METEOROLOGICAL AUTHORITY (UNMA)

Weather and the Atmosphere. RAP Short Course

Ash RGB Detection of Volcanic Ash

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

Weather Forecasting. March 26, 2009

Himawari-8 True Color RGB

GENERATION OF HIMAWARI-8 AMVs USING THE FUTURE MTG AMV PROCESSOR

Weather Extremes in Canada: Understanding the Sources and Dangers of Weather

The 5th Meeting of the Coordinating Group of the RA II WIGOS Satellite Project

Weather Satellite Data Applications for Monitoring and Warning Hazard at BMKG

Passage (click here to show all)

WEATHER, CLIMATE, & NATURAL HAZARDS (3.ES.NGSS)

HARMONISING SEVIRI RGB COMPOSITES FOR OPERATIONAL FORECASTING

Introduction. Sunny Partly Cloudy Cloudy. Flurries Snow Ice. Showers Thunderstorms Rain. High Pressure Low Pressure FRONTS. Cold Warm Stationary

Atmospheric Motions Derived From Space Based Measurements: A Look To The Near Future. James F.W. Purdom

May 17, earthsciencechapter24.notebook. Apr 8 10:54 AM Review. Grade:9th. Subject:Earth Science. Date:4/8.

Transcription:

Satellite Data Utilisation at the National Meteorological Service of New Zealand (MetService) Wim van Dijk November 2015 AOMSUC6 SC 2-4

Forecasting at MetService MetService currently employs ~275 staff ~60 duty meteorologists 24 / 7 / 365 rotating shift roster 25 shifts / day (public/commercial/marine/aviation/lead/severe weather) 10 Lead/TCWC Specialists (+13 Severe Weather Meteorologists)

Hazard 1: Rain, wind and snow from major midlatitude storms

Hazard 2: Volcanic eruptions and volcanic ash

Hazard 3: Severe thunderstorms

Hazard 4: Dense Fog Fog event days at international airports in last 12 months where visibility was reported as less than 1000m Auckland 15 events Wellington 3 events Christchurch - 35 events Queenstown 8 events

MetService s expectations and requirements of the new series of satellites Hazard Features Key requirements Major mid-latitude storms Volcanic eruptions and volcanic ash Rapid scanning Multi-spectral bands High spatial resolution Rapid scanning High spatial resolution Multi-spectral bands: we still have to change the forecast room culture to make the most of these Stable provision of imagery without communication errors Stable provision Product algorithms Easy-to-understand products Severe thunderstorms Rapid scanning High spatial resolution Multi-spectral bands: Stable provision Product algorithms Easy-to-understand products Dense Fog New instruments: A lightning mapper will help detect Thunderstorms Rapid scanning High spatial resolution Multi-spectral bands: Stable provision Product algorithms Easy-to-understand products

Infrastructure challenge - Forecast Inputs

Lessons from our Himawari-8 Project se The Cloud for processing and storage The skills that we need are being able to deal with Big Data Hype Cycle

Satellite data at MetService in the next 12-18 months Learn to use Himawari data properly in the forecast room Spread the full extent of Himawari-8 data through other products, particularly graphical ones Implement Himawari-8 quantitative volcanic ash retrieval system. Fill the gaps in our Polar orbiter data supply.

Q1. How long will we need people to write forecasts? A1. We expect to have work for our meteorologists for the foreseeable future. Previously the mindset was: what is the weather going to be? In the future: Is the weather sufficiently different from the plan that I have to change something?

Q2. Will forecasters always need to see Level1 or even Level2 satellite products? A2. Complete viewing of Level1 is not practical even now. The real problem is the limit of human ingest. megabytes as L1 graphics from Himawari (all bands) available every 0.1 second Graphical megabytes to cover a standard PC monitor assuming 4 bytes/pixel 750mb * 10 * 10 / 6000 = 12.5 4 * 1920*1080/1024/1024 = 7.9 Level2 is an good medium term option for us, as long as Really long term??????

Any Questions? Wim Van Dijk Meteorological Data Manager Meteorological Service of New Zealand (MetService) Data.manager@metservice.com Physical address: 30 Salamanca Road, Kelburn, Wellington 6012 Postal address: PO Box 722, Wellington 6140, New Zealand