Showing posts with label Automatic Weather Stations. Show all posts
Showing posts with label Automatic Weather Stations. Show all posts

Thursday, November 10, 2016

A New Vision for Weather and Climate Services in Africa

UNDP Report Calls for Enabling Actions by African Leaders
Public-Private Partnerships, New Technologies, Regional Cooperation, Capacity Building Key to Resolving Sub-Saharan Africa’s Persistent Challenges in Maintaining Sustainable Climate Information and Early Warning Systems

Marrakesh, Morocco, 10 November 2016 – During today’s climate talks in Marrakesh, the United Nations Development Programme (UNDP) launched a report that focuses on a new approach adopted by African leaders to proactively support the sustainability of investments in weather and climate services across the continent.

The report, “A New Vision for Weather and Climate Services in Africa,” highlights new technologies and new approaches that will enable sub-Saharan African countries to support the sustainability of investments in the weather and climate services sector, and improve efforts to adapt to a changing climate in Africa.

“As we move further into the 21st century and the average global temperature increases, we are likely to witness more frequent and severe weather, droughts, floods, and sea level rise around the globe. If not addressed, as committed to by world leaders in Paris, climate change will be a major challenge to efforts to achieve the Sustainable Development Goals,” said Bonizella Biagini, Programme Manager for UNDP’s Programme on Climate Information for Resilient Development in Africa (CIRDA). “Providing accurate, reliable, and timely weather and climate information is central to building resilience to climate change, empowering nations, saving lives and strengthening livelihoods across Africa’s most vulnerable communities.”

On a macro-economic and global policy level, a failure to accurately provide warnings on fast-acting storms and other extreme climate events not only takes lives, it also affects production levels and hinders economic development, according to the report. Citing a joint study from the World Meteorological Organization and the Centre for Research on the Epidemiology of Disasters, the report concludes that “from 1970 to 2012, there were 1,319 reported weather-related disasters in Africa that caused the loss of 698,380 lives and economic damages of US$26.6 billion.”  The Intergovernmental Panel on Climate Change has also identified Africa as the continent most vulnerable to climate change, with projected reductions in agricultural yield as much as 50 percent and net crop revenues dropping by up to 90 percent by 2100.
Investing in weather and climate services is a smart investment, according to report authors. World Bank estimates indicate that “upgrading all hydro-meteorological information production and early-warning capacity in developing countries would save an average of 23,000 lives annually and would provide between US$3 billion and US$30 billion per year in additional economic benefits related to disaster reduction.”
“While people in Africa have contributed the least to human-induced climate change, they are among the most vulnerable to its effects. Every year, thousands of lives and countless millions of dollars of livelihoods, crops, and infrastructure investments are lost due to severe weather, contributing to a poverty trap,” said Biagini. “Timely and effective early warnings and improved climate information can help minimize these losses by improving decision making in government and communities.  Businesses, from the large to the micro, benefit from access to quality and localized weather information.”

The report is a learning product from the UNDP’s CIRDA Programme, a four-year programme supporting climate information and early warning systems projects in 11 African Least Developed Countries with $50 million from the Global Environment Facility’s Least Developed Countries Fund (LDCF). The peer-reviewed publication builds on the expertise of world-renowned experts in meteorology, hydrology, new technology and sustainable development, as well as a cross-continental UNDP market study on “Revenue Generating Opportunities Through Tailored Weather Information Products.”

Addressing Persistent Challenges
The report begins with an in-depth analysis of the persistent challenges facing Africa’s National HydroMeteorological Services (NHMS) in providing sustainable, long-term weather and climate services.

Citing a study on climate change adaptation from the World Bank’s Independent Evaluation Group, the report underlines that “Since the mid-1980s, donor support for modernizing weather and climate services in developing countries has conservatively totalled almost $1 billion, with the majority of commitments since 2000. Nevertheless, a recent World Meteorological Organization (WMO) monitoring survey showed that ‘54% of the surface and 71% of the upper air weather stations in the region did not report data.”

“This often is due to the lack of technical expertise and experience, together with minimal budgets that limit the capacity to invest in novel solutions for weather and climate services in Africa. The solutions, however, exist and can be affordable,” Biagini said.  
Many of the challenges arise from attempts to utilize weather monitoring systems originally created for use in developed countries, such as radars, which, according the report, can be costly and difficult to maintain.

“The design and materials in such equipment are often inappropriate for the arid and tropical environments found throughout much of sub-Saharan Africa,” said report co-author John Snow, Dean Emeritus at Oklahoma University’s College of Atmospheric and Geographic Sciences. “Such equipment is difficult to maintain in these harsh environments. Equipment is often bought without allowance for the true costs of operation and maintenance, or without consideration of the costs associated with the inevitable technological changes that require regular updates and continuous staff retraining.”

The poor service and consequent loss of NHMS credibility resulting from failure to adequately address such challenges often produces a non-virtuous cycle of continually weakening political and financial support, according to report authors.

A New Vision for Technology
The report looks to promising advances in technologies, along with more effective coordination with the private sector to improve the sustainability of investments in the weather and climate services sector in sub-Saharan Africa. The approach proposed also builds on the rapid extension of mobile phone services throughout Africa, which provides both tower sites with power and security for weather stations, and real-time communication critical for delivery of data to central meteorological offices and of products from the central offices to users.

“This new vision goes beyond the simple procurement and installation of new technologies, to an end-to-end systems approach,” said Uganda Minister of Water and Environment Sam Cheptoris. “There is no silver bullet, but with effectively structured public-private partnerships, new technology and services, strengthened institutions, increased regional cooperation and continued capacity building, sustainable hydromet solutions are a realistic and attainable goal.”

According to report authors, the technological basis for this new vision is relatively recent innovations in weather and climate monitoring, analysis and forecasting technologies, as well as parallel advances in computing and cellular telecommunication services.
The new technologies described in the report include low-cost All-in-One Automatic Weather Stations, lightning location sensors, automatic water level and stream gages, and central automated systems for data collection, integration and analysis.

“These technologies, together with modern forecaster workstations, comprise a end-to-end hydromet monitoring and forecasting system well suited to the constraints and capabilities of developing countries,” Snow said.

A New Vision for Public-Private Partnerships
While the hardware is relatively straightforward, it can only be applied fully and effectively if the public sector takes the lead to engage a new group of private-sector actors that are working in the climate and weather services space, according to the report.

“From a big picture perspective, these partnerships provide the enabling environment necessary to foster long-term economic stability, support maintenance and integration of monitoring systems, improve value propositions, enhance public support, and support sustainable revenue generation,” Biagini said.

According to the report’s analysis, a number of sectors, such as aviation, agriculture, banking, energy, insurance, resource extraction and telecommunications are willing to pay for high-quality weather and climate information products. In order to produce these products, the report authors suggest National HydroMeteorological Services engage with private sector weather service providers and establish revenue-sharing agreements.

“Substantial market dynamics are stimulating our partner countries to redefine the way they think about climate and weather services,” said Biagini. “What becomes clear is that the status quo is not working enough as too many lives are lost every day. African governments are therefore taking the lead – with the support of the international donor community, the private sector, and organizations like UNDP, the World Meteorological Organization and the World Bank, among others – to find a more effective way to deploy climate and weather services and look to an integrated approach that focuses on sustainability, end-to-end services, and bespoke country-driven approaches.”

Extended Report Findings
  • Investment in hydromet services is said to have a fivefold or greater return in economic development for every dollar spent. Decision makers can use this information to build National Adaptation Plans, strengthen production and local economies, lower migration caused by climate change, and build climate-smart infrastructure designed to withstand the risks due to a changing climate. Private sector enterprises can also use the information to inform their own climate adaptation strategies, while on the community level, village leaders can develop climate-resilient strategies to improve local enterprises and protect productive assets.
  • Providing vulnerable farmers and communities with improved hydromet services has the potential to increase farm production and lower risk. With better information on impending weather events and likely characteristics of the upcoming season, together with actionable information on what to do in each case, farmers can protect property and human lives, access risk-management mechanisms like index-based insurance, and create long-term plans for a future that will be highly dependent on rainfall patterns, droughts, floods and other natural disasters.”
  • The capabilities of modern Automatic Weather Stations (AWS) and water gauging stations, and innovative passive sensors such as lightning detectors, are sufficient for these technologies to play central roles in local-scale observing networks. An approach being promoted in the UNDP’s CIRDA Programme is to use the cell network and modern computers to exploit these devices’ capabilities to provide sustainable local observing networks for the 11 sub-Saharan African countries partnered with the support programme. A network of All-in-One AWS, automated gauging stations, and lightning detectors does not, in and of itself, constitute an early warning system or a climate monitoring system. The data streams from such a network are processed and converted to hydrometeorological information that allows the monitoring of current conditions while driving weather and climate prediction processes that must fold in model output and satellite information as well.

 
The CIRDA Programme
UNDP’s Programme on Climate Information for Resilient Development in Africa (CIRDA) supports Climate Information and Early-Warning Systems Projects in 11 of Africa’s Least Developed Countries in their missions to save lives and improve livelihoods. By building capacity to issue extreme weather warnings, sharing new technological advances in weather monitoring and forecasting, and facilitating innovative partnerships with the private sector, the programme works to foster regional cooperation, support strong institutions and build resiliency to climate change.

Thursday, May 19, 2016

Burkina Faso Mission Report

The Burkina Faso Met Service intends to replace their manual stations with AWS.
Synoptic AWS will be installed at 10 manual synoptic stations across the country.
Communication Strategy and Automatic Weather Stations: The Backbone for an Efficient Early Warning System

By Ulrich Diasso

Devastating droughts and floods, inconsistent rain patterns and other extreme weather events are becoming more frequent in the West African nation of Burkina Faso. These events are challenging Burkina’s ability to adapt to climate change and reach development goals.

Improved localized weather observation networks and integrated communication strategies are essential building blocks to improve the nation’s resilience to climate change, create a strong early warning system, foster good decision-making, and protect lives and livelihoods.

Over the past five years, Burkina Faso’s meteorological service has been taking purposeful steps to modernize their observation system. The country recently acquired 150 Adcon Automatic Weather Stations (AWS) and 16 hydrological stations that will fill existing gaps in their monitoring system.

UNDP’s Programme on Climate Information for Resilient Development in Africa (CIRDA) is playing a central role in Burkina’s modernization efforts, offering technical support to the country by helping them to define the technical specifications of new equipment. With 10 new synoptic stations, 40 agro-climatic stations and 100 rain-gauges adding to the mix, Burkina’s hydro-meteorological monitoring system is set to become one of the most substantial in West Africa.

In order to maintain these new systems and ensure proper transmission of early warnings, the Government of Burkina Faso will need to allocate budgetary resources for system maintenance and work with cellphone companies to ensure the automated transfer of data. The Burkina Meteorological Service intends to replace all manual weather and climate monitoring stations with easy-to-maintain Automatic Weather Stations. With support from CIRDA, the Met Service will initiate discussions with local cellphone companies to establish win-win partnerships and reduce the costs of data transfer.

During the recent “Last Mile” workshop in Zambia, the Burkina Faso delegation requested support from the CIRDA programme in building their Standard Operating Protocol (SOP). In response to this request, the April 2016 CIRDA support mission assessed roles and responsibilities, as well as the existing mandates of the various stakeholders involved in Burkina’s Early Warning System. The final goal of the SOP will be to have a common communication platform that involves all the stakeholders, and ensures the effective issuance of early warnings to vulnerable communities across the country.  

The CIRDA support mission also assessed the current status of the project and provided guidance to overcome some persistent challenges. Top recommendations included advice on how to reduce the cost of data transfer via public-private partnerships with telecommunications providers, and the need to review mechanisms for the sustainable maintenance of newly procured monitoring equipment.

An Adcon synoptic automatic weather station installed
at the National Meteorological Service.
Since 2014, 17 AWS are transmitting data
to the met service. Under the CI/EWS project,
150 Adcon AWS will increase coverage up to 70%.
As improved monitoring systems are deployed, the Burkina Met Service will need to integrate the information collected from these stations into forecasts, early warning alerts and other tailored weather products. Ongoing support from the CIRDA programme will include a review of Burkina’s current forecasting system and the finalization of the Terms of Reference for the development of improved forecasting and early warning systems capabilities.

Ulrich Diasso is a Country Support Specialist in Meteorology and Climate Monitoring for the CIRDA programme. Ulrich holds a PhD in Meteorology and Climate Sciences. Besides his role in the CIRDA programme, Ulrich supports climate change assessment at the African Centre of Meteorological Application for Development (ACMAD). He is also member of the Coordinated Regional Climate Downscaling Experiment (CORDEX) group for model evaluation in Africa.

Wednesday, November 18, 2015

South-South Knowledge Sharing Mission Ignites New Opportunities for the Deployment of Modern Climate and Weather Information Systems




The Weather Philippines Foundation and MeteoGroup Share Lessons on the Deployment of Automatic Weather Stations with Representatives from Tanzania, Uganda and Zambia

Finding solutions to Africa’s persistent weather and climate information challenges is a tough job. It will require new technology, new approaches and new ways of thinking. Shifting the way we think is never easy. But solutions are out there. One just has to look for them.

In the Philippines, for instance, a new network of nearly 1,000 Automatic Weather Stations (AWS) – installed and maintained through innovative public-private partnerships – is looking to provide the 100 million people of this island nation with free, accurate and localized weather information that can be used to save lives, build resilience and improve livelihoods.

In order to learn from the experience of the Philippines and apply lessons learned to the unique political, cultural, economic and social context of sub-Saharan Africa, representatives from UNDP-supported Climate Information and Early Warning Systems Projects in Tanzania, Uganda and Zambia recently toured meteorological facilities in the Philippines on a cross-continental mission to see first-hand how such an extensive weather and climate observing network can be deployed.

How Does It Work?
The 7,100-plus islands of the Philippines lie in the Pacific Typhoon Belt, meaning plenty of bad weather comes this way. And a decade or more of strained budgets and severe storms has left the Philippines without many of the modern weather observing or localized weather forecasting systems one might find in other developing countries.
AWS deployed.

To partially meet the need for better weather observations and localized forecasting across the archipelago, AboitizPower – a major energy supplier in the Philippines – in partnership with UnionBank, established the non-profit Weather Philippines Foundation (WPF) in 2012. The WPF in turn engaged with MeteoGroup Philippines to build a robust, low-cost system of Automatic Weather Stations. The cost is about $2500 per site, and to date, about 1,000 units have been deployed across the nation. The resulting data streams, together with numerical model output and satellite imagery, drive a local forecast system.

The WPF has also developed a strong public outreach program to assist the population of the Philippines in becoming “weather-wiser,” that is, knowing what weather information will be made available from the WPF, understanding how such information can be used in a variety of situations, and then applying that information properly, especially in times of severe weather. There’s an app, a webpage, dedicated TV channel, and of course Facebook and Twitter pages. The real star are the localized, and quite accurate, five-day forecasts and automated current weather feeds that update every ten minutes from the system of AWS monitoring stations.

Working under a Weather As A Service Model (WAAS to use yet another acronym), this partnership effectively uses new technology, localized maintenance to ensure power and security, and cell communication to bring weather information to end users. Through effective outreach, it has encouraged use of weather and climate information in decision making at the lowest levels in communities. In short, it’s a localized observing and forecasting system that meets local needs.
Storm tracks provided through the cloud.

Lessons Learned from the Mission
·      The Philippines technological offering is sufficient to provide highly localized weather observations, forecasts of future weather, and early warnings of severe weather. This information allows individuals to make better, more informed decisions during life-threatening weather events.
·      Successful installation of a national system like the one in the Philippines requires careful end-to-end planning and tightly monitored execution. Key steps include sensor selection, establishing links with telecommunications providers, effective delivery systems to share actionable alerts with end users, and smart information sharing partnerships that allow joint ownership of the data created through the network.
·      It is possible to install an extensive local observing network using high-quality equipment at a relatively modest cost. There’s a real opportunity to benefit from economies of scale. Local fabrication of components, in-house assembly of the stations from components, and the use of labor from the receiving communities (with some training) to install and maintain them further reduces cost – at the same time building local ownership and pride in the new station.
·      Establishing strong partnerships with communities, public-sector agencies at all levels, private-sector players and umbrella organizations to facilitate the operation and maintenance of the stations is key. These partnerships are useful to create advocacy support, reduce installation and maintenance costs, increase access, and benefit from the strengths of various partners.
·      Effective outreach to the diverse user communities is essential for political and financial support and to reach those most affected by high-impact weather.

You can learn more about the WPF approach in the upcoming UNDP publication, “A New Vision: Building resiliency to climate change through public-private partnerships and advanced weather systems in Africa,” scheduled for release in early 2016. Stay tuned for more details on applying lessons learned to the unique context of Africa.

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