Région II: Asie

L'Asie est le continent le plus vaste et le plus varié de la planète. Elle couvre 30 % des terres émergées et abrite 60 % de la population mondiale, soit plus de 4,75 milliards de personnes. Elle s'étend sur plusieurs sous-régions telles que le Moyen-Orient, l'Asie centrale et l'Asie de l'Est, et présente un large éventail de caractéristiques climatiques et géographiques. Elle est la Région du monde la plus exposée aux catastrophes. Elle subit fréquemment des phénomènes extrêmes comme les typhons et les tremblements de terre. Ces 50 dernières années, elle a connu 3 612 catastrophes, responsables de près d'un million de décès et de pertes à hauteur de 1 400 milliards de dollars É.-U., soit quasiment la moitié des pertes mondiales totales.

A white balloon sits in the middle of the desert.
Ballon météorologique
Adobe Stock

Le paysage socio-économique de l'Asie est tout aussi diversifié, avec certaines des économies à la croissance la plus rapide du monde, mais aussi huit des pays les moins avancés. Cette Région est confrontée à des défis importants en matière de sécurité alimentaire et d'énergie, qui sont exacerbés par le changement climatique. L'OMM s'engage à renforcer la résilience de la Région en y améliorant les services météorologiques et environnementaux. En raison de la diversité socio-économique de cette Région, ses Membres s'engagent activement à investir dans des technologies telles que celle des satellites météorologiques et à les diffuser, afin de favoriser la collaboration dans toute la Région au bénéfice de l'ensemble de ses Membres.

L'OMM collabore avec des partenaires, dont la Commission économique et sociale des Nations Unies pour l'Asie et le Pacifique, afin de mettre en place des systèmes d'alerte précoce multidangers et de participer à l'élaboration de politiques en s'appuyant sur des données scientifiques et socio-économiques fiables. Cette approche multisectorielle vise à favoriser le développement durable de l'Asie malgré les défis environnementaux et économiques croissants auxquels ce continent est confronté. 

Ongoing projects in the region

Strengthening early warning and early action systems for meteorological, hydrological and climate extremes in Cambodia and Lao People’s Democratic Republic (PDR) (CREWS Cambodia and Lao PDR 2.0)

The CREWS Cambodia and Lao PDR 2.0 project marks a major step forward in enhancing early warning systems and climate resilience in the sub-region, in particular in Cambodia and Lao PDR. This four-year, USD 7.82 million CREWS investment will run from September 2025 to September 2029. This second phase will build on the strong foundation laid by the CREWS Cambodia and Lao PDR 1.0 project, which supported national institutions to improve their capabilities to forecast for key hazards such as floods and storms, make significant strides improving seasonal to sub-seasonal forecasting, and support flood preparedness at local levels as well as ensuring early warning systems are inclusive.The project will be led by WMO, working closely with other CREWS implementing partners World Bank and UNDRR, and will be strongly aligned with the Early Warnings for All Initiative. It will look to build on previous achievements to further strengthen the capacity of National Meteorological and Hydrological Services (NMHSs) to deliver accurate, timely, and impact-based forecasts. A key priority will be to enhance capabilities for impact-based flood forecasting and to advance seasonal to sub-seasonal prediction in support of climate-sensitive sectors such as agriculture, water management, and disaster risk reduction.Looking ahead, the project will emphasize the integration of modern technologies and impact-based forecasting methodologies to ensure early warning services are actionable and user-oriented, including applications for anticipatory action. Collaboration with key sectoral partners will be expanded to translate forecasts into sector-specific products and guidance that directly inform planning and decision-making.At the community level, the project will reinforce local preparedness and resilience through targeted training, flood risk mapping, and the development of improved response mechanisms such as evacuation planning and standard operating procedures. Particular attention will be paid to vulnerable and at-risk groups, ensuring that early warning systems are inclusive, accessible, and responsive to the needs of all communities. 

WMO Technical Advisory under AIM for Scale

Climate change is increasingly affecting agriculture across the globe, especially in low- and middle-income countries (LMICs), where smallholder farmers face growing uncertainty from erratic rainfall, rising temperatures, and extreme weather events. These challenges threaten food security, livelihoods, and national economies.To address these pressing issues, the Agriculture Innovation Mechanism for Scale (AIM for Scale) was launched as a bold initiative to bring evidence-based agricultural innovations to scale—starting with weather services.  WMO is involved in the AIM for Scale Programme Weather Package as a technical advisory partner supported by a grant from the International Affairs Office at the Presidential Court of the UAE. The initiative aims to scale climate services for farmers in countries across Africa, Asia, and South America. Current engagement includes Bangladesh, Chile, Ethiopia, Kenya, and Nigeria, with expansion to 30 countries planned by 2027.WMO supports the initiative through technical advisory on the following aspects: Country engagement through NMHSs and WMO Regional Training Centres, coordination to align the programme with WMO priorities and initiatives.,  the application of climate services in the agriculture sector through innovative co-production processes, enhanced capacity building and trainings for NMHSs and extension actors ; guiding in development of AI-focused weather and agrometeorology training with partners like the Mohamed bin Zayed University of Artificial Intelligence (MBZUAI), University of Chicago and WMO Members and regional centres.  As WMO Secretary-General Professor Celeste Saulo stated during COP29, " More and better data leads to better weather forecasts, early warning systems and climate information services for agriculture and other vital economic sectors. Closing basic data gaps will also help inform AI models.” Professor Saulo added that “the agriculture sector is undoubtedly one of the most vulnerable sectors to climate variability and change. Additional partnerships are needed to ensure that farmers are involved in the coproduction of weather and climate services which will enhance resilience and adaptation in the  agriculture sector.”  

Utilization of Atmospheric Measurements to Establish the Carbon Sequestration Capacity of Bamboo Forests

The four-year pilot project in Anji County in China aims to utilize the Integrated Global Greenhouse Gas Information System (IG3IS) approach, namely accurate atmospheric measurements combined with inverse modeling, to assess the carbon sequestration capacity of the bamboo forest.  With the implementation of the Paris Agreement underway, it is important for national and subnational stakeholders to consider all available methodologies that can guide greenhouse gas emission mitigation and climate change adaptation. As the levels of the greenhouse gases in the atmosphere are controlled by the budget of the sources and sinks, one of the mitigation options is to increase the uptake of the carbon dioxide from the atmosphere (e.g. sequestration planning using different forest and land types).  Bamboo forests can be very good tools for carbon sequestration, total ecosystem bamboo forest carbon ranges from 94 to 392 tC/ha (Yuen et al., 2017). Most of large size bamboo species grow faster than fast growing tree species. Importantly, bamboo forest can be harvested selectively, annually with no damage to the environment. Harvested culms will be replaced by new culms within a year. With the modern technology, bamboo products can be made very durable, they can last for at least 30 years and can substitute for other materials such as wood, aluminum, PVC, concrete and metal.To account for bamboo forest emissions/uptake, some countries are using the 2006 IPCC Guidelines for National Greenhouse Gas Inventories to report on bamboo, approximating bamboo with a tree, IPCC guidelines provide very specific details for measuring tree species but not for bamboos.  In this project, an innovative observations-based methodology complements the traditional approach to the emission inventory. The IG3IS provides a general framework for the observations-based emission/removals evaluation. In the case of the landscape scale application, like in this project, the methodology will be tested as applied to the small scale and complex terrain. Atmospheric observations will be used as an input to the high-resolution inverse models to deduct CO2 flux. Supplementary measurements will be used to attribute the fluxes to photosynthetic activity. These estimates will be then compared with the changes in carbon stocks calculated following emission inventory approach. The good practices from New Zealand will be used to guide methodological developments.  

Climate Science Information for Climate Action (CSICA)

Since October 2018, and in response to the Paris Agreement (Article 7, paragraph 7 (c)) WMO and Green Climate Fund (GCF) have partnered to provide the global community with access to new climate information, tools, and guidance to facilitate the generation and use of climate information in support of climate action decisions, recognizing the contribution and value of science-based decision-making in responding to climate change.  Some of the products developed by WMO include a methodology for Developing the Climate Science Information for Climate Action (WMO-No. 1287), data, tools and associated technical resources for enhancing the climate science basis for GCF-funded projects and activities, as well as for National Adaptation Plans (NAPs) and climate policies.  The aim of providing these products is to help all countries, in particular least developed countries (LDCs), small island developing states (SIDS) and developing countries to identify and select the most effective climate actions to address climate impacts. In doing so, the guidance can contribute to country-level decision-making and the mobilization of climate finance.The Climate Science Information for Climate Action (CSICA) initiative was officially launched in 2021 at the twenty-sixth Conference of Parties (COP 26) to the United Nations Framework Convention on Climate Change (UNFCCC) in Glasgow, Scotland. Furthermore, the GCF Board at its thirty-third Session in July 2022 adopted Decision 19 (GCF B.33/19) recognizing the results of the WMO-GCF collaboration and acknowledged the importance of scaling up the support for strengthening the capacity of all stakeholders to access, synthesize, and incorporate relevant climate science information into climate action policies, plans and investments, as well as enhancing the hydrological and meteorological systems and associated climate information services for low-carbon and climate-resilient development.Noting significant demand from countries, and high-level political support for this work, WMO is implementing the CSICA initiative through the provision of institutional coordination support, technical advisory services, capacity development and increased partnerships. 

Completed projects in the region

Developing capacities for effective climate services in Bhutan

Climate services are key for adapting to climate variability and change and providing crucial climate information that assists individuals and organizations in society for improved decision-making in climate sensitive sectors. The Climate Services Information System (CSIS) is one of the five pillars and operational backbone of the Global Framework for Climate Services (GFCS).  Bhutan is a landlocked country located in the Eastern Himalayas, with altitudes ranging from 150 to 7500 metres above sea level (msl). It has three distinct climate zones: the southern belt (150 - 2000 msl) is characterized by a hot and humid climate, the central belt (2000 - 4000 msl) is characterized by a cool temperature and the northern belt (above 4000 msl) is characterized by an alpine climate. Due to its geographic location and the mountainous terrain, it is vulnerable to changes in climate. The Royal Government of Bhutan (RGoB) notes that addressing hydrometeorological disasters and strengthening of climate resilience are key priorities. One of the National Key Result Areas (NKRA) as part of the Twelfth Five Year Plan of RGoB (2018-2023) is to enhance capacity to respond, mitigate and adapt to climate change.  This project is aimed at developing the capacities of the National Centre for Hydrology and Meteorology (NCHM) for effective climate services in Bhutan which will be achieved via deployment of a customized Climate Services Toolkit (CST). NCHM will be able to apply climate services for decision making in climate sensitive sectors.

Bureaux de l'OMM dans la région

Bureau régional pour l’Asie et le Pacifique

36 Kim Chuan Road, 

Singapour 537054 

(Singapour) 

Bureau de représentation interrégionale de l'OMM pour la région arabe

United Nations House 69 

Road 1901, Hoora 319  
PO Box 26814,  
Manama (Royaume de Bahreïn)