Date: 2026-05-29Category: Press ReleaseState: Union GovernmentCountry: India
Updated Long Range Forecast for the Southwest Monsoon Seasonal Rainfall during June–September, 2026 and Monthly Rainfall and Temperature Outlook for June 2026
**Executive Summary**
The India Meteorological Department (IMD) issued an updated forecast on May 29, 2026, predicting below-normal rainfall at 90% of the Long Period Average (LPA) for the 2026 southwest monsoon (June–September). June 2026 is expected to see below-normal rainfall and above-normal heatwave days across multiple states, influenced by developing El Niño conditions. The next forecast update for July rainfall is scheduled for the last week of June 2026.
**Key Points / Main Content**
* **Seasonal Rainfall Forecast (June–September 2026)**
* Quantitatively, rainfall is likely to be 90% of the LPA with a model error of ±4%, indicating a high probability of below-normal seasonal rainfall.
* Probability for below-normal or deficient rainfall for the country as a whole is estimated at 84%.
* Rainfall is expected to be normal over Northeast India, but below normal over Northwest India (<92% of LPA), Central India, and the South Peninsula.
* The Monsoon Core Zone (MCZ), containing most rainfed agricultural areas, is likely to receive below-normal rainfall (<94% of LPA).
* **June 2026 Rainfall and Temperature Outlook**
* Average rainfall for June is forecast to be below normal (<92% of LPA) for the country as a whole.
* Above-normal monthly maximum and minimum temperatures are likely across most parts of the country.
* Above-normal heatwave days are expected in states including Uttar Pradesh, Haryana, Punjab, Bihar, Odisha, Chhattisgarh, Gujarat, Andhra Pradesh, and parts of Maharashtra, Telangana, Himachal Pradesh, and Tamil Nadu.
* **Climatic Drivers**
* Neutral El Niño-Southern Oscillation (ENSO) conditions are currently transitioning toward El Niño, which is likely to develop during the monsoon season.
* Neutral Indian Ocean Dipole (IOD) conditions are expected to continue throughout the season.
* **Forecasting Services**
* IMD uses a Multi-Model Ensemble (MME) forecasting system for long-range, monthly, and seasonal predictions.
* Extended-range forecasts (4-week outlooks) are updated every Thursday, supplemented by daily short-to-medium range forecasts.
**Impact Analysis**
**Agriculture Sector**
* **Impact:** High risk of drought, heat stress, and water deficits, particularly in the rainfed areas of the Monsoon Core Zone.
* **Action Required:** Develop and implement contingency plans, strengthen drought monitoring, and utilize IMD’s early warning services for irrigation and crop management.
**State and District Administrations**
* **Impact:** Increased pressure on public health systems and essential services due to prolonged heatwave conditions and rainfall deficits.
* **Action Required:** Ensure operational readiness of cooling shelters, maintain safe drinking water supplies, and enhance health surveillance and emergency response mechanisms.
**Water and Power Authorities**
* **Impact:** Potential challenges for water availability and a reduction in hydropower generation capacity.
* **Action Required:** Prioritize efficient water resource management and promote community-level water conservation practices.
**General Public**
* **Impact:** Vulnerable groups (elderly, children, and outdoor workers) face significant health risks from extreme heat exposure.
* **Action Required:** Follow official weather warnings, maintain adequate hydration, and minimize outdoor exposure during peak afternoon hours.
Key Entities Referenced
India Meteorological Department (IMD): The primary government agency responsible for meteorological observations and issuing long-range weather forecasts.
Ministry of Earth Sciences: The administrative ministry overseeing the IMD and national meteorological services.
Monsoon Core Zone (MCZ): A specific geographical region encompassing the primary rainfed agriculture areas of India, used as a key metric for monsoon impact.
Monsoon Mission Climate Forecasting System (MMCFS): A research-based climate model used by the IMD for operational long-range seasonal predictions.
Multi-Model Ensemble (MME): The operational forecasting system that integrates various global climate models to generate monthly and seasonal rainfall outlooks.
Ministry of Earth Sciences
Updated Long Range Forecast for the Southwest
Monsoon Seasonal Rainfall during June–
September, 2026 and Monthly Rainfall and
Temperature Outlook for June 2026
Posted On: 29 MAY 2026 10:43AM by PIB Delhi1. Background
Since 2021, the India Meteorological Department (IMD) has been using a new strategy for
issuing operational long range forecasts on a monthly and seasonal scales for rainfall and
temperatures across the country. For this, a newly developed Multi-Model Ensemble
(MME) forecasting system is used. The MME system utilizes simulations from the coupled
global climate models (CGCMs) sourced from various global climate prediction and
research centers, including IMD's Monsoon Mission Climate Forecasting System
(MMCFS) model.
On 13th April, 2026, the IMD has issued the first-stage forecast for the 2026 southwest
monsoon seasonal (June to September) rainfall, consisting of quantitative and
probabilistic forecasts for the country as a whole, and the spatial distribution of
probabilistic forecasts for the tercile categories (above normal, normal, and below normal)
of the seasonal (June-September) rainfall. As a part of the second stage forecasts, the
IMD has prepared the following forecasts:
Updated quantitative and probabilistic forecasts for the monsoon seasonal(June-September)
rainfall over the country as a whole during 2026 and spatial distribution of the probabilistic
forecasts for the seasonal rainfall over the country.
Probabilistic forecasts for the seasonal rainfall over the four homogenous regions of India
(northwest India, central India, south Peninsula, and northeast India) and the monsoon core
zone (MCZ) consisting of most of the rainfed agriculture areas of the country.
Probabilistic forecast for the rainfall over the country as a whole and spatial distribution of the
probabilistic forecasts for the rainfall over the country during June, 2026.
Spatial distribution of the probabilistic forecasts of Temperatures (Maximum and Minimum) and
Outlook for Heatwaves over the country for the month of June 2026.
2. Sea Surface Temperature (SST) over the equatorial Pacific & Indian OceansCurrently, neutral El Nino-Southern Oscillation (ENSO) conditions are transitioning
towards El Nino conditions over the equatorial Pacific region. The latest MMCFS as well
as other climate model forecasts indicate that the El Nino conditions are likely to develop
during the southwest monsoon season.
At present, neutral Indian Ocean Dipole (IOD) conditions are observed over the Indian
Ocean. The latest MMCFS forecast indicates that neutral IOD conditions are likely to
continue during the monsoon season.
3. Second Stage Forecasts for the 2026 Southwest Monsoon Rainfall
3a. Updated Forecast for the Rainfall over the Country as a whole during
Monsoon Season, 2026
Quantitatively, the monsoon seasonal(June-September) rainfall for the country as a
whole during 2026 is likely to be 90% of the Long Period Average (LPA) with a model
error of ± 4%.The LPA of the seasonal rainfall over the country as a whole based on data
of 1971-2020 is 87 cm.
The five category probability forecasts for the Seasonal (June to September) rainfall over
the country as a whole during 2026 are given below. It suggests 84% probability for
below normal or less rainfall for the country as a whole.
Table 1. Five category probability forecasts for the Seasonal (June to
September) rainfall over the country as a whole during 2026
Category Rainfall Range Forecast Climatological
(% of LPA) Probability (%) Probability (%)
Deficient < 90 60 16
Below Normal > 90 - 95 24 17
Normal 96 -104 14 33
Above Normal > 105 -110 2 16
Excess > 110 0 17
3.b.Updated Forecast for the Spatial Distribution of Rainfall over the Country
during monsoon season, 2026
The spatial distribution of probabilistic forecasts for tercile categories (above normal,
normal, and below normal) of seasonal rainfall (June to September, 2026) is depicted in
Fig. 1.
It indicates that below-normal seasonal rainfall is most likely over most parts of the
country, except some areas over Northwest & Northeast India, eastern parts of peninsular
India and adjoining areas of east-central India and isolated pockets of East India, where
normal to above normal rainfall is likely.There is no signal by the model over the white
shaded areas within the land region of the country.Below-normal rainfall may lead to challenges for agriculture, water availability,
hydropower generation, and ecosystem sustainability, along with increased risks of
drought, heat stress, and pressure on drinking water resources. To minimize these
impacts, strategies can include efficient water resource management, promotion of water
conservation practices, contingency planning for agriculture, strengthening drought
monitoring and use of early warning services of IMD, and enhancing preparedness
measures in sectors that are particularly vulnerable to rainfall deficits.
3c.Forecast for the Monsoon Rainfall over the four Homogenous regions of the country
and Monsoon Core Zone (MCZ) during Monsoon Season, 2026
The tercile category forecasts for the four broad homogenous regions and MCZ for the
monsoon seasonal (June-September) rainfall during 2026 are given in Table 2 below.
Tercile categories have equal climatological probabilities of 33.33% of LPA each. The
geographical areas of different homogeneous regions are shown in Fig.2.
Table 2. Forecasts for the four broad homogenous regions and MCZ for the
monsoon seasonal (June-September) rainfall during 2026
NW India Central India South Penins
Rainfall
Category Range Forecast Range Forecast Range For
(% of
Probability (% Probability (%
LPA)
(%) of (%) of
LPA) LPA)
Below <92 46 <94 43 <94 45
Normal
Normal 92-108 33 94-106 33 94-106 34
Above >108 21 >106 24 >106 21
Normal
Northeast India Monsoon Core Zone (MCZ)
Rainfall
Category Range Forecast Range (% of For
Probability (%) LPA) Pro
(% of
(%
LPA)
Below <94 33 <94 43
Normal
Normal 94-106 35 94-106 33
Above >106 32 >106 24
Normal4. Probabilistic Forecast for the Rainfall over the Country during June, 2026
The average rainfall for the country as a whole during June, 2026 is most likely to be
below normal (<92% of the Long Period Average (LPA)).The LPA of the rainfall over
the country as a whole during June 2026 based on the data of 1971-2020 is165.4cm.
The spatial distribution of probabilistic forecasts for tercile categories (above normal,
normal, and below normal) for rainfall during June, 2026 is displayed in Fig.3. Below
normal monthly rainfall is very likely over most parts of the country, except over some
parts of Northwest and Northeast India, and many parts of south Peninsula and isolated
areas of central India where normal to above normal rainfall is likely. There is no signal
indicated by the model over the white shaded areas within the land region of the country.
5. Probabilistic Forecast for the Temperatures over the Country during June, 2026
Figures 4a and 4b display the forecasted probabilities of maximum and
minimum temperatures, respectively, during June 2026.
In June 2026, above normal monthly maximum temperatures are likely over most parts of
the country, except some parts of the Central, Northwest and East India, where normal to
below normal maximum temperatures are very likely (Fig. 4a).
During June 2026, above-normal monthly minimum temperatures are likely across most
parts of the country, except some parts of Northwest, Central and adjoining south
Peninsular India where normal to below-normal minimum temperatures are very likely(Fig.
4b).
6. Heat Wave outlook for the Month of June 2026
The anomaly (deviation from the normal) forecast for the number of heatwave days in the
country for June 2026 is shown in Fig. 5. During June 2026, above normal heat wave days
are expected over many parts of Uttar Pradesh, Haryana, Punjab, Bihar, Odisha,
Chhattisgarh, Gujarat and Andhra Pradesh and isolated regions of Maharashtra,
Telangana, Himachal Pradesh, and Tamil Nadu. However, below-normal heat wave days
are likely over Rajasthan and Jharkhand.
The increased likelihood of heatwave conditions during the June 2026 may have
considerable impacts on public health, water availability, power consumption, and
essential services. Vulnerable groups, including the elderly, children, outdoor workers, and
persons with pre-existing health conditions, are particularly at risk from prolonged
exposure to extreme heat. Persistent high temperatures may also place additional stress
on infrastructure and resource management systems.In view of the anticipated conditions,
State Governments and district administrations are advised to undertake necessary
preparedness measures, including ensuring the operational readiness of cooling shelters,
availability of safe drinking water, and enhanced health surveillance and emergency
response mechanisms.The India Meteorological Department
regularly issues weekly and extended-range forecasts, along with Early Warnings and
Impact-Based Forecasts (IBF), indicating the probable intensity and spatial distribution of
heatwave conditions to facilitate timely preparedness and response planning. The public
is advised to stay informed about official forecasts and warnings, and to followprecautionary measures such as maintaining adequate hydration, minimising exposure
during the peak afternoon hours, and taking special care of vulnerable individuals
throughout the heatwave season.
7. Extended Range Forecast and short to medium range forecasting services
IMD also regularly prepares and provides extended range forecasts (7–day averaged
forecasts for the next four weeks) for rainfall, maximum temperatures, and minimum
temperatures over the country. These forecasts are updated every week on Thursday.
These forecasts are based on the Multi-model Ensemble Dynamical Extended Range
Forecasting System, which is currently operational at IMD. The forecasts are available
through IMD website https://mausam.imd.gov.in/imd_latest/contents/extendedrangeforec
ast.php).
The extended range forecast is followed by short to medium range forecasts issued daily
based on various very high resolution Global and Regional Models.The forecasts are
available through IMD website https://nwp.imd.gov.in/gfsproducts_cycle00_mausam.php.
Fig.1.Updated Probability forecast of tercile categories* (below normal, normal, and
above normal) of rainfall over India during southwest monsoon season (June-
September), 2026. The figure illustrates the most likely categories as well as theirprobabilities. The white shaded areas within the land region represent no signal from the
model.
(*Tercile categories have equal climatological probabilities, of 33.33% each).Fig.2. Four broad homogeneous regions of India and Core Monsoon Zone of the country
considered for monsoon rainfall forecast
Fig.3. Probability forecast of tercile categories* (below normal, normal, and above
normal) for the 2026 June rainfall over India. The figure illustrates the most likely
categories as well as their probabilities. The white shaded areas within the land region
represent no signal from the model.
(*Tercile categories have equal climatological probabilities, of 33.33% each).Fig.4a. Probability forecast of Maximum Fig.4b. Probability forecast of Minimum
Temperature for June2026. Temperature for June 2026.
Fig.5. Probability forecast of heatwave days duringJune 2026.Click Here To See PDF
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