Search Results for: drought

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ICPRB Initiates Drought Monitoring – August 3, 2026

Today, ICPRB has initiated daily Drought Monitoring due to low flows in the Potomac River.

Staff in ICPRB’s Section for Cooperative Water Supply Operations on the Potomac (CO-OP) begins daily Drought Monitoring when flow at the USGS stream gage at Point of Rocks, Maryland, falls below 2,000 cubic feet per second (cfs).

Currently, the flow is 1,740 cfs.

During Drought Monitoring, CO-OP staff send out daily email reports to stakeholders, including water suppliers and government agencies, summarizing the river’s flow, weather predictions, and how much water the region is using on a daily basis.

A summary of the daily report will also be posted on ICPRB’s socials using #DroughtMonitoring. Find a link to the full report on ICPRB’s Drought Monitoring and Operations website.

Established in the 1970s, CO-OP helps manage the Washington metropolitan area water supply system by coordinating withdrawals from the Potomac River and off-river reservoirs and recommending releases from upstream reservoirs when forecasted flow in the river is not sufficient to meet expected needs.

At present, there is sufficient flow in the Potomac River to meet Washington metropolitan area’s water demands without releases from upstream reservoirs. If low‐flow conditions worsen, the metro area is well‐protected from a water supply shortage through well-established contingency plans, which includes CO-OPs drought monitoring and operations protocols.

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2025 Washington Metropolitan Area Drought Exercise

The 2025 Washington Metropolitan Area (WMA) Drought Exercise Report documents the planning, execution, and outcomes of a two-day regional drought coordination exercise, with a pre-exercise kickoff meeting held in advance, led by the Section for Cooperative Water Supply Operations on the Potomac (CO-OP) of the Interstate Commission on the Potomac River Basin (ICPRB). The purpose of this report is to summarize the scenarios, decisions, operational lessons, and recommendations developed during the exercise, which brought together the Washington metropolitan area’s major water suppliers and CO-OP staff to practice coordinated drought response.

This exercise serves as an annual opportunity for CO-OP staff and utility personnel to strengthen their understanding of Drought Operations, evaluate communication protocols, and rehearse the technical and decision-making processes used when Potomac River flows decline. By simulating severe, historically based drought conditions modified for future system configurations, the exercise helps ensure that the Drought Operations team maintains operational readiness and a shared understanding of roles, tools, and responsibilities. The report provides a record of these activities and highlights areas for continued improvement in forecasting, coordination, and information sharing across the region.

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News Release: Drought Watch declared for metropolitan Washington region

News Release
FOR IMMEDIATE RELEASE – June 3, 2026
CONTACT: Renee Bourassa, Communications Director
Interstate Commission on the Potomac River Basin | Rockville, MD
rbourassa@icprb.org | 301.417.4371 | website

Water suppliers and regional government organizations ask residents to voluntarily conserve water.

ROCKVILLE, MD (June 3, 2026) – Earlier today the Drought Coordination Committee of the Metropolitan Council of Governments (COG) declared a Drought Watch for the metropolitan Washington region. This designation increases coordination, monitoring, and public communications among the organizations tasked with monitoring the water supply for our nation’s capital and the surrounding regions, which includes the Interstate Commission on the Potomac River Basin (ICPRB).

Authorities are asking for voluntary water conservation among residents and businesses in the region.

According to the U.S. Drought Monitor Map, 40 percent of the Potomac watershed is experiencing severe drought conditions or worse.

When declaring a drought, agencies consider several indicators, including precipitation, groundwater levels, streamflow, and reservoir levels.

“Recent rains brought temporary relief from the area’s long dry spell that dropped the flow in the Potomac to 130-year lows,” says ICPRB Executive Director Michael Nardolilli. “Since then, however, the rains have stopped and we have once again entered a dry pattern.”

Rain in the region is 17 inches below average for the past two years, as reported by NOAA’s Regional Climate Center.

“The Washington metropolitan region benefits from a cooperative water supply management system that includes upstream reservoirs designed to augment Potomac River flows when needed. Those reservoirs are currently about 99 percent full,” explains Dr. Alimatou Seck, Director of Operations for ICPRB’s Section for Cooperative Water Supply Operations on the Potomac (CO-OP), the department within ICPRB that monitors drought in the region. The most recent drought-related reservoir releases occurred in 1999, 2002, and 2010.

When the river drops below a certain level, CO-OP conducts daily Drought Monitoring by providing a daily report with weather forecast, river flow data, and regional water demand to regional stakeholders.

There are currently no mandatory water use restrictions in the metropolitan Washington region. The last time the region instituted mandatory water use restrictions was a Maryland-statewide declaration in 1999. If conditions worsen, the next stage in the regional drought response plan is a Drought Warning, in which authorities will call for voluntary water use restrictions.

The ICPRB will continue to monitor the river’s levels and coordinate with partners accordingly. Decades of planning and coordination ensure the region’s water supply is well-protected from a water supply shortage.

“As we go into the traditionally dry months of summer and fall, residents are urged to use water wisely,” says Nardolilli, providing examples for ways to reduce water use:

  • Prioritize your outdoor watering. Only water newly planted trees, shrubs, and lawns. A slow drip (versus a heavy pour) will allow the water to reach the root system and not run off the soil.
  • Check faucets and toilets for leaks.
  • Take short showers instead of baths.
  • Run the dishwasher and laundry only when full.

Find more Water Conservation Tips for the Summer on COG’s website.

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Click here for a PDF of this news release >>>

The ICPRB is an interstate compact commission established by Congress in 1940. Its mission is to protect and enhance the waters and related resources of the Potomac River basin through science, regional cooperation, and education. Represented by appointed commissioners, the ICPRB includes the District of Columbia, Maryland, Pennsylvania, Virginia, West Virginia, and the federal government. 

 

 

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Is Hot Drought a Risk in the US Mid-Atlantic? A Potomac Basin Case Study

This paper was published in the Journal of the American Water Resources Association (Volume 61, Issue 3, June 2025)

Interannual variability of streamflow will increase under a future climate, but at the regional scale, there is uncertainty regarding changes in drought severity, and in particular, changes in extreme hydrological drought that could necessitate new water supply infrastructure. This is due to the wide range of regional projections for precipitation and the challenge of estimating statistics in a nonstationary climate. We assess changes in annual streamflow in the Potomac River Basin using a nonparametric approach based on a climate response function and the K-nearest neighbor method, which is relied on to construct time series of sufficient length to compute extreme quantile values. Our results indicate that future Potomac River flows will be impacted by “hot drought”, that is, increasing drought severity caused by rising temperatures coupled with natural variability in precipitation. Average precipitation is projected to increase in the Potomac basin by 9%–12% in the period 2039–2069 and by 11%–16% by 2070–2099. Average streamflow increases more modestly, by 4%–7% in 2039–2069 and by 2 to 9% in 2070–2099, whereas annual flows in an extreme drought year decrease by 3 to 26% in 2039–2069 and by 2%–49% in 2070–2099, assuming a medium sensitivity of flow to temperature. Our approach can provide multi-model consensus inputs for water supply planning models to support decision-making regarding new infrastructure.

DOI number: https://onlinelibrary.wiley.com/doi/10.1111/1752-1688.70031

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Daily Drought Monitoring Reinstated

The Interstate Commission on the Potomac River Basin’s Section for Cooperative Water Supply Operations on the Potomac (CO-OP) resumed daily drought monitoring on Monday, January 5, because Potomac River flow at the US Geological Survey’s gage at Point of Rocks, Maryland, had fallen below 2000 cubic feet per second (cfs), CO-OP’s daily monitoring threshold.  During Drought Monitoring, CO-OP sends out daily email reports to stakeholders summarizing flow, weather, and demand conditions. These monitoring updates are made available each morning on the CO-OP Data Portal. 

Because river flows in the winter tend to be higher than flows in summer, daily monitoring in January is somewhat unusual. Daily flows fell below 2000 cfs on at least one day of the month in January in just 10 percent of the years since the USGS’s collection of flow data at Point of Rocks began in February 1895.  

According to the latest U.S. Drought Monitor data, 100% of the Potomac River basin is facing drought conditions (D0 or worse).  

U.S. Drought Monitor Map for the Potomac basin (blue outline), released January 1, 2026

Since the establishment of our region’s cooperative water supply system in 1982, flows have fallen below 2000 cfs in January in three years: 1999, 2002, and 2018. CO-OP drought operations and releases from upstream reservoirs were required in the summers of both 1999 and 2002. On the other hand, 2018 turned out to be a near record high flow year, with the second highest annual average flow at Point of Rocks since 1895. 

The Potomac River continues to meet all regional demands without augmentation. While current water supplies remain adequate, continued dry conditions could increase the likelihood of reservoir operations later in the year. 

In June of 2025, the Metropolitan Washington Council of Governments’ Drought Coordination Technical Committee lifted the Regional Drought Watch, which stretched over an entire year. ICPRB Executive Director Michael Nardolilli added that “such low flows in January give us pause that we may be in for another drought year (like 1999 and 2002) unless we get exceptional precipitation later in the year (like 2018).” 

The region’s residents are encouraged to use water wisely by taking simple actions such as reducing time in the shower, repairing leaks, and turning off the faucet when not actively using it. 

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News Release — When the milkshake runs low: what groundwater can tell us about future droughts

Water Supply Map

Metropolitan Washington Area water supply service areas and resources in the Potomac River basin (Source: ICPRB).

ROCKVILLE, MD (July 23, 2025) – Imagine you are sharing a chocolate milkshake with ten of your best friends. You all have a straw in the glass. As the milkshake gets lower you want to make sure everyone has enough to go around, so there is a lot of discussion and collaboration to ensure no one person sucks the glass dry. Now, picture the glass is a river and the milkshake is water. That is how water resources management works in the Potomac River basin. There is collaboration and agreements (and a lot of data and science) in place to ensure everyone with a straw in the river has water, even during a drought. After all, this milkshake *ahem* river must satisfy the 5 million people that live in the Washington Metropolitan Area.

To continue that milkshake analogy… the milkshake is so good, everyone wants more. Ideally, deliveries keep coming in to refill the glass; that’s rain. But sometimes, the deliveries slow down or stop, and the building gets hotter, making what’s left disappear faster. That’s a drought. You know there is more milkshake reserved somewhere in the building, but you’re not sure if it’s right next door or 13 floors down with a slow, rusty elevator. How long will it take to get everyone their milkshake? They’re thirsty. In this scenario, the reserve milkshake is groundwater that will help replenish the river, come out of our taps, and support the river’s natural ecosystem. How long does it take for groundwater to become surface water? This is another piece of the water resources management puzzle.

Understanding the connection between groundwater and surface water is vital to water resources management. A recent study led by staff from ICPRB’s Section for Cooperative Water Supply Operations on the Potomac (CO-OP) and 2024 Yale Conservation Scholar and ICPRB intern AJ Villaruel explored groundwater trends (is the reserve milkshake getting fuller, emptier, or staying the same over time?) and the time-lagged relationship between groundwater and surface water (if our milkshake is low today, how long will that affect our milkshake in the future?).

The authors used a relatively new tool — a groundwater drought index developed by NASA, which combines the Gravity Recovery and Climate Experiment (GRACE) satellite data with land surface models — to assess changes in groundwater storage. According to the authors, this approach is more comprehensive than using in situ monitoring equipment alone.

Unfortunately, in this scenario, the amount of reserved milkshake available appears to be declining. The study looked at sub-basins within the Potomac River above Little Falls. Over more than two decades, all of the sub-basins showed a decreasing trend in groundwater storage and most of the sub-basins showed a decreasing trend in river discharge. Many of the well water levels showed no trend, but some had a decreasing trend. Decreasing groundwater trends have also been seen in the Colorado River basin, another shared milkshake with a bigger, and perhaps thirstier, crowd.

In the study area, the time lag — or how long it takes a change in groundwater conditions to impact surface water conditions — was longer during low flow conditions (i.e. drought). The timing varied from one year to a little under two years. The length of time also varied depending on the geological makeup of the sub-basin.

“Using 22 years of satellite-based data, streamflow, and climate data, we identify clear declines in groundwater and low flows and uncover strong time-lagged relationships between groundwater levels and river discharge,” states Villaruel, the study’s first author.

Understanding how groundwater levels impact river flows can help water resource managers, such as the Interstate Commission on the Potomac River Basin, to better predict drought conditions weeks or months in advance. It also highlights the importance of maintaining monitoring networks across watersheds and jurisdictions. These findings are not only applicable to the Potomac River basin, but across the nation.

“We’ve long known that groundwater contributes to river flow with a delay. That is, the system has memory. This study helps quantify how long that memory might last in our region for shallow groundwater systems,” said Dr. Alimatou Seck, co-author and senior water resources scientist at ICPRB. “What’s valuable here is putting a number on that delay. Knowing how long today’s conditions will continue to influence future streamflows helps us improve low-flow forecasts, which are a core part of CO-OP’s drought preparedness.”

“The findings also reinforce a concerning pattern seen globally: declining groundwater availability,” continues Dr. Seck. “Confirming this trend locally provides critical context for decision-makers focused on long-term water supply resilience. At the same time, the study reflects just one lens — a 22-year satellite-based analysis focused on sub-basins. More work is needed to reconcile these results with longer-term records and basin-wide studies that have shown more mixed trends.”

The study also points to future directions, including better quantifying uncertainty in satellite-derived groundwater drought indices and validating lag times with empirical data and physically based models.

Evaluating time-lagged relationships between groundwater storage and river discharge using GRACE-based data: insights from the Potomac Basin was published in the July issue of Environmental Research Communications. AJ Villaruel joined ICPRB through an internship program with the Yale Conservation Scholars – Early Leadership Initiative program.

For media inquiries, contact info@icprb.org or coop@icprb.org.

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Click here for a PDF of News Release — When the milkshake runs low: what groundwater can tell us about future droughts > > >

The ICPRB is an interstate compact commission established by Congress in 1940. Its mission is to protect and enhance the waters and related resources of the Potomac River basin through science, regional cooperation, and education. Represented by appointed commissioners, the ICPRB includes the District of Columbia, Maryland, Pennsylvania, Virginia, West Virginia, and the federal government.

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News Release: New Research Explores the Impacts of Hot Drought in the Potomac River Basin

As the major source of drinking water for the Metropolitan Washington area, the Potomac River basin is used as a case study to explore future impacts of rising temperatures on river flow.

Potomac River basin and freshwater portion of the watershed above Little Falls Dam (Source: Schultz et al. 2025).

ROCKVILLE, MD (July 1, 2025) – Recent hot weather has broken record highs and warm lows, according to The Weather Channel, with at least 160 million people in the United States under a heat alert last week.

A recently published article by Dr. Cherie Schultz and colleagues at the Interstate Commission on the Potomac River Basin’s (ICPRB) Section for Cooperative Water Supply Operations on the Potomac (CO-OP) looks at how warmer conditions may impact the water supply of the nation’s capital, especially in the face of increased variability in precipitation.

According to Dr. Schultz, “Estimating future water requirements in the region is a challenge but our research is one step closer to having a better idea of the region’s needs in the future. Our modeling indicates that the Potomac River will experience increasing drought severity caused by rising temperatures coupled with natural variability in precipitation.”

Precipitation is expected to increase by up to 16% by 2099 while annual river flows may decrease by as much as 49% by the same year due to the impacts of higher temperatures in the future. The increased rain does not mitigate the effects of extremely dry and hot months.

Dr. Schultz points out, “Rising temperatures will affect streamflow by increasing evaporative losses from soils and water surfaces and increase water demand from plants. Just like humans, plants get extra thirsty in the heat.”

The increased heat will change the timing and magnitude of snowmelt, as well.

ICPRB Executive Director Michael Nardolilli explains, “The Potomac River is a major source of water for the region and the only source of water for Washington, D.C. and Arlington, VA. Important research like this can inform planning decisions for the Washington, DC, metropolitan area’s cooperative regional water supply system. These predicted changes in river flows may necessitate new water supply infrastructure to ensure we can turn on our taps, even as obtaining federal funding for water infrastructure may become more challenging.”

The article, Is Hot Drought a Risk in the US Mid-Atlantic? A Potomac Basin Case Study, was published in the June edition of the Journal of the American Water Resources Association.

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Click here for a PDF of News Release: New Research Explores the Impacts of Hot Drought in the Potomac River Basin > > >

The ICPRB is an interstate compact commission established by Congress in 1940. Its mission is to protect and enhance the waters and related resources of the Potomac River basin through science, regional cooperation, and education. Represented by appointed commissioners, the ICPRB includes the District of Columbia, Maryland, Pennsylvania, Virginia, West Virginia, and the federal government.

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News Release: Drought Watch Lifted for the D.C. Metro Area

News Release
FOR IMMEDIATE RELEASE – June 20, 2025

Spring rainstorms have brought relief to the Washington Metropolitan area after almost a year of dry conditions.

ROCKVILLE, MD (June 20, 2025) – Very little rainfall and high temperatures during the summer of 2024 led officials to recommend residents use water wisely to reduce demand on the Potomac River. Today, acting in part due to a recommendation by the Interstate Commission on the Potomac River Basin (ICPRB), the Metropolitan Washington Council of Governments’ (COG) Drought Coordination Committee will be lifting the Drought Watch declaration that has been in place since July 2024.

The COG regional drought plan triggers a Drought Watch when the entire Metropolitan Washington region is considered in moderate drought conditions – or worse – on the National Weather Service U.S. Drought Monitor map. Last year’s Drought Watch was the first enacted since 2010.

“The recommendation of ICPRB was based on several factors,” explains Michael Nardolilli, the executive director of ICPRB, “The U.S. Drought Monitor map shows practically zero signs of drought in the Potomac River watershed. The recent rains have nearly erased the basin’s cumulative precipitation deficits. While spring rains are generally ineffective for groundwater recharge, given the amount of rain the basin has received over the past couple months, staff at ICPRB are optimistic that there will be continued improvement in groundwater levels.”

According to Dr. Cherie Schultz, director of ICPRB’s Section for Cooperative Water Supply Operations on the Potomac (CO-OP), “Even if we end up in a similar situation as last summer, with very little rainfall and record-breaking temperatures, the Washington Metropolitan area is well-prepared to withstand a drought due to decades of careful planning and strong partnerships among water utilities and government agencies.”

As part of a unique cooperative water supply system, Washington Metropolitan water suppliers share and jointly fund upstream drinking water reservoirs – constructed several decades ago – that can supplement river flow, if needed. The upstream reservoirs are currently full.

In addition to the Washington Metropolitan Drought Watch declaration being lifted, the Virginia Department of the Environment lifted all drought advisories for the Commonwealth. As of June 15, 2025, central Maryland remains in Drought Warning status according to the Maryland Department of the Environment.

Nardolilli urges residents to still conserve water when possible by taking simple actions such as turning off the faucet when not actively using it, limiting time in the shower, and only watering plants and lawns when needed.

“The Potomac River is the drinking water source for more than 5 million people in the Washington Metropolitan area and should be treated as a precious resource,” says Nardolilli.

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Click here for a PDF of News Release: Drought Watch Lifted for the D.C. Metro Area > > >

The ICPRB is an interstate compact commission established by Congress in 1940. Its mission is to protect and enhance the waters and related resources of the Potomac River basin through science, regional cooperation, and education. Represented by appointed commissioners, the ICPRB includes the District of Columbia, Maryland, Pennsylvania, Virginia, West Virginia, and the federal government.

Renee Bourassa, Communications Director

Interstate Commission on the Potomac River Basin | Rockville, MD

rbourassa@icprb.org | 301.417.4371 | website

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2023 CO-OP Drought Operations

The Washington, DC, metropolitan area experienced unusually dry conditions in the summer and fall of 2023, and flows in the Potomac River fell to levels requiring the Interstate Commission on the Potomac River Basin (ICPRB) Section for Cooperative Water Supply Operations on the Potomac (CO-OP) to conduct drought response activities in support of the major regional water suppliers: Fairfax Water, Loudoun Water, WSSC Water, and the Washington Aqueduct, a Division of the U.S. Army Corps of Engineers. This report provides a brief summary of these activities and of related issues and discussions that arose. It also documents the take-aways of a Post-Drought Operations Review meeting that took place on November 3, 2023, and a subsequent meeting of the CO-OP Operations Committee on November 17.

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ICPRB in Drought Monitoring Status as of September 11, 2024

As of this morning, ICPRB has started Drought Monitoring due to low flows in the Potomac River and no rain expected in the next week. The Potomac River supplies drinking water to 78% of people in the greater Washington metro region and 100% of residents in the District of Columbia and Arlington County, Virginia.

It has been about a month since Tropical Storm Debby blew through and increased the rivers flow enough to give us respite from the daily drought emails, but the river’s flow is now below the 2,000 cubic feet per second (cfs) threshold for drought monitoring.

During Drought Monitoring, staff at ICPRB’s Section for Cooperative Water Supply Operations on the Potomac (CO-OP) prepare a daily email for water suppliers and government agencies with flow, weather, and demand conditions. This important information can be used to inform water supply operations.

During periods of drought, the CO-OP helps manage the Washington metropolitan area water supply system by coordinating withdrawals from the Potomac River and off-river reservoirs and recommending releases from upstream reservoirs when forecasted flow in the river is not sufficient to meet expected needs.

Follow the conversation and see the daily emails using #droughtmonitoring on Facebook and Twitter/X.

The Washington metropolitan area remains in a Drought Watch declared by the Metropolitan Washington Council of Governments on July 29. Authorities are asking folks to use water wisely.

Graph of USGS Gage at Point of Rocks showing a decline in river flows.

USGS gage Potomac River at Point of Rocks with a flow of 1820 cubic feet per second.