{"id":15392,"date":"2026-02-16T14:12:19","date_gmt":"2026-02-16T19:12:19","guid":{"rendered":"https:\/\/www.rochester.edu\/sustainability\/?p=15392"},"modified":"2026-02-17T13:39:06","modified_gmt":"2026-02-17T18:39:06","slug":"the-energy-spike","status":"publish","type":"post","link":"https:\/\/www.rochester.edu\/sustainability\/the-energy-spike\/","title":{"rendered":"The energy spike: A conversation with the University\u2019s energy engineer, Tim Vann"},"content":{"rendered":"

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Energy costs are rising, spurring businesses and homeowners alike to think twice about their energy use. The 糖心传媒 is no exception; its Energy Services<\/a> group has been working for years to reduce and improve the efficiency of the University\u2019s energy consumption\u2014saving costs and reducing greenhouse gas emissions.<\/p>\n

According to New York Independent System Operator<\/a>, the 2020s have been characterized by energy price volatility owing to factors like the growth of natural gas exports, increasing demand from data centers and large industrial loads, and a transitioning energy grid. Seasonal changes, like the extreme winter weather New York has experienced in early 2026, also play a crucial role in energy price surges.<\/p>\n

So, what can be done to reduce energy strain at the University, both to save costs and be conscientious consumers? University energy engineer Tim Vann answers common questions about the energy cost spike, what the University is doing to improve how it consumes energy, and how members of the University community can help.<\/p>\n

\u00a0<\/strong><\/p>\n

How much are energy rates rising right now, and why is this happening?<\/strong><\/h6>\n

Unusually extreme cold weather across much of the country has caused an increased demand for natural gas, causing its price to rise. In turn, this has caused the price of electricity to rise, as natural gas is the primary fuel for about half of the electricity generated in New York State.<\/p>\n

For the University, our gas rates are locked in, so they are unaffected by short-term fluctuations. However, this is not the case for our electricity rates.<\/p>\n

In January 2026, the average cost of electricity was up 50% compared to January 2025. At its worst, the electrical energy rate peaked at 29 times the average monthly price. So far, the average cost of electricity in February 2026 is up nearly three times the average for February 2025.<\/p>\n

With these prices in mind, now is a good time to consider how we are using energy at the University.<\/p>\n

\u00a0<\/strong><\/p>\n

If I\u2019m not paying for electricity at school or work, why should I care about how much I use? <\/strong><\/h6>\n

All energy production, especially from fossil fuels, comes with negative consequences. The more energy we consume at work, at home, in our schools, etc., the more energy needs to be produced.<\/p>\n

All energy production creates some degree of pollution. Research consistently links air pollution, particularly from fossil fuel combustion, to respiratory disease, cardiovascular disease, and other adverse health outcomes. Reducing unnecessary energy use, even in small ways, contributes to a larger collective impact. That makes eliminating unnecessary energy use a win-win-win-win: Money is saved, pollution is reduced, human health is better protected, and the environment is healthier.<\/p>\n

As an institution with a heavy focus on healthcare, reducing pollution aligns directly with our mission to support and improve health. We should treat energy as a precious resource, using only what we need. Energy that we don’t use today will be available tomorrow, and it will make tomorrow a better place for all.<\/p>\n

\u00a0<\/strong><\/p>\n

Is the University asking employees to solve this problem through individual behavior changes?<\/strong><\/h6>\n

No. However, we are asking employees to be aware of energy use and its cumulative impact on the budget, the environment, and human health, and then to reduce unnecessary energy consumption where possible. At the same time, the University will continue to tackle big energy projects.<\/p>\n

Treat the University like your house. Turn off lights and equipment when they aren’t needed. Use energy, but don’t waste it.<\/p>\n

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How is energy use distributed across the University of Rochester\u2019s operations?<\/strong><\/h6>\n

About 75% of the energy used by the University is for heating, cooling, and ventilating buildings. The buildings that use the most energy are medical and research buildings, which use 2-4 times the energy of a comparably sized building. Buildings with heavy research or intensive patient care needs\u2014like operating rooms\u2014use the most energy, while office areas use the least energy.<\/p>\n

\u00a0<\/strong><\/p>\n

You mentioned that the University is working on some big energy projects. Could you give examples of what changes are being made? <\/strong><\/h6>\n

With the extreme weather we have been experiencing this season, one of the immediate operational changes has been implementing temperature setbacks where possible across the University.<\/p>\n

In addition to managing operations to ensure the University has the power and heat it needs, a large portion of what Energy Services does make improvements in energy efficiency. Here are some of the projects we have been working on recently:<\/p>\n