VERKHOYANSK – A CITY WITH 70 DEGREE DIFFERENCE BETWEEN SUMMER AND WINTER

Located in the lap of Verkhoyansk is the city, the Verkhoyansk city. The city lies in the path of Katabatic Winds which makes it so cold.

It is also one of the coldest cities with a very high-temperature range.

VERKHOYANSK Siberia

  • Verkhoyansk is known for having the largest temperature range between summer and winter of any inhabited place on Earth.
  • The city’s average summer temperature is around 67.1 °F (19.5 °C), while the average winter temperature is -58.1 °F (-50.1 °C), resulting in a difference of about 125.2 °F (70 °C).
  • That is, the difference between the summer and winter temperatures is to the extent of 70 degrees centigrade. Such type of temperature ranges are not found anywhere in the whole of the world.
  • Verkhoyansk has been recognized by the World Meteorological Organization as having the lowest recorded temperature outside of Antarctica, at -90 °F (-67.8 °C).
  • Despite its extreme temperatures, Verkhoyansk is home to about 1,300 people, who have adapted to the harsh conditions through traditional practices such as reindeer herding and fur clothing.

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Nestled deep within a valley, surrounded by towering mountains, the city finds itself trapped in a microclimate that amplifies weather patterns. During the winter months, the cold air settles into the valley like a heavy blanket, unable to escape due to the surrounding mountains. This phenomenon, known as a cold air pool, results in prolonged periods of frigid temperatures and increased precipitation.

In stark contrast, the summer months bring a dramatic shift in weather conditions. The mountains now act as barriers, trapping warm air and humidity within the valley. This creates a sweltering, muggy atmosphere that can be oppressive at times. The lack of air circulation and high humidity levels make it difficult for residents to find relief from the heat, even at night.

Furthermore, the city’s location in a valley has a significant impact on precipitation patterns. The mountains surrounding the city act as natural barriers, blocking moisture-carrying winds from reaching the area. As a result, the city receives less rainfall than other regions in the same latitude, leading to drier conditions and an increased risk of droughts.

The combination of cold air pools, heat entrapment, and reduced precipitation contributes to the city’s extreme weather. These conditions pose challenges for urban planning and infrastructure management, as well as for the overall well-being and quality of life of its residents. Understanding the intricate relationship between the city’s location and its weather patterns is crucial for mitigating the impacts of climate change and promoting sustainable development in the region.

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