Tulsa Winter Weather Debrief: A Statistical Analysis

Table of Contents
Temperature Extremes and Averages
Average Temperatures Compared to Historical Data
This past winter saw significant deviations from Tulsa's historical temperature averages. Analyzing long-term data alongside this year's readings reveals crucial insights into the severity of the recent season.
- Average High: The average daily high temperature was [Insert Data] degrees Fahrenheit, [Insert Percentage]% below the long-term average of [Insert Data] degrees Fahrenheit.
- Average Low: The average daily low temperature was [Insert Data] degrees Fahrenheit, [Insert Percentage]% below the long-term average of [Insert Data] degrees Fahrenheit.
These significant drops can be partially attributed to [Mention contributing factors like La Niña or El Niño weather patterns]. The following graph visually represents the temperature deviation from historical averages:
[Insert Graph/Chart visualizing temperature data. Clearly label axes and include a concise title, e.g., "Tulsa Average Daily High and Low Temperatures Compared to Historical Averages"]
Using data on Tulsa temperature averages and historical winter temperatures provides valuable context for understanding the unusual severity of the past season. This information is critical for long-term weather forecasting and infrastructure planning.
Frequency and Severity of Freezing Temperatures
The number of days with freezing temperatures significantly exceeded the historical average. The impact of these prolonged freezing periods was substantial.
- Number of Freezing Days: Tulsa experienced [Insert Data] days with temperatures at or below freezing, compared to the historical average of [Insert Data] days.
- Duration of Freezing Periods: Several prolonged periods of freezing temperatures, lasting [Insert Data] days or longer, were observed. This led to significant ice accumulation and hazardous conditions.
- Lowest Recorded Temperature: The lowest recorded temperature during this winter was [Insert Data] degrees Fahrenheit, [Insert comparison to historical lows].
Understanding the frequency and severity of freezing temperatures in Tulsa, including the occurrences of ice storms Tulsa, is vital for effective winter preparedness. Knowing how often Tulsa experiences such freezing conditions improves planning for critical infrastructure to withstand these conditions.
Precipitation Analysis: Snowfall and Rainfall
Total Snowfall Accumulation
The total snowfall accumulation during this winter was exceptionally high, exceeding historical averages by a considerable margin.
- Total Snowfall: A total of [Insert Data] inches of snow fell on Tulsa this winter.
- Comparison to Historical Data: This is [Insert Percentage]% above the historical average snowfall of [Insert Data] inches.
The unusually high Tulsa snowfall disrupted transportation and daily life, highlighting the need for improved winter weather preparedness.
Distribution and Intensity of Snow Events
This winter wasn't just characterized by high total snowfall, but also by the intensity and frequency of individual snow events.
- Number of Snow Events: [Insert Data] significant snowfall events occurred, with [Insert Data] of these exceeding [Insert Data] inches.
- Impact of Major Snowstorms: The most impactful snowstorm, occurring on [Insert Date], resulted in [Insert impact details, e.g., widespread power outages, road closures].
Analyzing the Tulsa snowstorms and their intensity helps predict the impact of future severe winter weather events. The data collected on snow accumulation, duration, and snowfall rates are crucial for improved forecasting accuracy.
Rainfall Patterns
While snowfall dominated this winter, rainfall patterns also deviated from the norm.
- Total Rainfall: The total rainfall for the winter season was [Insert Data] inches, [Insert Comparison to historical averages].
- Unusual Patterns: [Describe any unusual rainfall patterns, such as unusually dry periods followed by heavy rain].
Understanding Tulsa rainfall patterns, combined with snowfall data, offers a more holistic picture of winter precipitation in the region.
Impact of Tulsa Winter Weather on the City
Effects on Transportation and Infrastructure
The severe winter weather significantly impacted transportation and infrastructure throughout Tulsa.
- Road Closures: Numerous road closures and significant traffic delays occurred due to ice and snow accumulation.
- Public Transportation: Public transportation services experienced significant disruptions, leading to delays and cancellations.
The Tulsa road closures and transportation disruptions impacted commuters, businesses, and emergency services. This emphasizes the necessity of efficient snow removal strategies and robust emergency response plans.
Economic and Social Impacts
The economic and social costs associated with this winter's weather were considerable.
- Economic Costs: The economic impact included increased costs for snow removal, business closures, and damage to infrastructure.
- Social Impacts: School closures and power outages significantly impacted daily life for many residents.
Understanding the economic impact Tulsa weather has, and the social impact winter weather has on Tulsa, is important for future disaster preparedness and mitigation planning.
Conclusion: Key Takeaways and Call to Action
This statistical analysis of Tulsa winter weather reveals a season of unusual severity, characterized by record-low temperatures, above-average snowfall, and significant impacts on the city's infrastructure and daily life. Understanding these historical weather patterns is crucial for future preparedness. By analyzing Tulsa snowfall, Tulsa rainfall, and other Tulsa weather statistics, we can better prepare for future winter seasons.
To stay informed about Tulsa winter weather forecasts and prepare accordingly, utilize resources like the National Weather Service and local news outlets. This data can inform personal preparedness plans and professional decisions impacting winter operations in Tulsa. By understanding the potential impacts of future Tulsa winter weather, we can collectively mitigate risks and ensure the safety and well-being of our community.

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