One of the most unforgettable weather days happened 30 years ago today when a series of deadly and destructive tornadoes hit Connecticut on the afternoon of July 10, 1989. I was the early morning forecaster at the Western Connecticut State University weathercenter in Danbury back then. Although I predicted strong to severe thunderstorms for the region that afternoon, I never imagined the magnitude of the tornadoes which would strike Connecticut later that day.
I remember the storms began early that morning in upstate New York. A tornado hit Ogdensburg just before daybreak, injuring one person. One inch hail and wind gusts of over 50 miles an hour were a telltale sign that the approaching frontal boundary meant business. Many reports of wind damage in New York, Vermont, and Massachusetts occurred before noon.
Unfortunately, the timing of the storm had it moving into western Connecticut by the afternoon hours, when the atmosphere is most volatile due to the heating of the Sun. By midafternoon, as the atmosphere continued to heat up and the front moved eastward, the tornadoes developed. The first tornado, which may actually have been three distinctly separate tornadoes, started in the Northwest community of Cornwall, and leveled the Cathedral Pines forest.
The tornado continued south-southeast through Milton, leveling hundreds of trees and virtually destroying the village of Bantam before dissipating. A 12-year-old girl, who was on a campout with family and friends, was killed by falling trees in Black Rock State Park. Not much later, another tornado touched down in Watertown, passing through Oakville and northern Waterbury . That either damaged or destroyed over 150 homes and injured 70 people.
However, the most destructive tornado occurred in Hamden by late-afternoon. The path was only about five miles long, and it stopped just short of New Haven. The tornado destroyed almost 400 structures, and even cars were tossed into the air. Rows of houses and an industrial park were flattened as a result of the tornado. The storm was so strong that much of the area was without power for at least a week, and there were some trees still being cleared months later. The adjacent photo shows some of the damage in Hamden. This video was made for the Hamden Fire Department's Training Division the day after the tornado struck.
The powerful F-4 tornado which struck Hamden caused $100 million in damage and another $20 million in the Greater New Haven area. Forty people were injured in the tornado. After the tornado dissipated, a wind gust of 80 miles an hour was reported in New Haven. At about that time, another tornado struck Mount Carmel, tearing the roof off a condominium and injuring five people.
Of course, 30 years ago we didn't have the technology we do today, but I was still able to monitor the radar by the time I arrived home early in the afternoon. Remember, the Internet and access to instant local weather coverage didn't exist in those days. By the evening, the violent weather had ended, skies were clearing, and the damage had been done. It was certainly a day I'll never forget.
Paul
Wednesday, July 10, 2019
Thursday, July 4, 2019
Earth is at Farthest Point from Sun During Its Annual Elliptical Orbit
Despite the warm and humid weather all week, our planet is actually at its farthest point from the Sun today. According to the U. S. Naval Observatory, the Earth reached a point in its orbit called "aphelion" at 6:10 p.m. EDT. The Earth's aphelion is the point where it is the farthest from the Sun than at any time during the year at a distance of 94,506,507 miles.
The Earth is typically about 93 million miles from the Sun. However, because our planet's orbit is not a perfect circle but an ellipse, it has a farthest point and a closest point to the Sun. In case you're wondering, the Earth's closest approach to the Sun is called perihelion, and that occurs in early January. The Earth is exactly 3,104,641 miles (or 3.28 percent) farther from the Sun than at its closest approach. The Earth actually receives about seven percent less heat at its aphelion than at its closest approach, according to researchers.
Although the date for both will vary from year to year, the Earth will always be closest to the Sun in early January and the farthest away in early July. Not surprisingly, that comes as a surprise to most people. At perihelion, our planet is about 91 million miles from the Sun. It moves outward to about 95 million miles from the Sun at aphelion. Naturally, some people have the mistaken impression that our seasons are caused by the changes in Earth's distance from the Sun, but this is not the case.
The temperatures and the seasons are not affected by the proximity of the Earth to the Sun or even the rotation of the planet on its axis. Rather, it is the tilt of the Earth that determines the climate. When it is at perihelion in January, the Earth is tilted away from the Sun in the Northern Hemisphere, and the sunlight is not "getting a direct hit" on the Earth's atmosphere. However, when it is at aphelion in July, the Earth is tilted toward the Sun.
Today's high temperature at Sikorsky Memorial Airport in Stratford was 88 degrees, and the low temperature was 68 degrees for a 78-degree average. That's five degrees above normal for the date. So, even though it was a good day for the beach or pool, the Earth was actually at its farthest point from the Sun in its annual orbit.
Paul
The Earth is typically about 93 million miles from the Sun. However, because our planet's orbit is not a perfect circle but an ellipse, it has a farthest point and a closest point to the Sun. In case you're wondering, the Earth's closest approach to the Sun is called perihelion, and that occurs in early January. The Earth is exactly 3,104,641 miles (or 3.28 percent) farther from the Sun than at its closest approach. The Earth actually receives about seven percent less heat at its aphelion than at its closest approach, according to researchers.
Although the date for both will vary from year to year, the Earth will always be closest to the Sun in early January and the farthest away in early July. Not surprisingly, that comes as a surprise to most people. At perihelion, our planet is about 91 million miles from the Sun. It moves outward to about 95 million miles from the Sun at aphelion. Naturally, some people have the mistaken impression that our seasons are caused by the changes in Earth's distance from the Sun, but this is not the case.
The temperatures and the seasons are not affected by the proximity of the Earth to the Sun or even the rotation of the planet on its axis. Rather, it is the tilt of the Earth that determines the climate. When it is at perihelion in January, the Earth is tilted away from the Sun in the Northern Hemisphere, and the sunlight is not "getting a direct hit" on the Earth's atmosphere. However, when it is at aphelion in July, the Earth is tilted toward the Sun.
Today's high temperature at Sikorsky Memorial Airport in Stratford was 88 degrees, and the low temperature was 68 degrees for a 78-degree average. That's five degrees above normal for the date. So, even though it was a good day for the beach or pool, the Earth was actually at its farthest point from the Sun in its annual orbit.
Paul
Wednesday, July 3, 2019
"Dog Days of Summer" Have Officially Arrived
The dog days of Summer run from July 3 through August 11 in the Northern Hemisphere and have to do with the star Sirius, known as “the dog star.” Sirius is the brightest star in the Northern Hemisphere other than the Sun, and it is found in the constellation Canis Major; thus the name “dog star.”
In the Summer, Sirius rises and sets with the Sun. During late July, Sirius is in “conjunction” with the Sun. The ancients believed that its heat added to the heat of the Sun, creating a stretch of hot and sultry weather. They named this period of time, from 20 days before the conjunction to 20 days after, the “dog days” after the dog star.
The Chinese saw different images than the Native Americans, who saw different pictures than the Europeans. These star pictures are now called constellations, and the constellations that are now mapped out in the sky come from our European ancestors.
They saw images of bears (Ursa Major and Ursa Minor), twins (Gemini), a bull (Taurus), and others, including dogs (Canis Major and Canis Minor). The brightest of the stars in Canis Major (the big dog) is Sirius. The star can be seen prominently in the Winter in the Northern Hemisphere, adjacent to Orion the Hunter.
The conjunction of Sirius with the Sun varies somewhat with latitude. Also, the constellations today are not in exactly the same place in the sky as they were in ancient Rome. Although we are in the middle of the dog days of Summer right now, the heat is not due to the added radiation from a far-away star, regardless of its brightness. The heat of Summer is a direct result of the earth’s 23.5 degree tilt on its axis, meaning the Northern Hemisphere is tilted toward the Sun during the Summer.
Welcome to the "Dog Days."
Paul
Tuesday, July 2, 2019
Previewing the Month of July
Half the year is over. Now that July is here, it’s time to look ahead at what the month brings climatologically to southwestern Connecticut. I'm sure you remember the record heat wave six years ago. The temperature climbed to 90 degrees July 14, 2013, and reached into the 90s the next six days for a seven-day heat wave. That was unprecedented across southwestern Connecticut. In fact, we also experienced a four-day heat wave from July 5 through July 8.
Not surprisingly, July is the warmest month of the year with a mean temperature of 74 degrees. The hottest temperature ever recorded at Sikorsky Memorial Airport happened July 22, 2011, when the mercury topped 103 degrees, tying the record originally set in 1957. The following day, July 23, 2011, another record high of 96 degrees was recorded.
The mercury reached the century mark two other times — July 2, 1966 and July 5, 1999. In fact, the average daily temperature climbs from 72 degrees at the start of the month to 75 by July 31. July of 2013 was the warmest on record with an average temperature of 78.5 degrees, breaking the previous mark of 78.4 degrees in 1994.
July of 2010 was another hot one. You may recall the heat wave over the Independence Day holiday weekend nine years ago. The high temperatures from July 4 through July 7, 2010, were 97, 93, 98, and 95 degrees, respectively. In fact, record high temperatures were established July 6 and 7. The temperature also reached 95 degrees July 24. The average temperature for the month was 78 degrees, a half-degree shy of the all-time record set in 2013.
Many people have asked me why the hottest time of the year happens over a month after the first day of Summer. Well, it takes the Earth awhile to absorb the heat. As the Sun’s angle gets higher in the sky and the days grow longer in May and June, the Northern Hemisphere slowly starts to warm.
It’s much like warming your home. When you turn your thermostat up to 72 degrees after being away all day in the Winter, it will take awhile for the house to warm up. It doesn’t happen instantly. That’s why our hottest days are typically in July and early August.
On the flip side, the coolest temperature ever recorded in these parts in July was 49 degrees on July 1, 1988. Aside from that, every record low for the month is in the 50s. Believe it or not, according to the National Weather Service record book, a trace of snow fell at the airport on July 4, 1950. I find that too hard to believe.
As far as precipitation is concerned, the wettest July on record happened in 1971 when over a foot of rain (12.84″) fell. The average monthly rainfall is 3.77 inches. There have been several memorable rainstorms in July. For example, nearly a half-foot (5.95″) of rain fell on July 19, 1971, and nearly four inches (3.93″) was recorded on July 29, 1990. Two other days delivered well over three inches of rain — July 30, 1960 (3.57″) and July 23, 1953 (3.45″).
The length of daylight actually decreases this month. For example, today, the Sun rises at 5:23 and sets at 8:30. By the middle of the month, on July 15, the Sun rises at 5:32 and sets at 8:24. However, at the end of the month, it rises at 5:47 and sets at 8:10, meaning we lose 44 minutes of daylight. Remember, the “longest” day of the year happened at the Summer Solstice in late June.
Enjoy July!
Paul
Not surprisingly, July is the warmest month of the year with a mean temperature of 74 degrees. The hottest temperature ever recorded at Sikorsky Memorial Airport happened July 22, 2011, when the mercury topped 103 degrees, tying the record originally set in 1957. The following day, July 23, 2011, another record high of 96 degrees was recorded.
The mercury reached the century mark two other times — July 2, 1966 and July 5, 1999. In fact, the average daily temperature climbs from 72 degrees at the start of the month to 75 by July 31. July of 2013 was the warmest on record with an average temperature of 78.5 degrees, breaking the previous mark of 78.4 degrees in 1994.
July of 2010 was another hot one. You may recall the heat wave over the Independence Day holiday weekend nine years ago. The high temperatures from July 4 through July 7, 2010, were 97, 93, 98, and 95 degrees, respectively. In fact, record high temperatures were established July 6 and 7. The temperature also reached 95 degrees July 24. The average temperature for the month was 78 degrees, a half-degree shy of the all-time record set in 2013.
Many people have asked me why the hottest time of the year happens over a month after the first day of Summer. Well, it takes the Earth awhile to absorb the heat. As the Sun’s angle gets higher in the sky and the days grow longer in May and June, the Northern Hemisphere slowly starts to warm.
It’s much like warming your home. When you turn your thermostat up to 72 degrees after being away all day in the Winter, it will take awhile for the house to warm up. It doesn’t happen instantly. That’s why our hottest days are typically in July and early August.
On the flip side, the coolest temperature ever recorded in these parts in July was 49 degrees on July 1, 1988. Aside from that, every record low for the month is in the 50s. Believe it or not, according to the National Weather Service record book, a trace of snow fell at the airport on July 4, 1950. I find that too hard to believe.
As far as precipitation is concerned, the wettest July on record happened in 1971 when over a foot of rain (12.84″) fell. The average monthly rainfall is 3.77 inches. There have been several memorable rainstorms in July. For example, nearly a half-foot (5.95″) of rain fell on July 19, 1971, and nearly four inches (3.93″) was recorded on July 29, 1990. Two other days delivered well over three inches of rain — July 30, 1960 (3.57″) and July 23, 1953 (3.45″).
The length of daylight actually decreases this month. For example, today, the Sun rises at 5:23 and sets at 8:30. By the middle of the month, on July 15, the Sun rises at 5:32 and sets at 8:24. However, at the end of the month, it rises at 5:47 and sets at 8:10, meaning we lose 44 minutes of daylight. Remember, the “longest” day of the year happened at the Summer Solstice in late June.
Enjoy July!
Paul
Friday, June 14, 2019
Full Strawberry Moon Occurs Next Monday, June 17, 2019
June's Full Strawberry Moon happens this coming Monday, June 17, at 4:31 a.m. EDT. The name was universal to every Algonquin tribe. However, in Europe they called it the Rose Moon. The relatively short season for harvesting strawberries comes each year during the month of June, so the Full Moon that occurs during that month was christened for the strawberry!
The June Full Moon is also called a Honey Moon in the Northern Hemisphere, possibly because it never gets very high in the sky. When we gaze toward the Full Moon tonight, we are seeing it through more of the Earth’s atmosphere than when the Moon is overhead. The atmosphere reddens its color.
The Full Moon is especially low in the Northern Hemisphere because it occurs a few days before the Summer Solstice. The Full Moon is opposite the Sun in the sky. Therefore, when the Sun is higher in the Summer sky, the Full Moon is lower. Every Full Moon stands more or less opposite the Sun in our sky. That’s why the Moon looks full.
The Moon will rise around sunset, climb to its highest point around midnight, and set close to sunrise. As seen from both the Northern and Southern hemispheres, the Moon – like the December Solstice Sun – will rise far South of due East and set far South of due West.
North of the Arctic Circle, the Full Moon – like the Winter Sun – will be too far South to climb above the horizon. Meanwhile, in the Southern Hemisphere – where it’s Winter now – the Full Moon will mimic the Summer Sun, arcing high in the heavens. South of the Antarctic Circle, the Moon will simulate the midnight Sun – up all hours around the clock.
Paul
The June Full Moon is also called a Honey Moon in the Northern Hemisphere, possibly because it never gets very high in the sky. When we gaze toward the Full Moon tonight, we are seeing it through more of the Earth’s atmosphere than when the Moon is overhead. The atmosphere reddens its color.
The Full Moon is especially low in the Northern Hemisphere because it occurs a few days before the Summer Solstice. The Full Moon is opposite the Sun in the sky. Therefore, when the Sun is higher in the Summer sky, the Full Moon is lower. Every Full Moon stands more or less opposite the Sun in our sky. That’s why the Moon looks full.
The Moon will rise around sunset, climb to its highest point around midnight, and set close to sunrise. As seen from both the Northern and Southern hemispheres, the Moon – like the December Solstice Sun – will rise far South of due East and set far South of due West.
North of the Arctic Circle, the Full Moon – like the Winter Sun – will be too far South to climb above the horizon. Meanwhile, in the Southern Hemisphere – where it’s Winter now – the Full Moon will mimic the Summer Sun, arcing high in the heavens. South of the Antarctic Circle, the Moon will simulate the midnight Sun – up all hours around the clock.
Paul
Thursday, June 13, 2019
Summer Solstice Occurs Friday, June 21, 2019
That’s when the Sun’s rays will be directly over the Tropic of Cancer, marking their northernmost point on the face of the Earth. The Sun rises at 5:19 a.m. and sets at 8:30 p.m., which is the latest Sunset during the year. We’ll enjoy 15 hours and 11 minutes of Sunlight on the first day of Summer.
Two days later, the Sun rises at 5:20, and the days begin to get “shorter” once again. Remember, since the first day of Summer is “the longest day” of the year, the days actually become shorter by the end of the month and the remainder of the Summer.
So, why does the Summer Solstice actually happen? Well, the seasons of the year are caused by the 23.5 degree tilt of the Earth’s axis. Because the Earth rotates like a gyroscope, the North Pole points in a fixed position constantly, while the Earth is revolving around the Sun. During one half of the year, the Northern Hemisphere has more exposure to the Sun than the Southern Hemisphere, while the reverse is true during the other half of the year. At noontime, the Sun appears high in the sky during Summertime, and when the Sun reaches its maximum elevation, or angle, in the sky, that’s when the Summer Solstice happens.
This time of the year, between the planting and harvesting of crops, is the traditional time for weddings because many ancient peoples believed that the grand union of the goddess and god occurred in early May. Since it was unlucky to compete with the gods, many people delayed their weddings until June. Today, June remains a favorite month for marriage.
Native Americans have constructed many stone structures linked to the Equinoxes and Solstices. Many are still standing today. One of them is called Calendar One. It is a natural amphitheatre of about 20 acres in size in Vermont. From a stone enclosure in the center of the bowl, one can see a number of vertical rocks and other markers around the edge of the bowl. “At the Summer Solstice, the Sun rose at the southern peak of the East ridge and set at a notch at the southern end of the West ridge.” The Winter Solstice and both equinoxes were similarly marked.
I’d love to be at Calendar One a week from Friday. The start of each of the four seasons carries more significance to this writer than New Year’s Day, which, in essence, is an arbitrary day on the calendar. The start of Summer is just a week-and-a-half away, and that is reason to celebrate in the Northern Hemisphere.
Paul
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