NOAA TEACHER AT SEA JASON MOELLER ONBOARD NOAA SHIP OSCAR DYSON JUNE 11 – JUNE 30, 2011
NOAA Teacher at Sea: Jason Moeller Ship: Oscar Dyson Mission: Walleye Pollock Survey Geographic Location: Gulf of Alaska Date: June 10, 2011
Personal Log
Welcome aboard, explorers!
For those of you who do not know me, my name is Jason Moeller, and I am the on-site coordinator of education at Knoxville Zoological Gardens. I teach the school groups, scouts, homeschool students, and student researchers who come to the Zoo to learn about the natural world.
The Oscar Dyson sits in Kodiak Harbor
The National Oceanic and Atmospheric Administration, or NOAA, has invited me on board the Oscar Dyson, a research vessel that will be spending the next three weeks researching a fish known as the walleye pollock in Alaska’s Bering Sea. According to NOAA’s website, the pollock made up 56.3% of Alaska’s groundfish catch, easily making it the most caught fish in Alaska’s waters. Pollock is commonly found in imitation crabmeat as well as a variety of fast food fish sandwiches.
The crew of the Oscar Dyson will be studying the population of pollock over the course of the next three weeks. I will be working with Tammy Orilio (another teacher at sea) in processing the catch. Orientation will be on June 11th, and we will set sail on June 12th.
Clouds above Canada
Today (June 10th), however, was mainly a travel day. After waking up at four in the morning, I caught a two-hour flight from Knoxville to Chicago, which was then followed by a six-hour flight to Anchorage. Finally, I had a forty-one minute flight from Anchorage to Kodiak. Cloud cover marred what would have been spectacular scenery, but there were some beautiful views from the aircraft otherwise.
After a quick look at the Oscar Dyson and dinner at the hotel, I went to explore the river running by our hotel. According to several fishermen, Sockeye Salmon are beginning their yearly run upriver. Grizzly Bears, though uncommon this time of year, are also occasionally spotted.
Unknown Large Track
Unfortunately, I did not see bears or salmon, but I did see this track. While faded, it did look suspiciously like the mold of a track back at the zoo.
While I did not see any bears or salmon, I did get lucky in other regards. I saw a beautiful red fox, which moved too quickly to catch on film, and rabbits were in abundance. The scenery was also beautiful.
Wind on a hill shaped these trees
A river in Kodiak
Science and Technology Log
The Science and Technology segment of this blog will begin after the Walleye Pollock Survey aboard the Oscar Dyson begins.
Species Seen
Red Fox
Rabbit
Reader Question(s) of the Day!
The reader question(s) of the day will also begin after the start of the Walleye Pollock Survey aboard the Oscar Dyson. Readers are encouraged to send questions to jnmoelle@knoxville-zoo.org. I will attempt to answer one or more questions in future posts.
NOAA Teacher at Sea
Richard Chewning
Onboard NOAA Ship Oscar Dyson
June 4 – 24, 2010
NOAA Ship Oscar Dyson Mission: Pollock Survey Geographical area of cruise: Gulf of Alaska (Kodiak) to eastern Bering Sea (Dutch Harbor) Dates: June 6-7, 2010
Weather Data from the Bridge
Position: Snakehead Bank, Gulf of Alaska Time: 1700 hrs Latitude: N 56 00.390 Longitude: W 153 46.380 Cloud Cover: Overcast Wind: 12 knots from the SE Temperature: 7.1C Barometric Pressure: 1016.9 mbar
Science and Technology Log
I have been impressed by the wide array of oceanographic research the Oscar Dyson is able to conduct. A few examples include biological studies of organisms ranging from microscopic plankton to massive marine mammals, collecting a variety of weather data, describing both physical and chemical characteristics of seawater (such as temperature, salinity, chlorophyll, and dissolved oxygen), conducting acoustic surveys of marine life and the sea floor, and much more.
Three Saints Bay nautical chart
One of the Dyson’s ‘bread and butter’ surveys is our survey studying the distribution, biomass, and biological composition (male/female ratios and age) of walleye pollock in the Bering Sea. Walleye pollock is a very important fishery for Alaska. You have almost certainly been a part of this fishery as most fish sandwiches in fast food restaurants and fish sticks in the frozen food section of your local grocery store are Alaskan-caught pollock.
One of the Oscar Dyson’s many tools for this research is her impressive array of acoustic sensors located on the ship’s hull and centerboard. The centerboard is an extension of the hull that can be raised and lowered in the water in order to position most of the Dyson’s sensitive acoustic sensors below the bubbles often found near the water’s surface. These air bubbles interfere with sound traveling through the water and degrade the quality of the data being collected. The Dyson has six downward looking centerboard-mounted transducers, each transmitting a different frequency. Why so many frequencies? Since different types of marine organisms interact with sound waves differently producing varying acoustic signatures, the Dyson must be equipped with a variety of sensors to best characterize the variety of marine life encountered during a survey.
For example, lower frequencies are better suited for fish such as pollock and the higher frequencies are better suited for smaller organisms such as plankton. Think of transducers as a downward shining flashlight illuminating the depths of the ocean with sound rather than light.
The Dyson also has other acoustic sensors such as the ME-70 multibeam echosounder that has the unique ability to look over a much wider angle through the water. Acoustic research works on the same echo location principle that bats and marine mammals employ to find food and navigate. By sending out sound waves and measuring the time the sound takes to travel back after encountering an object, one can learn a great deal about that object’s properties such as distance, size, and movement.
Before traveling to the Bering Sea to start our pollock survey, the Dyson’s scientists must take great care to ensure that their echo-sounding equipment is calibrated correctly. Calibrating the transducers is similar in concept to tuning a piano string or zeroing a sight on a rifle. To this end, the Dyson anchored in Three Saints Bay, a sheltered bay protected from the wind, waves, and currents of the open ocean, at least theoretically. While a troublesome storm passed almost directly overhead, scientists from the Midwater Assessment and Conservation Engineering (MACE) Program (part of the Alaska Fisheries Science Center (AFSC) located in Seattle, WA), the US Fish and Wildlife Service (FWS located in Anchorage, AK), and the Pacific Institute of Fisheries and Oceanography (located in Vladivostok, Russia) worked diligently to fine tune their acoustic sensors.
Copper sphere used to calibrate the acoustic sensorsBill and Patrick positioning spheres under the Dyson
Paul Walline, Patrick Ressler, Darin Jones, Bill Floering, and Mikhail ‘Misha’ Stepanenko worked day and night calibrating their equipment using metal spheres positioned directly under the ship.
Spheres of different sizes and materials with known acoustic signatures (such as tungsten carbide and copper) are used to calibrate the transducers.
The crew of the Dyson works around the clock as ship time is precious. The scientists work 12 hour shifts, either from 4am to 4pm (the shift to which I am assigned) or from 4pm to 4am. The acoustics lab where the data is collected and analyzed is affectionately called ‘The Cave’ as there are no portholes (windows) to tell the time of day outside.
The acoustic lab, a.k.a. “the cave”
Personal Log
I wasn’t sure when the Dyson arrived at Three Saints Bay as I had retreated to my stateroom early in the evening of the 4th as I was feeling the effects of the rolling seas. I am being berthed with the ship’s 2nd Cook, Floyd Pounds, who is also from Georgia but now calls the Dyson home.
Floyd works with the Chief Steward, Rick Hargis, who has been with NOAA for 20 years and is originally from Washington State. So far the meals have been very filling and satisfying (there is even an ice cream bar!).
My stateroom is located on the crew deck, one level below the main deck near the bow (the pointy end of the ship) on the starboard side (the right side when facing the bow). Utilizing every nook and cranny and with no wasted space, my berth is quite cozy and is surprisingly comfortable. Fortunately with the help of some seasickness medication, I soon found my sea legs and awoke feeling refreshed and hungry (always a good sign!). Seasickness comes from conflicting messages received from the inner ear and the eyes by the brain (the inner ear feels the motion of the boat rolling and pitching in the water but the eyes report a stable environment confusing the brain).
Snug as a bud in a rugRichard, ready for a swim
A person soon observes that safety is paramount onboard the Dyson as with any NOAA vessel. For example, within 24 hours of leaving Kodiak, the entire crew conducted fire and abandon ship drills. These drills are conducted once a week and are essential for maintaining readiness in the event of an emergency. During the abandon ship drill, I was able to practice donning my survival suit just like our visiting Coast Guard kids did in Kodiak! Although the suit is designed to be quite snug to keep cold water out and to keep the body warm, I was thankful I didn’t have to put the suit to the test by going over the side. To my surprise, Chief Marine Engineer Jerome ‘Jerry’ Sheehan and ENS Russell Pate did just that, going for a dip in the frigid 7.3 degrees Celcius or ~45 degrees Fahrenheit waters! Jerry and Russell used dry suits to scuba dive under the Dyson to check the hull, the prop, and the transducers for anything out of place such as barnacles on the transducers or tangled fishing gear. The only discovery was of a piece of bull kelp snagged on one of the blades of the prop which may explain a noise that was heard on the hydrophones (microphones located under the Dyson’s hull) during our departure from Kodiak.
CO Hoshlyk overseeing recovery divers Jerry Sheehan and ENS Russell Pate
After completing our calibrations and safety operations, the Dyson sailed for a site called Snakehead Bank located 60 nautical miles southeast of Kodiak. The name comes from the bathometric profile of the seafloor of this area which resembles the head of a snake. We soon began conducting camera operations for ground-truthing sea floor composition that I will discuss in my next log!
Remnants of Nunamiut, earliest Russian settlement 1792 in three saints bay, KodiakDeparting Three Saints Bay
Where did the NOAA ship Oscar Dyson’s name originate?
The Oscar Dyson is named for an Alaskan fisherman who was very influential in fisheries development and management in Alaska. From his days as a commercial fisherman, Oscar Dyson was a pioneer and advocate for Alaska fisherman and was very influential in the growth of this important industry. Alaska’s commercial fishing industry spans the state and includes salmon, herring, pollock, various shellfish, and various ground fish like halibut. While traveling through the Ted Stevens International Airport in Anchorage, I learned that Alaska is a land defined by water with more than three million lakes and more coastline than the rest of the United Sates combined! Alaska is also the only state in the US to have coastlines with three different oceans/seas: the Pacific Ocean, the Arctic Ocean, and the Bering Sea.
NOAA Teacher at Sea Richard Chewning Onboard NOAA Ship Oscar Dyson June 4 – 24, 2010
NOAA Ship Oscar Dyson Mission: Pollock Survey Geographical area of cruise: Gulf of Alaska (Kodiak) to eastern Bering Sea (Dutch Harbor) Date: June 5th, 2010
Weather Data from the Bridge
Position: Three Saints Bay, Kodiak Island, Alaska Time: 1000 hrs Latitude: N 57 10.480 Longitude: W 153 30.610 Cloud Cover: overcast with light rain Wind: 12 knots from NE Temperature: 10.3 C Barometric Pressure: 1001.1
Science and Technology Log
While taking on supplies and preparing for our cruise, the NOAA ship Oscar Dyson had the pleasure of welcoming six kids from the United States Coast Guard (USCG) 2010 Summer Program for a visit. These kindergarten through second graders were visiting from the USCG Integrated Support Command Kodiak, the largest Coast Guard base in the US. The Oscar Dyson’s medical officer ENS Amber Payne and I gave the students a firsthand tour of the Dyson.
NOAA Ship Oscar Dyson tied up in Kodiak, AK.The Bridge
Highlights of the visit included a tour of the bridge with Executive Officer Lieutenant Jeffrey Shoup. The students were impressed to learn that the propeller of the Oscar Dyson is 14 feet across and specially tooled to be as quiet as possible so as not to scare away any fish that the scientists onboard want to study. The students also enjoyed looking through the BIG EYES, two high powered binoculars located on the flying bridge (the highest point on the vessel above the bridge) of the Oscar Dyson that will be used to survey marine mammals. Scientist Suzanne Yin of the National Marine Mammals Laboratory told the students about how she and her colleagues wbe surveying for whales during the upcoming cruise
The Big EyesSafety onboard the Oscar Dyson
The highlight of the tour involved a demonstration by Safety Officer Ensign Russell Pate of one of the Dyson’s Damage and Control lockers. The students also enjoyed trying on the immersion suits with help of Ensign Payne. Immersion suits are designed to protect the wearer from exposure other frigid waters that the Dyson will soon be sailing The kids had great fun donning the firefighting equipment and helping Fisherman Glen Whitney test one of the Dyson’s fire hoses off the fantail. The USCG kids also learned how to tie a square knot with Glen’s help. With a little practice, they were able to join their individual lines into one large line by tying each line end to end using the square knot they just learned. Each student was able to take their line home to practice their newly acquired knot tying skills
Another fun activity was led by Senior Survey Technician Kathy Hough. After Kathy led the students through a tour of the Dyson’s dry and wet labs, the students acted as junior scientists by sorting an array of Alaskan fish and measuring and describing each species, just like the Oscar Dyson’s scientists will do later during the upcoming Pollock survey.
After lunch, the students received a fun science lesson using the property of water’s high surface tension. The students constructed two-dimensional boats out of plastic milk jugs and used soap to propel their boats over a tray of water. This is a very fun activity for younger students that you can easily do at home. The materials required include cleaned plastic milk jugs, scissors, markers, trays of water, and soap (a bar of Ivory soap cut into small cubes). After tracing the outline of a boat (as if looking from the top down) on the flat surface of a milk jug, the kids cut out their boats and made a small notch on the back of the boat to place a small block of soap to serve as the engine. The kids then enjoyed racing their boats against each other across the trays of water! If trying at home, you will need to replace the water in the tray after each race as the water becomes contaminated by the soap. This activity works because water molecules want to strongly stick to each other creating a strong but flexible surface. By disrupting the arrangement of the water molecules and causing the water molecules to push away from each other, the soap enables the boat to ‘power’ across the surface of the water.
Holding a Baby King Crab
After all equipment and supplies were loaded and crew members were boarded, the Dyson moved a short distance to take on diesel at the fuel dock. At 1820 hours, we departed St Paul Harbor and said goodbye to the Oscar Dyson’s home port of Kodiak. The Dyson then sailed about eight hours south to Three Saints Bay, a protected harbor south on Kodiak Island. Three Saints Bay will serve as a location to anchor so the science team can calibrate their acoustic equipment and will shelter the Oscar Dyson from an approaching low pressure system producing gale-force winds.
Personal Log
Hello Everyone! My name is Richard Chewning, and I have the honor to be a part of NOAA Teacher at Sea program sailing with NOAA ship Oscar Dyson. For those who do not know, the National Oceanic and Atmospheric Administration (NOAA) is a federal government agency charged with studying all aspects of the ocean and atmosphere. As you can imagine, these are broad areas of study. While large in scope, the work of NOAA affects everyone, whether you live on a coast or not. Have you ever heard of The National Weather Service or The National Hurricane Center? Both are NOAA divisions.
Here I am holding a baby king crab.
NOAA’s Teacher at Sea Program (TAS) aims to increase the public’s awareness and knowledge of NOAA science and career opportunities by having educators work alongside NOAA offices, ship’s crew, and shipboard scientists. NOAA’s TAS program invites both formal classroom teachers and non-formal educators alike to be a part of this amazing program. I myself am an environmental educator with the Jekyll Island 4-H Center. A Georgia 4-H program, the Jekyll Island 4-H Center is part of the University of Georgia. The Jekyll Island 4-H Center’s Environmental Education program welcomes 1st-12th grade students for environmental education field studies teaching coastal ecology using Jekyll Island as an outdoor classroom. I am the Environmental Education Program Coordinator and have enjoyed working for Jekyll 4-H for five years. For more information, visit http://www.jekyll4h.org .
I am very excited to be selected as a NOAA Teacher at Sea Participant and look forward to sharing my experiences with you through these logs.
My cruise is coming to an end. We are now sampling the last of the stations as we make our way back to Kodiak. On Saturday, we had a safety stand down drill. This entailed finding a spot close to shore where we could drop anchor and then have a little bit of free time. Some people fished for halibut off the boat and others went ashore to explore a little bit. I went ashore with a group that included the XO, Jeff Shoup, Ensign Amber Payne, Glen Whitney, Dennis Boggs, and two of the scientists, Tiffany Vance and Kevin Bailey. We hiked around a part of Katmai National Park and Preserve. This is an area filled with active volcanoes and glaciers. We saw a brown bear and a fox.
Four peaked glacier
We also saw a raft of sea lions close to shore that eventually came closer and told us to go away. Katmai Preserve is home to an estimated 2,000 bears. The area we visited is very remote with no roads leading to it. Once back on board, it was back to work sampling more stations.
My time on board the Oscar Dyson has shown me both the beauty of the ocean and the need for people to understand and care for it. We are inextricably connected to the ocean. Whether we live near or far from the ocean, we depend on the ocean for fresh water (think water cycle) oxygen (the majority of oxygen in our atmosphere is produced by the phytoplankton in the ocean), food, medicines, and mineral and energy resources. Many people depend on the ocean for jobs and recreation. Our oceans, however, are fragile ecosystems that are affected by the activities of humans. Dumping wastes into the ocean, overfishing, drilling for oil and development along coastal areas all have consequences for the living things that call the ocean home. I have learned about areas where overfishing has depleted species of fish that may never come back. There is an area in the Gulf of Mexico that is called the dead zone because of fertilizers from farms dumped into the Gulf from the Mississippi River. Right now, there is the Deep Horizons oil leak that has already spilled 20 million gallons of oil into the Gulf of Mexico and is leaking over 500,000 gallons of oil a day. We have a history of taking the ocean for granted and believing that it is so big that it can absorb unlimited amounts of pollution. We are finding out how wrong we are. Taking care of the ocean is everyone’s responsibility. In order to take care of the ocean, it is crucial that we understand the interrelationships between what we do here on land and what happens in the sea. This is why research such as what the scientists are doing on the Oscar Dyson is so important.
Me and the four peaks
Answers to your questions:
Dan 1. – Radar is different from sonar. Radar uses radio waves, a form of electromagnetic radiation (light) to detect objects. Radar stands for radio detection and ranging. Sonar uses sound waves to detect objects. Sonar stands for sound navigation and ranging.
Dan 2. – The weather is not nearly cold enough to need the de-icers. I was, however, standing by one the other day and felt the warmth, so they are on.
Olivia – My classification on this cruise is officially “Teacher at Sea.” I am, however, included with the scientists.
Kylei – I have been very lucky with the weather. We have not had any bad weather. One day, the ocean had some pretty good swells and we were rocking and rolling a bit, but no real storm. It has actually been unusually sunny and mild here.
Sea Lions
Your question to answer: Research one of the activities below that affects life in the ocean:
Overfishing ( factory fishing ships)
Whaling
Offshore oil Drilling
Ocean pollution
Coastal development
Find out:
Why are people concerned about this activity?
What are people doing to protect the ocean from the negative aspects of this activity?
What can you do to help protect the ocean and the life within it?
NOAA Teacher at Sea
John Schneider
Onboard NOAA Ship Fairweather July 7 – August 8, 2009
Mission: Hydrographic Survey Geographical Area: Kodiak, AK to Dutch Harbor, AK Date: July 5, 2009
Position
USCG Pier – Kodiak, AK
Personal Log
Slept in some for a little fly-time recovery. Once I got up (about 0900) I went up to the mess and had a cup of coffee and worked on yesterday’s log. While doing so I met several members of the crew, most of who were up to doing something on an off day. Hikes, chiropractor visits, shopping, etc. were all on the agenda. The engineers, however, were working down below in the engine room in preparation for our departure scheduled for the morning of the 7th.
When in port in Kodiak, the Fairweather has access to a van and a couple of vehicles for ship’s work and transportation to and from the town of Kodiak. The “liberty van” runs every hour on the hour into Kodiak and back on the half hour. Being new to the ship (and Alaska) I thought it would be a cool, scenic idea to walk into town. A couple miles later, I changed my mind and resorted to something I hadn’t done in 30 years – hitchhiking (turns out it’s about 6••• miles!). I got picked up by a local guy who moved to Kodiak 20+ years ago. He took me all the way in to the commercial fishing docks and I walked the remaining quarter mile. On Shelikof Road I went to Kodiak Marine Supply and bought a couple of charts for the areas we will be surveying. I will use these to plot our positions whenever I get them from the bridge.
My cabin door.
Once in town I had a great lunch with two of the crew – Ron and Mark – at a place called Henry’s. The crew members seem to migrate there for the food, although they all prefer eating on board the Fairweather. My ship is blessed to have 3 chefs in the steward’s department. Two are graduates of the Culinary Institute and the third is out of Johnson and Wales! I can’t wait to get under way! On my second trip into town (this time by the liberty van,) Tami, a member of the survey team, told me she had rented a car on the island and was real glad to have done so. I figured that was good advice and rented a small car for a day. By the time I had gotten back to the Fairweather I had put on over 100 miles just driving around one side of the island. Tomorrow I’ll put on some more miles and return the car in the late afternoon. I went by Kodiak High School and Middle School and hope to stop into their board/district offices just to see what’s overtly similar and dissimilar to home. I’m all unpacked and settled in. It’s 2330 hrs so I’ll have a glass of water and turn in.
Hanging locker and fold-away desktop.
I’m on C-Deck (the 3rd deck up from the bottom of the ship.) To the right in the picture is my hanging locker, then the top shelf folds into a desktop (on which I am writing now) and below it are 3 drawers for clothes. The door to the left is the head and shower which I share with 1 other crew member. In the photo, you can see the TV and dish network box to the left. Below the bed are 2 more drawers. Even though the space may appear small, I could easily move in here and have all the comforts of home. Below that are a couple more shelves and an open space where my PFD (personal flotation device/life jacket) and immersion suit are stored. At the upper left is a 10-minute air supply kit to be used in event of fire. These kits are located all over the ship.