Wednesday, September 19, 2012

Really sailing... and yeah we mean SAILING

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Yesterday the weather was cloudy and a bit windy... we are lucky to have a 'weather data buoy' in the open Neuse River (link) to report & record what we've got out there... the wind direction brought in choppy waves, too.

This is still the BEGINNING of our sailing course, in fact it was the first day of really sailing for most of the cadets. So we focus on terminology, parts of the boat, and basic actions or evolutions. Safety is a part of every action!


... Photos curtesy of Fred Cornford ...









We are learning how to handle a boat around the dock, how to get in a boat properly (ie don't just leap casually), how to "bend on" the sails and make sure the rigging is correct, and finally, how to make a sailboat do what it do... just a little bit...


... Photos curtesy of Fred Cornford ...









Hey is this rudder on correctly? Let's make sure before it falls off in the middle of the river... lean out just a little further Coach, just a little further...
Not gonna happen, y'all !!

Thanks to the NEW SAILS and all the work that our coaches have put into the boats so that they are properly & strongly fitted out, we can sail on days like this... winds 12~15 MPH (what is that in KNOTS) and enough wave action to be a challenge. Isn't this a lot better than having classroom lessons??

... Photos curtesy of Fred Cornford ...

... posted by Assistant Coach Douglas King




Tuesday, September 11, 2012

First Day, Fall 2012... some of us got to SAIL !!!

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We had a very good first day, although some things are still not TOTALLY READY we made a lot of good progress ... ... ... and some of the cadets got to actually got sailing. Two of the advanced skippers had the chance to pick a crew and when their boats were rigged, got underway!

First there was WORK to do! For example, the Flying Juniors (FJs) have not been moved for the lawn mowers in several months. Fortunately, the boats were not damaged nor were they inhabited by wildlife. Here we see our sailing cades moving an FJ from it's nest of grass over to a clear area where it can be cleaned & rigged.

Let's review some of the basics of the sailing program- you have to get a consent form, you have to get on the roster, you have to give the on-water coaches a valid emergency contact phone number, you have to wear shoes that will both protect your feet and not damage the boats (ie no flip-flops, no hiking boots or cleats), you have to show up. Everybody works as a team and that part has gone very smoothly for a first outing.



This 2nd photo shows what looks like mayhem, cadets in life jackets running around among the boats. However there is actually a plan and there is both teamwork and leadership. The boats are getting moved (and no backs are getting injured in the lifting/carrying) and we will se the progress being made.



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Is this what we call progress? Actually it is very good, you can see that the masts are being put up but you can't really photograph KNOWLEDGE. This is also happening here, the cadets are learning the basicparts of the boat. Of course, the advanced sailors who are helping to direct the operation already know the terminology (well, mostof it) and are teaching & reviewing with the newbie sailors.


We need to know the DIRECTIONS (port/starboard, forward/aft, windward/leeward) and we need to know the basic parts of the boat (mast & boom, bow & stern, halyards & sheets) and the quicker we learn them, the quicker we can get down to business. We will also need to learn the knots... you can practice these in Top's classroom!




Even the Javelins have to be rigged. These boats are only slightly bigger in length but they are much bigger in overall size. They weigh more than twice what an FJ does, and we keep them in the water at dockside. Remember, these boats have special paint on the bottoms of the hulls so that they don't grow barnacles. What else did we learn about barnacles?







This might look like a bunch of kids just having fun, but actually class is in session! We've learned some terminology, we've practiced some teamwork, and we have also learned some important safety rules.
Lift the FJ with 5 or more people... watch out for hazardous items -before- stepping on them or tripping over them... wear a lifejacket when on the water (this includes the dock)... a whistle is an important piece of safety equipment... don't let the boats crash, but also don't ever get your hand or arm caught between 2 boats or between the boat & the dock... and something about barnacles!

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Today we launched all 3 Javelins and we hoisted our BRAND NEW SAILS for the 1st time.

Now, who is looking forward to more sailing??
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 ... posted by Assisant Coach Douglas King

Tuesday, September 4, 2012

Schedule for Fall 2012... are you ready?

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Mondays will normally be sailing days until further notice. Our first day at Bridgeton Harbor will be less than a week from today! Bring shoes you can wear in the water & mud.

A HAT would be nice too!



Schedule:
Sep 10 - Launch & Rig, Newbie Day!
TBD - Swim Test, Capsize Practice at YMCA Pool
Sep 17 - Sailing Practice (Probably Baby Ducks)
TBD - First Written Assignment (test) Due
Sep 24 - Sailing Practice (Probably more Baby Ducks)
Oct 1 - Sailing Practice... Basic Drill(s)
MUMFEST! Oct 13 & 14
Oct 15 - Sailing Practice... Basic Drill(s)
Oct 22 - Sailing Practice... Basic Drill(s)
Oct 29 - Sailing Practice... Maybe Advanced Drill
Nov 5 - Sailing Practice... Hopefully Advanced Drill
Nov 19 - Sailing Practice... Advanced Drill By Now, Or Give It Up
Nov 26 - Sailing Practice... Advanced Drill and Sail-Games
Dec 3 - Sailing Practice... Advanced Drill and Sail-Games
Dec 10 - Sailing Practice... Advanced Drill and Hopefully No Rescues!

We have 12 sailing days. This is not a lot... if you miss any, there is no way to get that time & experience back! The sailing coaches take attendence just to make sure we don't lose anybody, we frankly don't care if you attend or not. However, your lack of skill from not having enough time on the water will be obvious! It's likely that some sailing will be cancelled for weather. We will have potential alternate sailing days, but we will also have classroom sessions when we can't sail. Attendance will be taken, and written assignments WILL count for completion. Those who want to pass BASIC SAILING ... and get a pretty ribbon to wear on their uniform... will not skip class 'just because.'

Currently, we have 2 events for the Sailing Squadron... in spring, our Regatta (series of races) which also helps raise money for this program... in the Fall, we have a Sail Demonstration for New Bern's MumFest. Each year these events have gotten better, and we hope this will continue.

NEW SAILORS- Look to the left margin of this web site... you will see "Lessons" and you will be responsible for learning all this stuff... might as well start now! (link to Lessons) We have some sailors coming into our program who are already experienced, or have already taken sailing classes elsewhere... that's great, welcome aboard! Be ready to show what you know!

ADVANCED SAILORS- do not keep forgetting your "Blue Book." Make sure you haven't forgotten major stuff, be ready to help the beginners -AND- perform some Sailing Drills (link)




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Monday, September 3, 2012

Donate Your Boat? ... yes we're asking!

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Yes, the New Bern Navy JROTC is looking for a few good boats!

FJ 4, 5, 6 at their original home in Chicagoland

We also accept donations of useful gear. The NB-NJROTC is an accredited 501-c-3 charitable organization which means that donations are tax-deductible.

 
We've mentioned several times the generous donors who have provided us with boats. A brief history:


Flying Junior #7 built by Paceship, donated without trailer prior to 2007
Flying Juniors #1, #2, #3 purchased with funds from sale of donated Oday 23, prior to 2007
FJs #4, #5, #6 donated by ILIANA Yacht Club, 2009 (link to web site)
Thistle donated by TB of Durham NC, with trailer (sold this summer)
O'Day Javelin donated by BVL of Cary NC, with trailer & motor, 2010
O'Day Javelin donated by the Myers Family of Pennsylvania, with trailer, 2010 (link)
"Taz" Coach Boat donated by Brett M of Raleigh NC, with trailer & motor, 2010 (link)
O'Day Javelin donated by SC of Trent Woods NC, with trailer, 2011
"Piccolo" RIB Coach Boat donated by the Jarvis Family of Fairfield Harbour NC, with motor
Int'l 5O5 donated by DB of Annapolis Md, with trailer & extra gear, 2012

At this point, we have the ability to put over 25 cadets on the water sailing. Often our initial class size is larger than that, but many students seem to sign up for SAILING without realizing that it involves work, and so we rarely have more than 25 show up for actual SAILING.

This sounds like a LOT! Surely we don't need more?
Well, yes of course we need more!

What do we need?
Good condition sailboats in the 14~19' size range on good trailers.
 . ... we would especially appreciate a couple more FJs, another Javelin, or a 5O5
Good trailers, trailer equipment (bearings, tires, winches, etc)

15' or under motor boat, with motor & trailer

Sailing Gear:
  Vest-Style Life Jackets
.   Rope esp. size 1/4" and 3/8" low-stretch
.   Blocks, Shackles, Fittings ... especially ratchet blocks for sheets
Engine Repair / Tune-Up Services
.   many of our ouboard motors are "acting up" and could use some help
VHF Radios    especially Handheld units with good batteries & chargers
.    we teach communication & radio protocol, the coaches bring their own radios which is not enough radios.

What if you don't have a boat or gear to donate, but you want to help? Yes you can help work on the boats, yes we have openings for coaches (we're all volunteers) and yes we also accept money (also deductible!).





Tuesday, August 14, 2012

Ready to Sail? ... fall 2012

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Hey everybody, the summer vacation is almost over

Sailing Class means work... can you rig up the boats?

GROAN

But the good news is that SAILING CLASS is about to begin!

YAY !!!

This fall semester, we should have a great class with better opportunities than we've had before. We will start out with the work of getting the fleet ready to sail... yes us coaches have already been hard at work behind the scenes but we left some of the job for you... what better way to learn "no work = no play" as well as a sense of responsibility for your vessel?
 
You beginners will be able to learn & have fun out on the water, and your new skills will be reinforced by on-water sailing drills (link). You advanced sailors will not only get to show off your skills in our hot-rod 5O5, we have perfected (well, almost perfected) a new drill game.

This game relies on good boat-handling, the ability to sail effectively on ALL points of sail, and of course knowledge of the Right-Of-Way rules (link). We've played ball games on the water before, this is a slight refinement where every member of a team has to sail the ball thru the GOAL (inconveniently located to windward) and the team must pass the ball among themselves on signal (about every minute or less).

The great thing here is that beginners can join in (once they have mastered the basic sailing drills) and we can use both the FJs and the Javelins.






Now, who is ready to SAIL !!!

... posted by Assistant Coach Douglas King


Monday, July 2, 2012

Storms wreak havoc in eastern NC, our boats damaged but fleet survives

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Yesterday a line of severe thunderstorms slammed much of the US East Coast. Although our boats are secured quite well to ground anchors, some of them got blown over or tossed free. The damage is relatively minor and we'll have all the boats in sailing condition for this fall semester.

(link to facebook page with photos of NJROTC boats after storm)

It's true many people in this area have much bigger problems due to the storms. We are thankful for the good fortune to have boats to worry about in the first place, and our hopes & sympathy go out to those whose homes were damaged. We would also like to express out thanks to the people at Bridgeton Harbor who helped set our boats back up & secure again.

Tuesday, June 26, 2012

Buoyancy and Stability (basic, part 1)

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Why do boats & ships float? Why do they stay right-side up, or why do they capsize? There are some fairly simple laws of physics which govern how vessels behave, and to be good sailors we should understand all this.

Here is a sailboat which has lost both buoyancy and stability. Good thing the sailors are wearing life jackets!



Buoyancy first... why do vessels float (or not)? Anybody who has picked up a container of it knows that water is heavy. If you take a given container, gallon or liter or whatever, and fill with water, of course it becomes much heavier.

To say more precisely, water has a lot of MASS for a given amount (size of container)... or you could say that it has greater DENSITY (link to wikipedia) than many other things we're familiar with... this is the most accurate statement, and it explains things better. After all, our container was full of AIR before we filled it with water, and water has a greater density than air. A bigger bucket full of water would be heavier, but that would not mean that the water in the bgger bucket has a greater density than the water in a smaller bucket.


 

RELATIVE DENSITY- the core of a star is more dense than a brick, which is more dense than water, which is more dense than air, which is more dense than helium...

So far this is common sense. A lot of science -IS- common sense, only put into terms that we can use with math to figure out how much or how little or how fast etc etc. And science has to go beyond what we "know" as common sense from our every day experiences. For example, you might think it's silly to point out that a bucket full of air weighs less than a bucket full of water; our common sense tells us that the density of air is nothing (and that's true, relative to the air all around) but you could not design an airplane using this "common sense."

"Relative Density" is the key to understanding buoyancy. Helium is less dense than air, so a helium balloon is buoyant... in air! If we released a helium balloon on a planet with hydrogen gas as it's atmosphere, that balloon would fall to the ground because helium is more dense than hydrogen!


Is a boat like a balloon? In some ways, yes. It floats in air instead of water... wait a minute, a balloon floats on water too, if it's placed there... unlike a boat, a balloon will rise upward out of sight! Does it go up forever? No, it stops going up once it gets to an altitude where the air density matches that of the material inside the balloon... but doesn't a boat float on top of the water because it is less dense than than the water, but more dense than the air? So a boat rises too, as long as the relative densities of the materials contribute to the force of "buoyancy." Therefor, a balloon is more like a boat than we thought!


BUOYANCY is the force produced by difference in density between an object and the medium surrounding it... an iron weight actually weighs less when immersed in water, although it's MASS remains the same...

In this diagram, we see a 7 pound iron weight lowered into a bucket of water. We've cleverly put a spout into the side of the bucket, and filled it right up to that spout.

As we lower the iron weight into the water, it pushes a volume of water aside. The water level in the bucket starts to rise but instantly runs out the spout. The volume of water pushed aside and out, in other words DISPLACED, is the same as the volume of the iron weight. But because of the difference in density between water & iron, that volume of water weighs only 3 pounds. The force of buoyancy reduces the apparent weight of the iron, but not by enough to make it stay afloat.





In the next diagram, the iron weight is hollowed out. Air is less dense than iron (duh) so now it weighs less, and it floats!

Does it float because there's air inside?

Yes and no... if the weight of the water displaced were less than the weight of the hollowed-out iron,  then it would still sink. But we have not reduced the volume of the iron weight, just it's mass. If we removed 4 1/2 pounds of iron from the middle, then it will now float because the buoyancy can produce enough force to support it against gravity.





Now let's take a big look at buoyancy and how we apply the physics to real vessels. We have a lighthouse, two ships, two submarines, a dirigible, and a brick.

Of course, the lighthouse is on land, so no worries there. We have two warships, one of which is fully loaded with fuel & ammunition, so (as we'd expect) it is lower in the water... it DISPLACES more because of the additional weight. At the advanced level, we will learn how to calculate safe loading & changes in draft & effect on stability.

We also see two submarines. One is very near the surface, maybe the captain is looking thru the periscope. The other is much deeper. Both are held up by the force of buoyancy, carefully balanced against the weight of water in their ballast tanks.

Yes, the US Navy had airships (link)... may have more in the near fuure. What happens to an airship (with regard to bouyancy & altitude) as it burns fuel?

The brick is sinking to the bottom. Because that's what bricks do.





Now for STABILITY... this is the tendency of a vessel to return to upright. There are several ways to measure stability, such as how far over a vessel can heel (lean or tip) before losing stability & capsizing, or the leverage exerted at a certain degree of heel (link to wikipedia).






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You can see why we need to understand buoyancy to understand stability. You can also see that stability must not be taken for granted. Beginner sailors are often nervous when their boat leans over. Their "common sense" is telling them that they are about to have a disaster... but floating vessels follow different rules and given a reasonable level of skill & attention, they're fine. 

However there have certainly been ship capsizes (link to news) and they are always a major disaster!! The fact that Navy ships rarely suffer this problem is a testament to the training & skill of Navy sailors.







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Another of those "common sense into science" pieces... we easily grasp that putting a heavy weight into a boat makes it lower in the water. We can also use common sense to see that if we put the heavy weight low down, the boat will be more stable; if we put the weight up high, the boat will be less
 stable.

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To understand this better, and to get to the point of being able to use a little math to figure out HOW MUCH (remember, it's supposed to be science), we need another physics concept... the 'center of gravity' which is the same thing as the Center Of Mass (link to wikipedia). This is how gravity "knows" if the weight is placed high or low on the vessel. Gravity pulls down on everything, but instead of calculating the force on every single part of the boat and the leverage it produces (possible but tedious) we use a single point at which all the weight of the boat & everything in it, or attached to it,  is focused.


The boat with the weight placed high is less stable, it produces less force to push itself back to level... but how much less? Here once again we see the geometry of the forces of buoyancy & gravity, and the effect of the change in Center Of Gravity by placing the weight up high. The length of the Righting Arm is proportional to the force pushing the vessel back to level.

What would happen if the Righting Arm was the other way around, with gravity pulling down on a point further away from center than buoyancy is pushing upward? Could moving the weight forward or aft on the vessel (instead of up or down) have an effect on it's stability?





Also obvious with common sense- if we move a heavy weight as LOW in the vessel as possible, that will maximize stability. Here is a video of a stability test (link) of a small ocean racing sailboat, the test is an important safety procedure much like our own Capsize Drill!







Review- we've looked at BOUYANCY and the principle of DISPLACEMENT, and the physical properties of DENSITY along with it's corollary Relative Density, the physics term CENTER OF MASS, and now we've begun to put these all together so that we can have a better-than-common-sense understanding of STABILITY. You can see from some of the diagrams that there are more terms we have not yet covered, but we have enough to understand what we need to become good sailors.



Our small boats depend very much on placement of crew & skippers weight. Sometimes in light wind they heel the "wrong" way. Is this harmful?










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Sailing students often hear their instructors tell them it's important to keep the boat from heeling. Once you get used to it, heeling is fun! So why not just let it go?

There will be more lessons on stability later!

(link to GLOSSARY)




... posted by Assistant Coach Douglas King