Photo above is of Lanai taken from Maui.
Kathy and I just got back from Maui. This was our ninth or tenth visit to Hawaii. Visits to Hawaii are always interesting and often surprise me with new, thought provoking, ideas.
Here is a "new" thought that I learned on this vacation.
Above is a NOAA chart view of Maui, Molokai, Lanai, and Kahoolawe (four islands located between Oahu and the big island of Hawaii). One of the locals mentioned that Maui was formed when the basin between the volcanoes on the northwest part of the island, and the volcanoes on the southeast part of the island was filled in by lava flows and later soil and vegetation. These lava flows were similar to the flows on the big island of Hawaii between Mauna Kea and Mauna Loa volcanoes.
These comments got me thinking about the basin between the four islands. The water is less than 100 fathoms (600 ft.) between these islands. Imagine if the lava flows had continued - and filled up the basin between these islands. What would the "new" island look like? The above photo is the same as the previous one - except that I have highlighted the "shallow" water and outlined the 100 fathom line. Pretty neat.
Is this amount of flow possible. Well, the "new" island would be about 100 miles long and 40 miles wide. The inland pacific northwest experienced lava flows much more extensive than this eons ago... So, why not??? Don't believe it??? Take a look at the lava rock layers that extend from the Tri-Cities region all the way to Colville and throughout the Columbia Basin.
Happy 4th of July.
10,000+ ft. Haleakala volcano (southeast part of Maui) above the clouds (taken from Papawai Pt. some 16 nautical miles away as the crow flies - on the northwest part of the island).
Monday, July 4, 2016
Wednesday, June 29, 2016
Shadows
Kathy and I are vacationing on Maui. It is toward the end of June.
Yesterday, we walked out of
a store and Kathy asked me which way was West.
I have always had a great sense of direction and immediately pointed
generally in the direction toward the water.
This was correct… but later in the day, I noticed that if I had used
shadows to determine directions, I would have been 180 degrees wrong
What tipped me off was that our hotel room faces directly
south. I noticed around 5 pm that there
was only a very small amount of sunlight (only a couple inches) on our
balcony. In Spokane, a south facing
balcony without a roof would have been in full sunshine. How could this possibly be what I was
seeing?
The answer is that it is only a couple days past the summer
solstice (June 20th)… and, Hawaii lies south of the Tropic of Cancer
(the meridian that indicates the sun’s most northern travel during a year. After the summer solstice, the sun begins to
head south toward the equator and then the Tropic of Capricorn. Because the sun is north of Hawaii right now,
all of the shadows are reversed from what I would have expected in Spokane (or
any other part of the U.S. for that matter).
Lesson learned? Pay
attention to the shadows you see… but be aware of your latitude. Is it possible that the sun appears in the
north when you generally expect it to be in the south?
Monday, December 21, 2015
Special asymmetrical spinnaker rig
Special asymmetrical spinnaker rig
One sail that I do not use all that often is my asymmetrical
(cruising) spinnaker. It is a wonderful
downwind sail though – especially in breezes up to 10 knots. But, I single hand Snickerdoodle enough that
I pretty much stay with main and jib/genoa.
The typical rigging for an asymmetrical spinnaker will have
the following: a spinnaker halyard with
the block secured above and forward of the forestay; a set of sheets rove
through blocks on the aft quarter of the boat (this photo does not show the
starboard side sheet); and a downhaul tack adjustment line that is rove through
a block near the forestay stem fitting. I
also have a “chute scoop” or sock that is pulled over the sail to make hoisting
and dousing the sail easier for short-handed crew work.
To make the tack adjustment line truly adjustable, it is
then led aft from the block at the stem fitting to a cleat on the coaming or on
the cabin top. For close reaching, pull
the adjustment line to lower the tack corner and straighten the luff. For beam reaching, ease the adjustment line a
foot or two. For broad reaching, ease the
adjustment line more – up to five or even six feet. Of course, the problem with this is that as
the tack adjustment line is eased, the sideways push of the breeze tends to
push the spinnaker’s tack to leeward.
This tendency to push the tack to leeward changes the sail’s angle of
attack AND means that it will be difficult to sail all the way to a broad reach
because the mainsail will blanket the spinnaker before a coarse that low can be
achieved.
To correct – at least partially – the tendency of the tack
being pushed to leeward, I have secured a carabiner to the tack adjustment line
about eight inches below the tack corner of the sail. When the sail is hoisted, I simply clip the
tack adjustment line to the forestay.
The most that the tack can then be pushed to leeward is only eight
inches. I can now sail almost to a broad
reach as if this was a symmetrical spinnaker with a pole.
So, if you are experiencing a tendency of your cruising
spinnaker’s tack being pushed to leeward, this carabiner “trick” might be just
what you need.
509 993 3214
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