"Bill Kearney" hath wroth:
Panel/patch antennas are probably a good choice. Most are easily sealed and inherently waterproof. They're also fairly cheap.
Sigh. There's also the blockage that might be presented by the radar radome and other antennas up there. It appears that an adjustable fixed mount isn't going to work. That leaves the motorized camera mounts that I suggests might be more useful. When underway, the panel antenna can be pointed downward or edgewise to minimize wind resistance. White epoxy paint should help with the aesthetics problem. However, this is an engineering project, not a simple installation. Some method of control will need to be arranged. I suspect that the usual computer controlled gimbal mount won't work.
Speaking of engineering projects, I'm thinking of something like a miniature version of the TV studio van with the telescoping dish antenna mounted on the roof. Probably too big and ugly, but interesting.
It also seems you don't have much room on the arch. That's going to be a problem even with the original 8dBi omni antenna. The problem with end fed colinear antennas is that the bulk of the RF comes out from the bottom of the antenna. Of the bottom part of the antenna is blocked by other antennas or structure, it's not going to work too well. That means a mast, which was your original idea, putting us back where we started.
Perhaps a conglomeration of the adjustable gimbal mount, in place of the usual tilt over VHF antenna mount, with a small fiberglass mast, and an 8dBi omni antenna on top. It still has to be adjusted manually, but it will clear the other antennas, tilt over for bridges, and can be aligned roughly vertically.
Do you have the room to swing the antenna? My guess is that the panel will be about 10" across and mounted 2" from the center of rotation. That means you need an 11" diameter clear area on the arch.
It's easier to obtain forgiveness than permission. I think what you're looking for is simplicity. How about a stainless "gooseneck" contraption with a panel antenna on the end? It would look kinda funny, but is very easy to adjust (and move out to the way).
I suggest a mechanical joystick or something simple. Maybe a TV remote control running a few relays that drive the motors.
There are larger versions of such gimbal mounts. John's suggestion of using a camera tripod head is one variation. I have a few similar mounts (forgot the manufacturer) installed as panel antenna wall mounts on mountaintops that get fairly high wind loads. I have had problems, but not from lack of rigidity.
I don't know anyone that sells a commercial biquad. However, a panel/patch antenna is a good equivalent.
One possibility that might work (no guarantees) is to use a client radio with diversity. Something like a WAP54G or WRT54G with DD-WRT firmware. Two omni antennas, on opposite ends of the arch, tilted about 8 degrees outward from vertical. That will give double the roll angle. Again, I'm not sure this will work. If the client radio cant switch antennas every time the vessel rolls, it won't play. I guess I can test it on the workbench, but don't have the time.
Well, we're back to the stainless Shakespear 4187 tilt over mount. Hire a machine shop to make a suitable pipe and adapter for the antenna. I've used while ABS plastic pipe to make masts and adapters, but I think that will fail inspection by the high command.
I'm beginning to think that mounting an antenna permanently is a bad idea. Perhaps a small tripod, suction cup, or rail mount with a panel antenna and radio attached. CAT5 cable to the computah. Leave it stowed when underway. Deploy when anchored.
The N-feedthru can be used as a mounting base. A piece of LMR-400 is stiff enough to support a small (6dBi omni antenna). Wrap a spring around the coax cable for additional stiffness. It will act like a gooseneck and take a set in any position. However, it will look terrible, probably not survive much wind, is not very water proof, and probably too crude.
Not that I know about. There are adapters between the 1" - 14 thread but not for an N connector. However, somthing can be fabricated by a machine shop. The big problem is that the omni antenna has the coax cable along the center line, while the Shakespear mount has a solid center core. The coax will need to exit somewhere. The typical VHF antenna uses 0.25" RG-58c/u which is flexible and easy to work around the mount. However, 2.4GHz wants LMR-400 which is about 0.4" in diameter, is fairly stiff, and is not easy to work around the base. The fairly large bend radius of the LMR-400 isn't going to help much. This is not going to be easy.
Need a starting drawing or sketch? (Say no. I'm overloaded).