Nov. 1 – Hiking in Cheyenne Cañon

“Climb the mountain so you can see the world, not so the world can see you.” ~David McCullough

There are hundreds of hiking trails in this area of Colorado, so picking just one to do was a little difficult. I did research on many hikes in North Cheyenne Cañon south of Manitou Springs. There were several we wanted to do, but the closure of the North Cheyenne Cañon Road left us only the Seven Bridges Trail we could get to. I guess being here in the off season means putting up with some inconveniences.

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Manitou’s Mineral Springs

“Doing what you like is freedom, liking what you do is happiness.” ~Anonymous
The mineral springs in Manitou Springs are a vital part of what makes this area special. There are eight distinct naturally-carbonated mineral springs in town and each has a slightly different taste. While we wandered through town we looked for each one and had a little taste…I thought they all tasted about the same.

The source of these famous mineral waters lies deep underground in a system of cavernous aquifers. As the ancient water erodes the surrounding limestone, carbonic acid is created, which gives the Manitou springs their effervescence. This natural carbonation forces the water back to the surface through cracks in the rocks, where it absorbs high concentrations of sodium bicarbonate (soda) and other minerals, including Lithium!

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Fall in Seattle

It’s been several years since we’ve lived somewhere that we can catch major league sporting events, and it’s one of several aspects of living in Seattle that we’re really enjoying. The fall brought the return of two of our favorite sports, football and ice hockey. We watched several live Seattle Seahawks NFL games, and also…

Oct. 30 – Pikes Peak

“Every mountain top is within reach if you just keep climbing.” –Barry Finlay

Pikes Peak is one of the most beautiful landmarks in Colorado and the most visited mountain summit in North America. The views from the summit inspired the words to America the Beautiful. In 1803, Pikes Peak mountain became part of the United States as part of the vast Louisiana Purchase. Three years later in 1806, Lt. Zebulon Pike was sent to explore the borders of the new territory. On November 24, 1806, he set out from his stop near modern-day Pueblo, Colorado, to climb the mountain. He was forced back by a blizzard and declared that no man would ever reach the summit that now bears his name. Visitors now reach the summit by taking the cog train, hiking, biking or driving to the top.

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Oct. 29 – Garden of the Gods

“Because when you stop and look around, this life is pretty amazing.” ~Anonymous
After our long drive from the east coast we decided to spend the day outside enjoying an amazing fall day. We spent the morning hiking at the Garden of the Gods. We hiked three short trails in the park that gave us a chance to get close to the largest rock formations and also provided us with wonderful views of the surrounding area. We hiked a total of 4.5 miles today. 

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Off to Manitou Springs, CO

“The journey is my home.” -Anonymous
We decided to take a little detour on our way back to Texas this fall. We’re going to spend the next week exploring and relaxing around Manitou Springs, Colorado. It’s been the quintessential tourist town since the 1870s, when visitors discovered the healing waters the Ute Indians had been drinking for years. The Native Americans who once lived here considered this area sacred and believed the water had healing and spiritual benefits (Manitou). The waters come from the underground streams from the Colorado Rocky Mountains which collect minerals along its journey. The town became a hub for those looking to recover from tuberculosis and other ailments. But Manitou Springs has a lot more to offer than healthy water. They have tons of diverse shops and art galleries, natural attractions like the Garden of the Gods and Pikes Peak, endless amounts of hiking trails and great restaurants.  

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Gear We Like: Laser Rangefinder

This installation of “Gear We Like” covers the Nikon Forestry Pro Laser Rangefinder. This tool allows us to quickly and accurately measure a bridge clearance and other vertical or horizontal distances. We first discovered a need for this device in East London, South Africa, where we stopped to ride out a storm en route from…

Dual Shorepower System

One of the things we really like about our more flexible power system is it allows us to run on shore power connections that deliver less than our peak power requirements. The shore power charges the house bank and 6 kW, 240V 60 Hz inverter supplies the peak capacity needed to run larger appliances such as the…

Gear We Like: Non-Contact Voltage Detector

This installment of the “Gear We Like” series features the Klien NCVT-2 non-contact voltage detector. This inexpensive tool makes it super-easy to ensure that power actually is available at the shore power pedestal before plugging in. There are many ways to check for power at a pedestal, but none faster than using a non-contact sensor….

LIFE IN THE SLOW LANE – SLOW CRUISING ABOARD TWIN-ENGINE PLANING VESSELS PART 2

Ourlast posting detailed how cruising at around displacement speed dramatically decreases fuel consumption and increases cruising range. It also highlighted the problems which can be encountered through cruising consistently at low rpm. Running diesel engines for long periods at idling speed is particularly detrimental and engine “wear” is said to occur at about double the ratecompared to running them under normal loading. Ideally for that reason engines should only have 3-5 minutes of idling followingstart up and then be brought up to around 1,200 rpm withsome load applied.

Not only can idling cause a build-up of carbon in the engine but also causes mirror glazing, which is the creation of a mirror-like surface finish on cylinder bores, eventually allowing more oil to pass the rings and creating more blow-by (the adverse effects of which were detailed in Part 1 of this article). Mirror glazing can also be caused by constantly running engines at the same rpm, so this should be avoided. Before shut down a diesel should also be idled for 3-5 minutes to allow the turbo to cool down. In practice this is catered for when entering your marina or approaching your anchorage.

Now let’s consider someoptions for low speed cruisingand their relative merits.

Option 1 – run both engines at low rpm

If you’re wanting to do this, avoid running below 1,200 rpm andit’s recommended to at least run at 60-75 per centof WOTfor about 30 minutes after reaching full operating temperature, then again for about15 minutes every 4 hours and then for about 30 minutes about 1 hour before shutdown. This last one is considered to be especially important to reduce soot formation and to clean the turbocharger andit’s better to spend less than optimal time at higher rpm than none at all.

Pros 

There will be a considerable reduction in fuel usage and increase in range.

All ancillary equipment driven by the engines such as power steering, refrigeration compressors, hot water manifolds will operate (unlike Option 2).

Both gearboxes and drive trains will be cooled (unlike Option 2).

Full maneuverability is maintained and there is no rudder bias (unlike Option 2).

There is no potential problem with prop shaft couplings (unlike Option 2).

In practical terms this option is easy to manage.


Cons 

Somemonitoring and planning is required for the periods at higher rpm and it is difficult to achieve on short cruises.

May cause issues with alternators.

Hours-based service costs may increase because you are using more engine hours to run a given distance.


Option 2 – run on one engine at a time at higher rpm

Underthis system only one engine is used at a time, alternatingperiodically(eg every one to two hours).


Pros 

It will take more rpm on the one selectedengine to reach your chosenspeed than it would be using two, therebyeliminatingor at least minimisingthe problem of light loading.

Fuel saving and range increase will be considerably less than Option 1, but still in the order of 10 to 15 per cent.

Higher rpm will make your in-use alternator run more efficiently.

The process is relatively east to manage.

The frequency of hours-based engine servicing is reduced thus saving service costs.

Cons 

Maneuverability is considerably reduced using one engine, particularly at low speedso this option should only be considered in open waters and not for example coming into or out of marinas.

There will be a slight steering bias in the direction away from the in-use engine ie using only the port engine the vessel will veer slightlytowardsstarboard.

The not-in-use engine’s prop will still turn or “windmill” causing drag and the gearbox to operate.The inactive engine’s gearboxmust be kept in neutral so that the engine doesn’t turn over. Most gearboxes are water-cooled using its engine’s heat exchanger, so without the engine running this cooling will be lost and gearbox damage can potentially occur. Consult your installations Owners’ Manual to ascertain for how long you can windmillThey normally suggest running your engine for about five minutes before wind milling and will advise the allowed time interval before it needs to be started again to activate the heat exchanger and circulate gearbox oil. My Caterpillar manual recommends idlingthe engine every 12 hours for five minutes, however the Twin Disc gearbox manual recommends idling the engine for a few minutes every hour, so I willfollow that guideline.

If initiating this procedure it would be a good idea to check the temperature atthe rear of the wind milling prop’s gearbox using an infra-red thermometer to see how long it takes for the temperature to rise. The lower the boat speed, the less the wind milling engine’s gearbox temperature will rise. Bear in mind there’s a good chance that some time in the future you’ll have a problem with one engine and need to run just on the other one, so this is not a wasted exercise.

Take into account that engines often run ancillary equipment, for example Rapport’s port engine runs our refrigeration compressor while her starboard engine runs our power steering and heats our hot water supply.

Some stuffing boxes have no cooling system beyond the sea water coming into it, others have oil or grease lubrication to keep temperatures down, while others and more particularly most dripless shaft seals are cooled with sea water supplied from the engine’s sea water pump, so for this latter category no cooling will be supplied if the engine is not running.

Note that some vessels have a system where either engine can supply cooling water to both shafts. However if this is not the case it is best to comparethe temperaturesof the not-in-use shaft seals with the in-use shaft seals using an infra red thermometer to determine for how long you can allow wind milling. A temperature up to about 40dC should be OK, in fact as a general rule mechanics say if the stuffing box is nottoo hot to touch it’s OK (be careful doing this though). Another measure is that stuffing box temperature should be 7-22dC above sea water temperature.

Note that some cruisers have adopted measures to eliminate wind milling. At an extreme level one cruiser crossing the Pacific decided to remove oneprop until half way across, then replacethe prop and removethe other one so the in-use engine could be changed. This was done at sea using a block and tackle to support the prop’s weight. At a less extreme level it’s not uncommon for long distance cruisers to install a mechanical or hydraulic system enabling either prop shaft to be locked so it cannot rotateI have discounted the use of such a system based on the inconvenience and practicalityof changing over engines and the compromise to maneuverability in the event of an emergency.

When an engine is driving your vessel it is trying to push the prop shaft and coupling flangetowards the engine, therefore not putting any load on the securing boltsWhen the prop shaft’s wind milling it’strying to pull away fromthe engine and therefore your coupling flange, soconnections should be checked initially and at regular intervals thereafter.

Option 3 – run both engines with one engine at higher rpm than the other

Another option isto run one engine at high rpm and the other at low rpmso that all engine-driven equipment is operating, then interchange every couple of hours or so. If adopting this option avoid running the low rpm engine below1,200 rpm for the reasons outlined in the opening comments.

Pros 

The issue of light loading is eliminated.

Economy gains similar to running two engines at low rpm are achieved and range is increased.

There is littleloss of maneuverability.

There is no issue with cooling of gearboxes and shaft seals.

There is no issue with prop shaft flange connections.

The process is easy to manage.

All engine-driven ancillary equipment will operate.

Cons 

Both engines are stillrampingup engine hours, so no servicing costs are saved.

There will be a very slight steering bias in the direction away from engine operating at higher rpm.

The alternator’s efficiency is compromised for the engine running at low rpm.


Conclusion

As mentioned early on Di and I prefer to cruise much of the time off the plane, even when cruising long distances,so considering all of the above options here’s a practical solution based on Option 2 for Rapport.

-Start both engines and leave the marina using bothat low rpm (although preferably above 1,200 rpm wherever possible)providingmaximum maneuverability.

-When in openwatersshut down the starboard engine and as temperatures rise, gradually increase rpm on port to about 1,850 = 66 per cent of WOT. This will operate refrigeration and efficient alternator operation and battery charging at higher rpm. The power steering willnot operateso hand steering will be necessary, however this is not much of an issue in open waters. Any time that power steering and autopilot is wanted I can start the starboard engine.

-When the freezer reaches its operating temperature (after roughly three hours on first day outand on subsequent daysafter about an hour), runthe starboard engine at about 1,850 rpm and shut down port

Then continue to alternate engines as required about hourly.

For subsequent days wenormally use the genset every morning so the batteries are fully charged at that time and the alternators don’t need to run at high outputs. Every several engine hours I’ll run both engines at about 2,200-2,400rpm for 15 minutes or so as well as doing this for about half an hour an hour before shutdown.

Happy Slow Cruising