Kamis, 06 Januari 2011

TRACK DRAWING

The drawing below illustrates my trackplan and industry location.  This no-frills illustration doesn't include scenic elements and finalized building footprints, which are currently being tested.    



Overall layout size is 25' x 10' with a minimum curve radius of 45".  All switches are #8's except the switch into Dal-Tile, which is a #6.

I'm using Atlas O sectional track to design and test the layout.  Final track will be handlaid to P48 standards using Right-O-Way Code 125 steel rail and wood ties.

For orientation, New Castle Junction is on the right.  Interchange takes place here between NCIR and its Class I connection (actual NCIR ownership ends at the Ann Street underpass).  The switch where my industrial lead diverges from the Class I is theoretically located a short distance east of Ann Street (off layout).


The New Castle Industrial Track once crossed the New Castle Secondary at grade near Ann Street and continued east to the Osram Sylvania glass plant.  The glass plant shut down and the crossing was partially removed just before the sale to NCIR.  A gravel lot at the end of this truncated track serves as a transload for Premier Chemical.  Premier transfers magnesium oxide powder from covered hoppers  to trucks.  Occasionally, NCIR will spot a tank car of liquid product here.  The remaining segment this track is used to store loaded cars off spot.    

West of the interchange is Packaging Corporation of America's large corrugating mill; the reason that this trackage exists today.  PCA receives boxcars of linerboard and covered hoppers of starch.   The mill also ships out scrap cardboard, which is recycled by the production mills located in the south and midwest.

From PCA the industrial track meanders west, curving through a wooded marsh, then entering the Commerce Street district.  Here, Dal-Tile Incorporated (DTI) receives inbound tank cars of kaolin slurry.  Track is out of service beginning a couple hundred yards west of the Commerce Street crossing.  NCIR's locomotive is kept at the current end of track west of Commerce Street, next to McMinn Asphalt's large storage yard.      

Rabu, 05 Januari 2011

Hometaping in Self-Management


Dear friends, staunch supporters, occasional readers and disinterested sympathizers,

We are proud to announce the release of Hometaping in Self-Management LP, the first in a series of retrospective Ex Yu Electronica compilation LPs that seek to highlight some of the most interesting happenings in the 1980s independent DIY experimental music scene of former Yugoslavia.

As a regionally-focused testimony of 1980s non-academic experimental music practices, Hometaping in Self-Management is the first document of its kind in Eastern-Europe and as such it seeks to expand the known frontiers of the hometaping spectrum. There are elements of fundamentalism to the logic behind this compilation: if the phenomenon of Yugoslav tape experimentalism was globally perceived as a marginal, bordering on nonexistent within the 80s cassette culture then this compilation treats it as a microcosm on its own right; if Mario Marzidovšek was generally regarded as an obscure person in the global network then he is nothing short of a superstar on Hometaping in Self-Management ; if Sumanuti Jebači are considered a mere footnote on the Yugoslav hometaping scene they are a key nexus on the hometaping scene of Croatian Banovina and so on.

Hometaping in Self-Management presents 14 different projects from five republics of the former Socialist Federal Republic of Yugoslavia (with the exception of Montenegro) with 14 tracks spanning from 1981 to 1989. The LP comes in an edition of 300 copies, with a four pages full colour booklet and abundance of information about each individual project, a small introduction into hometaping in SFRY and a general project introduction by its initiator (Dušan Hedl). The LP is realized in cooperation of Subkulturni Azil (Maribor, Slovenia) NGO for culture and art publishing and A Hogon’s Industrial Guide (Belgrade, Serbia) research platform with the support of Ministry of Culture of Slovenia.

The first of three promotional events planned for Hometaping in Self-Management LP will take place in ŠKUC, Ljubljana (Slovenia) on 10.01.2010. at 13h and you are all invited to come. The details on two other promotions in Zagreb and Belgrade, as well as information on distribution of the LP will come soon.

All the best in 2011,
A Hogon's Industrial Guide

Senin, 27 Desember 2010

SCENIC INSPIRATION


My New Castle Industrial Railroad is set in a generic location.  However, using ideas from prototype locations helps me immensely when planning layout scenery.  Although I pull mini-scenes and details from many different geographical locations, there is no substitute for using an actual area to achieve the overall layout atmosphere that I'm after.

My scenic inspiration is a Norfolk Southern industrial branch located in Lancaster, Pennsylvania.

The "North Side" industrial lead is located just east of NS' Dillerville Yard.  The branch diverges from Amtrak's electrified Harrisburg - Philadelphia mainline at Cork Interlocking, crosses Manheim Pike, then meanders northwest to serve several industries...including Packaging Corporation of America and RR Donnelly.



















Google Maps View:


View Larger Map

Bing Map



The photo below (taken in 2006) looks west from the SR 72 bridge.  The North Side is the track at far right, curving behind the Lancaster Malleable Castings plant toward Manheim Pike.   The huge facility at left is the Armstrong Flooring plant.  That's NS local H23 and its actually backing east out of Dillerville yard.  The train will reverse through Cork Interlocking, then cross over to the westbound main.  The local will travel a short distance west, then shift the Alumax plant before making a run up the Lititz Secondary.   Sadly, all the industrial buildings in this photo are gone today!















This Google Street View below looks south from Manheim Pike.  You can see that Lancaster Malleable Castings is gone and the North Side runs through the remaining debris field.  Catenary in the background is Amtrak's Keystone main.
     

View Larger Map

Of course on my New Castle Industrial, the Ann Street overpass takes the place of Manheim Pike.

Across the street, McMinn Asphalt batch plant makes an interesting scene.  I am modeling McMinn's equipment storage yard on the layout. 

 
View Larger Map

The North Side continues across Dillerville Road and on to RR Donnelly, at Steel Way.  On my NCIR, the end of operable track at Commerce Street will mimic this view:


View Larger Map




My NCIR is an independent operator that purchased industrial trackage cast-off by a Class I railroad.  Interestingly, this scenario almost played out on the North Side before the Conrail. split.  Apparently the sale fell victim to associated moratorium on line sales prior to the takeover by NS/CSXT. 

So, the prototype North Side serves my scenic purposes pretty well.  The area will offer plenty of  ideas to copy from!

Minggu, 31 Oktober 2010

FIRST OP SESSION -- October 31, 2010

This week I completed benchwork construction, built a temporary model of the Anne Street overpass at New Castle Jct., and conducted my first real operating session.  Because it's such a milestone for me, I chose to photograph the session as I went along.  Pardon the lack of scenery, amorphous buildings and large red track pins:-)


It's a cold November morning as we head to the New Castle Industrial Park.  We get a glimpse of the railroad as we cross the Anne Street Bridge.  CSX dropped seven cars on the industrial lead overnight.  Looks like PCA has a full compliment of boxcars at the warehouse/dock and there are a couple cars on the storage track... 


We arrive at the north end of the industrial park, off Commerce Street, where RS-11 no. 318 is kept tied down.  Our engineer arrived a few minutes before we did and 318 is already alive and idling in the morning sun.  He performs his walk around inspection and we go inside the office to retrieve our paperwork...


We find our switchlist in the fax machine:

ISS New Castle   7 November 2009

CSXT Inbound
TR 405543 Pulpboard
TR 405418 Pulpboard
RBOX 303309 Pulpboard     *Spot Warehouse*
NAHX 99628 Mg02     *Spot Premier*
EEC 3150 Pulpboard     *Spot Warehouse*
GTW 306636 Pulpboard    
WC 21084 Pulpboard     *Spot Dock*

New Castle Holding
RBOX 33604 Pulpboard     *Spot Warehouse*
CSXT 136007  Pulpboard

PCA Dock
CN 405690 Empty    *Pull*
CNA 419309 Empty     *Pull*

PCA Warehouse

CNA 419341 Empty     *Pull*
CSXT 136026 Empty    *Respot Dock*
CSXT 141068 Empty     *Pull*


We go over the switchlist on the way down to New Castle Jct, thinking about the moves we need to make.  Here we are at PCA.  Stopping to unlock switches and remove derails at the plant...  


Then we tie onto our inbounds, charge air and inspect the cars...


 
Inspection and brake test complete, we pull north a few carlengths and prepare for our first move...spotting the Premier hopper.  We make our cut on the main...


Then we go into the holding track, grab the two boxcars and bring them out on the main...  






With the holding track now clear, we can tie back onto the hopper and spot it at the far end of the holding track, near the underpass...







It takes another 30 minutes or so to build our inbound loads into spot order and deal the others into the holding track...


Now we run light into the plant spur to grab the outbounds... 

CSXT 136026 is an empty, which PCA requested to be respotted at the dock for scrap cardboard loading.  To do this, we tie a handbrake on the CN car and leave it on the PCA spur...

This allows us to kick out our CSXT car, coupling it to our inbound loads on the main...


Then we go back and grab our empty CN...


Spotting the inbounds.  With all the fork trucks and personnel at the dock and warehouse, we try to make one pull out and one shove back in.  Much safer than shifting cars on the plant spur...






Two cars spotted at the dock: a loaded WC hi-cube and the empty CSXT...








Setting off the outbounds.  Viewed from Anne Street... 
 



Time to warm up in the cab and complete our wheel report as we run light back to the end of track at Commerce Street...

Sabtu, 23 Oktober 2010

THE REAL DEAL

A SMS Rail crew prepares to drill inbound cars at the Pureland Industrial Park in Swedesboro, NJ.  Photo by Carl Perelman courtesy of railpictures.net.


Below is a video I shot in 2009, showing an SMS Rail crew switching within the Pureland Industrial Park in Swedesboro NJ.  

Trackage at this end of the industrial park is very simple, nearly identical to the New Castle Industrial Park plan.  There is a mainline/interchange track, a siding used to store cars, and a warehouse spur (in this case the Home Depot Lumber Distribution Center).

A Conrail Shared Assets local shoved inbound cars onto the interchange track from the east.  The video opens with the SMS crew rolling up to the interchange from the west to classify and spot the cars.  The video follows the crew as they drill the cars via switchlist using the mainline and siding. 

As you watch the video, you'll notice a few interesting things:
  • Watching a savvy crew shift railcars can be fascinating.  Note how the conductor and brakeman work efficiently as a team.  One is making cuts and hitches, the other tends the main switch.  Later, the brakeman rides a few carlengths, then drops off  so that he is in a position to make a cut after the conductor makes the hitch.  Using similar practice, even small layouts like the NCIR can provide three people (engineer/conductor/brakeman) with an hour or more of fun. 
  • Notice how the crew begins by making the "big pull", then effectively builds two trains by dealing cars into the siding and  interchange track.  This method is much quicker than "cherry picking" individual cars, yet the shifting still takes some time.  And sorting the interchange was only half the day's work.  The crew still needed to pull the Home Depot spur, sort out empties vs. cars to be respotted, then shove the new loads and respots back into the warehouse.
So without further adieu:



SMS Baldwin 9069 from Jack Hill on Vimeo.


My goal is for the O Scale NCIR to give operators and viewers the same perspective as seen in the video.  The track is near eye level, resulting in a view like that of a conductor on the ground.  My main track and siding are on a convex curve, so I have to "walk the train" to find car numbers and make cuts.  The size of 1/48 scale locomotives and rolling stock nicely captures the mass and inertia of the real thing...i.e. sometimes I really do need to put slack on the pin to uncouple!

Until next time...

Minggu, 26 September 2010

BACKDROP

My backdrop is 1/4" Masonite hardboard screwed to a frame of 1" x 3" birch.  I ripped the strips from a single 4 x 8 sheet of birch plywood.






























I painted my backdrop using Sherwin Williams "Soar" for the upper portion of the backdrop color, and "Sonething Blue" toward the horizon.  The resulting blend nicely simulates a muted November sky.

   


Jumat, 03 September 2010

STRETCHING A SIMPLE SPUR

I appreciate all your comments and feedback regarding the blog. It seems that a lot of folks are interested in prototype operations that take place on simple track arrangements. That being said, let's look at a transload facility that offers a lot of switching potential on a small amount of track. The company is FMC. The commodity, soda ash (Sodium Carbonate to be proper).

PPG operates a glass plant, located along Norfolk Southern and served by an NS crew. NS delivers and spots all sand and limestone necessary for glass production. PPG needed more capacity for receiving and storing soda ash, the third ingredient in glassmaking. Rather than rebuild their existing rail infrastructure, PPG and FMC Chemical worked out a unique alternative. Hoppers of soda ash, loaded in Wyoming, are delivered to our railroad. We deliver the hoppers to a spur near the north end of the railroad, just a few miles short of the NS interchange. Here, the soda ash is transferred into highway trailers and trucked the final miles over to PPG. All of the soda ash comes to us via CSX, so perhaps PPG/FMC are saving additional money through the non-NS routing.

The rail infrastructure needed to pull-off this endeavor is quite simple:  


FMC leases a spur track, which holds 4 three-bay hoppers, as well as the former railroad depot that serves as a job office. Surrounding the spur and depot is a gravel lot. Soda ash is loaded into trucks with a self-propelled conveyor unit. This unit moves from car to car, placing its low-profile horizontal belt under the individual hopper bays. Semi trucks make round trips from the spur to PPG’s plant, where the soda ash is stored in silos. PPG goes through a lot of soda ash, so anywhere from 1 to 4 cars are spotted per day here.

FMC spur and leased railroad depot
















Just north of the transload spur, the railroad constructed another spur that holds 5 hoppers. Loaded hoppers are stored here, waiting their turn to be unloaded down at FMC. There is also a runaround track here, since we often turn at this station if there is no work to be done farther north.

Left to right: storage track, run-around siding and mainline.  The FMC spur is in the far background.









Track-level view looking south













Looking railroad north toward the run-around and storage track


Transloading equipment


























OPERATIONS

Spotting hoppers at the FMC spur entails a lot more than just pulling four empties out and shoving four loads in.  For example:

The soda ash hoppers are spotted in date order and come in several series: 1000; 40,000 and 50,000 numbers.  Due to nuances in car height (1000’s bays are lower than 40,000’s and 50,000’s), FMC requests that the second car from the switch (the #2 car) be a 40 or 50.  The elevation of the spur rises slightly here and FMC has difficulty getting their unloading conveyor beneath a 1000 series car at this spot.

So say that FMC has two empties today…the first and second car from the switch.  You have two hoppers in your train (a 40,000; followed a 1000).  If you simply pull the empties and shove in the two loads, you will have placed the 1000 car in the #2 spot, where FMC can't unload it.  Instead, you need to make some extra moves to swap the order of the two cars in your train.

Also, FMC usually begins unloading the car nearest the switch and works their way back.  Sometimes the car at the end of the spur gets neglected and will not get unloaded fast.  When that last car has been sitting loaded for a while, you might shuffle it so that it becomes the first car nearest the switch (thus getting unloaded the next day).  Little details make shifting a siding interesting! 

On some days, the storage track is full and you will have no hopper cars in your train.  Thus you dig loads out of the storage track for spotting at the unloading spur (minding the location of the 1000's remember:-) )  Other days, one or two cars in your train will get spotted on the unloading spur and all others will go to the storage track.  Some days loads come from your train and from storage.  As conductor, it’s up to you to figure out the most efficient way to get cars where they need to be.  The cool thing is that by modeling an industry like this, you can make life as simple or as complicated as you’d like, depending on how much time you have for an operating session. 

We'll end with a real-life example:

FMC has the first two cars on the spur unloaded.  The third car (still loaded) hasn't been there that long. However, the 4th car at the end of the spur was spotted a week ago. It is also a 1000 series car.   There are three loaded hoppers in our train and two more are on the storage track.  The cars on the storage track are older date-wise than the ones in our train.  So, we need to (1) pull the two hoppers from storage and spot them on the FMC spur; (2) move the #4 car to the #1 spot so that it will get unloaded next;  (3) place the three loads in our train on the storage track; and (4) take the two empty hoppers back south to the CSXT interchange.    

Here's how I went about shifting that day.  The sequence itself is interesting enough but the real point is just how many moves it takes to simply pull 2 empties and spot 2 loads:
  1. Drop the three loads in our train on the main, leaving room for 1 more hopper before the fouling point.
  2. Go in and grab all four hoppers off the spur (2 empties and 2 loads).
  3. Set the #4 car (the 1000 car) back against the three cars sitting on the main. (This is why we left headroom when we cut away from our train in step 1)
  4. Cut away with the 2 empties and 1 load.
  5. Spot the load (the original #3 car) as the new #4 car, leave the two empties coupled to it for now. 
  6. Pull ahead with just the locomotive to clear the switch. Tie onto the cars on the main. You now have the engine, the 1000 car and the three loads you brought with you (in that order). 
  7. Pull everything ahead to clear the switch. 
  8. Back into the spur and grab the 2 empties. 
  9. Pull out, leaving the switch lined for the spur behind us. Keep pulling north until the last car clears the south run around switch.  Throw the south switch for the siding, since we are right beside it. 
  10. Tie handbrakes on the 2 empties, cut them away from the rest of the train.  Note, making a cut here saves from walking back to do it a bit later;-) 
  11. Now cut away from the 3 loads that were originally in our train, keeping only the 1000 car we picked up on the FMC spur. 
  12. Go into the storage track and grab the 2 loaded hoppers there.  
  13. Pull them out to the main, then shove ahead to couple to the 3 loads we dropped on the main.
  14. Place the 3 loads on the storage track.
  15. Now shove south with the 1000 car and 2 loads we picked up on the from the storage track.
  16. Shove down and spot these three cars on the FMC spur.  (Note that, because we left the FMC spur switch lined and also lined the south siding switch in step 9, our engineer does not need to stop the heavy train for us to line them now.  Anytime we can save our engineer a little grief the better).
  17. After spotting the cars at FMC, pull ahead so the locomotive is between the switches for the spur and south run around. Throw both back for the main. 
  18. Now we'll couple to the 2 empties that we're taking back south, perform an air test, then depart. 
For our wheel report, we remembered to record all car numbers; the time we spotted all cars; and the track numbers that they all went to right?