Monday, June 15, 2009

The Backfilling .. and the Stall ...

Tuesday, May 20th > The slow backfilling process began. Pea gravel was layered in 18" thick around the tank, followed by the filter fabric, then 'a' gravel. Gravel was ferried down site scoop-by-scoop in the excavator's shovel. Native soil was only used to fill in the far corners.







Everything went swimmingly ...



... until right at the end of the day when, after much careful work, the excavator's bucket clipped the fibreglass tank, cracking it.





Luckily, the puncture was not big, and was above the overflow: an area that will never have water directly against it. Not a serious wound, but a stall in the process until we could figure out how best to get it fixed.

Craning in the tank; how the rainwater system works

The rainwater tank arrives!

. . . divertimento . . .

A brief description of the tank and rainwater collection system:

Tank Construction: Fibreglass
Capacity: 25 000 l.
Dimensions: 19'8" long x 8'6" dia.
Supplier: ZCL Composites (donation)

The system: All of the eavestroughs on the house run to a single point at the north east corner of the building. From here, rainwater drops into an 8" inflow pipe that runs underground toward the tank. The large diameter of the pipe is to prevent it from freezing up in winter. Near the filter, the 8" pipe breaks into two 4" pipes, which feed into the filter.

A submersible pump sits in the tank to move the rainwater into the house. The pump intake draws in water from within the middle of the water volume (not directly from the bottom of the tank). A layer of sediment may collect right in the bottom of the tank, and can be cleaned out periodically.

The rainwater will be used for flushing toilets and for outdoor watering. In the future, we hope to be able to use it for laundry and showers. Regulations don't currently permit these uses.
If the tank level drops too low (although this is unlikely, given its size), a float in the tank tells a solenoid valve in the house to switch over to city water, until the rainwater levels are replenished.

The rainwater collection system is also an important part of our site storm water management strategy. No storm water is sent off-site to city sewers. We have maintained permeable surfaces throughout the site; swales direct rainwater and allow for infiltration. The small amount of overflow from the cistern moves through a shallow swale and percolates into the ground.

. . . now, back to the feature presentation . . .

Unit Precast's craning truck snuck the tank through the canopy and brought it down site as far as it could reach ...













Then, the excavator picked it up and very carefully swung it into place.













...and everyone breathed a sigh of relief to see it settled in!

Big thanks to our project sponsors:

Unit Precast for donating their labour (co-ordinating and installating the system)

ZCL for donating the massive fibreglass tank!

Friday, May 29, 2009

Rainwater Tank Installation + Earthworks, Part 1

After much hauling of steel and wood to clean up the site, and equal parts planning and figuring, the upper half of the Grand House site began its final(?) major transformation on Monday, May 19th. Just for the record, it's nice to see some "before" shots of the area; the landscape that most people were familiar with. Hey, just for the fun of it, let's go back to the very beginning; that time before time of 2004:





. . . then a view from the top of site circa fall 2008, and a shot from the third floor balcony sometime this past March, followed by the view down site taken the morning of the big dig.




The day was perfect: clear, warm, and dry. Just before 8 am. the machines started arriving. There was a giant excavator pulling up the earth with a 4 foot wide hoe, and a bulldozer pushing it up to the top of site to form the parking area. Before too long, a heavy-duty tamper arrived on the scene to pack the driveway soil in place.




Depth surveys were taken as the hole grew deeper. We were looking to dig the hole to about 16'8" below the level of the second floor deck.



The cistern we were preparing to accommodate is a fibreglass drum 8'6" in diameter, and 19'10" long, and is surrounded on all sides by 18" of pea gravel. Given these dimentions, the hole created was a few feet better than 12 x 23. To add extra adrenaline to the process, we knew we were working with a pretty narrow triangular space between water and sewage lines, and looking to duck under the gas line with the inflow pipe.



.. yes, the kid running that giant machine looks very young but he was incredibly talented and deft. It's pretty awesome to watch folks who can maneuver such a huge piece of equipment so precisely and gently.





... a little work by hand to make a nice, smooth, rock-free base ...



... then grading the slope, and lining the excavation with heavy filter cloth in preparation for the tank! In all, an enormous volume of earth was extracted. Much to our pleasure, the somewhat friable site soil behaved wonderfully: there was almost no caving along this deep, straight-sided excavation.



Next ... the tank arrives!!

~ laura

Monday, May 28, 2007

The REAL shed


I mean, come see it yourselves this sunday, JUNE 3,
but here's a preview (during construction)....

What a great class.

c

Wednesday, May 16, 2007

post001

Oh hi, didn't see you there. Welcome to the Grand House 'web-log'. Here we will give frequent updates about the Grand House - how we're doing (okay, I guess), when the meetings are (there's one tonight), et cetera. Got feedback? Leave a comment. Want to say 'wassup'? Leave a comment. Want to buy ten thousand million bales? Leave a comment with your visa number. If you are like WTHeck is the Grand House??? you can check the 'About Us' section in the sidebar, or our website or you can ask us personally via leaving a comment.