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Report prepared for Guillaume Thibodeau-Fortin (Stove Builder International Inc.) on
6/26/2019 7:45:42 AM
TEST REPORT 103536746MTL-002
TEST REPORT FOR STOVE BUILDER INTERNATIONAL INC.
Report No.: 103536746MTL-002
Date: 07/13/18
K
P
L
a
L
p
m
p
m
f
m
g
m
r
m
n
M
s
P
bar
P
g
P
R
P
s
P
std
Q
std
T
m
T
mi
where:
T
mi(b)
T
mi(e)
Ts
Tsi
where:
T
si(b)
T
si(e)
Version: 05/10/17
Stove Builder International Inc. | 44826 | Rev: May 31 2019 2:49PM | Uncontrolled Copy
��
= Pitot Tube Constant, 34.97
sec⁡
or
����
= Pitot Tube Constant, 85.49
sec⁡
= Maximum acceptable leakage rate for either a pretest or post-test leak- check, equal
to 0.0003 m3/min (0.010 cfm) or 4 % of the average sampling rate, whichever is less.
= Leakage rate observed during the post-test leak-check, m3/min (cfm).
= mass of particulate from probe, mg.
= mass of particulate from filters, mg.
= mass of particulate from filter gaskets, mg.
= mass of particulate from the filter, filter gasket, and probe assembly from the room air
blank filter holder assembly, mg.
= Total amount of particulate matter collected, mg.
= the dilution tunnel dry gas molecular weight (may be assumed to be 29 g/g mole (lb/lb
mole).
= Barometric pressure at the sampling site, mm Hg (in. Hg).
= Static Pressure in the tunnel (in. water).
= Percent of proportional sampling rate.
= Absolute average gas static pressure in dilution tunnel, mm Hg (in. Hg).
= Standard absolute pressure, 760 mm Hg (29.92 in. Hg).
= Average gas flow rate in dilution tunnel.
Q
= 60 (1 - B
) V
A [T
P
/T
std
ws
s
std
s
s
dscm/min (dscf/min).
= Absolute average dry gas meter temperature, K (R).
= Absolute average dry gas meter temperature during each 10-min interval, i, of the test
run.
T
= (T
+ T
)/2
mi
mi(b)
mi(e)
= Absolute dry gas meter temperature at the beginning of each 10-min test interval, i, of
the test run, K (R), and
= Absolute dry gas meter temperature at the end of each 10-min test interval, i, of the
test run, K (R).
= Absolute average gas temperature in the dilution tunnel, K (R).
= Absolute average gas temperature in the dilution tunnel during each 10-min interval, i,
of the test run, K (R).
T
= (T
+ T
)/2
si
si(b)
m=si(e)
= Absolute gas temperature in the dilution tunnel at the beginning of each 10-min test
interval, i, of the test run, K (R), and
= Absolute gas temperature in the dilution tunnel at the end of each 10-min test
interval, i, of the test run, K (R).
(11 OF 21)
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(
∎��������)(����⁡����)
1
��
[
]
2
(��)(����⁡����������)
����
(
−��������)(����⁡����)
1
[
����
]
2
(��)(����⁡����������)
P
]
std
Page 11 of 21
8431 Murphy Drive
Middleton, WI 53562
Telephone: 608-836-4400
Facsimile: 608-831-9279
www.intertek.com/building
GFT-OP-10c
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