Top exit vertical termination, 90° v, 90° h – Napoleon Fireplaces BGD38PT User Manual

Page 12

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12

W415-0244 / A / 05.15.03

Formula 1: H

T

< 3V

T

Formula 2: H

T

+ V

T

< 40 feet

Example 5:

V

1

= 2 ft

V

2

= 1 ft

V

3

= 1.5 ft

See graph to determine the required vertical rise

V

T

for the

required horizontal run

H

T

.

For vent configurations requiring elbows, the following for-
mulas apply:

FIGURE 13

V

T

=

V

1

+

V

2

+

V

3

= 2 + 1 + 1.5 = 4.5 ft

H

1

= 6 ft

H

2

= 2 ft

H

R

=

H

1

+

H

2

= 6 + 2 = 8 ft

H

O

= .03(four 90° elbows - 90°)

= .03(90 + 90 + 90 + 90 - 90) = 8.1 ft

H

T

=

H

R

+

H

O

= 8 + 8.1 = 16.1 ft

H

T

+ V

T

= 16.1 + 4.5 = 20.6 ft

Formula 1:

H

T

< 3V

T

3V

T

= 3 x 4.5 = 13.5 ft

16.1 > 13.5

Since this formula is not met, this vent configuration is
unacceptable.

Formula 2:

H

T

+ V

T

< 40 feet

20.6 < 40

Since only formula 2 is met, this vent configuration is unac-
ceptable and a new fireplace location or vent configuration
will need to be established to satisfy both formulas.

Example 6:

V

1

= 1.5 ft

V

2

= 5 ft

V

T

=

V

1

+

V

2

= 1.5 + 5 = 6.5 ft

H

1

= 1 ft

H

2

= 1 ft

H

3

= 1 ft

H

4

= 10.75 ft

H

R

=

H

1

+

H

2

+

H

3

+

H

4

= 1 + 1 + 1 + 10.75 = 13.75 ft

H

O

= .03(four 90° elbows + one 45° elbow - 90°)

= .03(90 + 90 + 90 + 90 + 45 - 90) = 9.45 ft

H

T

=

H

R

+

H

O

= 13.75 + 9.45 = 23.2 ft

H

T

+ V

T

= 23.2 + 6.5 = 29.7 ft

Formula 1:

H

T

< 3V

T

3V

T

= 3 x 6.5 = 19.5 ft

19.5 = 19.5

Formula 2:

H

T

+ V

T

< 40 feet

29.7 < 40

Since both formulas are met, this vent configuration is ac-
ceptable.

when

(H

t

) > (V

t

)

Simple venting configurations

FIGURE 14

FIGURE 12

H

1

H

2

V

3

V

1

90°

90°

90°

V

2

90°

H

4

V

1

V

2

90°

45°

90°

H

1

90°

H

3

H

2

TOP EXIT VERTICAL TERMINATION

MAXIMUM
VERTICAL
R I S E I N
FEET

V

T

HORIZONTAL VENT RUN PLUS OFFSET IN FEET

H

T

The shaded area within the lines represents acceptable
values for H

T

and V

T

.

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