Model selecting and capacity calculator – Sanyo CHDZ09053 User Manual

Page 19

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2-9

Design of W-3WAY ECO-i SYSTEM Unit Specifi cations

1

2

3

4

5

6

7

8

Capacity loss caused by differences in tubing diameters

*

Capacity loss will occur if a tubing system that matches the horsepower is not selected (for example, if a tubing system was
determined and installed with no plan for extension and extension occurs later). The loss rate can be found from the graph
below.

Cooling
Heating

95

94

93

92

91

90

96

97

98

99

100

Capacity r

atio based on Gas

tube diameter (%)

Recommended Gas tubes diameter (in)

ш3/4”

ш7/8”

ш7/8”

ш1-1/8”

ш1-1/8”

ш1-3/8”

ш1-3/8”

ш1”

10

12

14

16

18

20

26

30

35

40

45

46

47

48

(Reading the graph)
<Example 1>
Currently a 16 HP system and ø1-1/8" Gas tubings are used. Subsequently the system is expanded, with 16 HP added to the

same tubing system.

Horsepower after extension: 16 + 16 = 32 HP

From the graph above: Cooling: Capacity ratio is 90.8%. Actual capacity = 32 × 0.908 = 29.1 HP

Heating: Capacity ratio is 96.0%. Actual capacity = 32 × 0.960 = 30.7 HP

1. Model Selecting and Capacity Calculator

Gas tubing size (in.(mm))

1/2"

(12.7)

5/8"

(15.88)

3/4"

(19.05)

7/8"

(22.22)

1"

(25.4)

1-1/8"

(28.58)

1-3/8"

(38.1)

90

° elbow

1

1.1

1.4

1.6

1.7

1.9

2.5

45

° elbow

0.8

0.9

1

1.2

1.3

1.4

1.8

U-shape tube bent
(R2–23/64–3–15/16 in.)

3

3.4

4.1

4.7

5.1

5.6

7.4

T r ap bend

7.5

9.2

10.5

12.5

14.1

15.4

19.2

Y-branch distr ibution joint

Equivalent length conversion not needed.

Ball v alve f or ser vice

Equivalent length conversion not needed.

1-6. Straight Equivalent Length of Joints

Design the tubing system by referring to the following table for the straight equivalent length of joints.

Table 2-8 Straight Equivalent Length of Joints

Unit: ft.

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