Cooling Performance Data

Total Capacity - BTU/Hr.

BTUH At 80°F D.B. - 67°F W.B.

 

Zoneline 2500 Series

Zoneline 3500 Series

Zoneline 5500 Series

Temperature

AZ

AZ

AZ

AZ

AZ

AZ

AZ

AZ

AZ

AZ

AZ

AZ

of Air Entering

25E07D

25E09D

25E12D

25E15D

35H07D

35H09D

35H12D

35H15D

55H07D

55H09D

55H12D

55H15D

Condenser

25E07E

25E09E

25E12E

25E15E

35H07E

35H09E

35H12E

35H15E

55H07E

55H09E

55H12E

55H15E

75

7750

9900

12800

15900

7750

9900

12800

15900

7750

9900

12900

16000

82

7580

9690

12590

15620

7580

9690

12590

15620

7580

9690

12690

15720

85

7500

9600

12500

15500

7500

9600

12500

15500

7500

9600

12600

15600

95

7100

9000

11700

14600

7100

9000

11700

14600

7100

9000

11800

14700

105

6600

8250

10750

13600

6600

8250

10750

13600

6600

8250

10850

13700

115

6000

7500

9650

12300

6000

7500

9650

12300

6000

7500

9750

12400

 

 

 

 

 

 

 

 

 

 

 

 

 

Heat Pump Performance Data

Capacities and COP at Various Outdoor Temperatures

BTUH At 70°F Indoor Temperature

Zoneline 3500 Series

 

AZ35H07D

AZ35H09D

AZ35H12D

AZ35H15D

Outdoor

AZ35H07E

AZ35H09E

AZ35H12E

AZ35H15E

Temperature F°

BTUH

COP

BTUH

COP

BTUH

COP

BTUH

COP

65

7200

3.75

10000

3.75

13050

3.55

15950

3.35

60

7000

3.70

9600

3.70

12550

3.50

15300

3.30

55

6800

3.65

9100

3.65

11950

3.45

14650

3.25

50

6600

3.55

8700

3.55

11350

3.35

13850

3.15

47

6400

3.50

8400

3.50

10900

3.30

13400

3.10

45

6250

3.45

8200

3.45

10600

3.25

13050

3.05

40

5950

3.35

7700

3.30

9800

3.10

12250

2.95

35

5550

3.20

7100

3.20

9000

3.00

11300

2.80

30

5150

3.05

6500

3.05

8200

2.85

10300

2.65

25

4700

2.90

5900

2.85

7300

2.65

9250

2.50

 

 

 

 

 

 

 

 

 

Zoneline 5500 Series

 

AZ55H07D

AZ55H09D

AZ55H12D

AZ55H15D

Outdoor

AZ55H07E

AZ55H09E

AZ55H12E

AZ55H15E

Temperature F°

BTUH

COP

BTUH

COP

BTUH

COP

BTUH

COP

65

7200

3.75

10000

3.75

13050

3.55

15950

3.35

60

7000

3.70

9600

3.70

12550

3.50

15300

3.30

55

6800

3.65

9100

3.65

11950

3.45

14650

3.25

50

6600

3.55

8700

3.55

11350

3.35

13850

3.15

47

6400

3.50

8400

3.50

10900

3.30

13400

3.10

45

6250

3.45

8200

3.45

10600

3.25

13050

3.05

40

5950

3.35

7700

3.30

9800

3.10

12250

2.95

35

5550

3.20

7100

3.20

9000

3.00

11300

2.80

30

5150

3.05

6500

3.05

8200

2.85

10300

2.65

25

4700

2.90

5900

2.85

7300

2.65

9250

2.50

 

 

 

 

 

 

 

 

 

45

Page 45
Image 45
GE 5500 manual Cooling Performance Data, Heat Pump Performance Data

5500 specifications

The GE 5500 is a sophisticated gas turbine that represents a benchmark in the realm of power generation technology. Known for its impressive performance and efficiency, the GE 5500 has garnered attention in various industries, particularly in energy production. Designed for combined-cycle applications, this turbine effectively leverages both gas and steam cycles to optimize electricity generation.

One of the standout features of the GE 5500 is its advanced aerodynamics, which enhance the efficiency of the combustion process. The turbine employs state-of-the-art combustion technology that allows for high operational flexibility and minimizes emissions, meeting stringent environmental standards. This is particularly important in today’s energy landscape, where sustainability is a crucial focus.

The GE 5500 is equipped with a robust control system that utilizes digital twin technology. This innovative approach allows operators to simulate and analyze the performance of the turbine virtually, leading to improved operational efficiency and reduced downtime. Additionally, this turbine features an integrated health monitoring system that provides real-time data on performance metrics, allowing for predictive maintenance and enhancing overall reliability.

The materials used in the construction of the GE 5500 are engineered to withstand high temperatures and stress levels, ensuring longevity and durability. This includes high-performance alloys that maintain structural integrity even under extreme operating conditions.

Installation and maintenance of the GE 5500 are streamlined through its modular design, which simplifies access to components and reduces service time. This efficiency translates into lower operational costs, making the GE 5500 an economically favorable choice for utilities and independent power producers.

Furthermore, the GE 5500 can be integrated into a variety of power plant configurations, whether for peaking power or baseload operations, which adds to its versatility. Its ability to quickly ramp up production makes it particularly valuable in an energy market characterized by fluctuating demand.

Overall, the GE 5500 gas turbine is a remarkable engineering feat that combines cutting-edge technology with practical design. Its efficiency, reliability, and adaptability position it as a leading choice for power generation needs, meeting the requirements of modern energy systems while contributing to a more sustainable future.