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Air To Water Source Heat Pump

Air To Water Source Heat Pump

Air to water Source Heat Pump is an advanced heating and cooling system that utilizes air to extract and transfer heat for use in various heating and cooling applications. This system is designed to provide efficient and sustainable heating and cooling solutions for residential, commercial, and industrial buildings.
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Description
Technical Parameters

There are several advantages to using the Air to water Source Heat Pump system, including:

1. Energy Efficiency: This system is designed to be energy-efficient, resulting in lower energy bills for users.

2. Reduced Carbon Footprint: The Air to water Source Heat Pump system helps to reduce carbon emissions significantly, making it an excellent choice for individuals and organizations committed to sustainable living.

3. Cost-Effective: The system is easy to install and maintain, making it a cost-effective solution for heating and cooling buildings.

4. High Performance: The Air to water Source Heat Pump is capable of delivering reliable performance in a variety of environments from cold to hot climates.

 

Unit Model

DSX(L)S-540/F1

DSX(L)S-600/F1

DSX(L)S-660/F1

DSX(L)S-760/F1

DSX(L)S-860/F1

DSX(L)S-920/F2

DSX(L)S-1020/F2

Cooling capacity(kW)

540

600

660

760

860

918

1020

Heat production
(kW)

605

672

739

851

963

1028

1142

Using the power supply

380V/3N~50Hz

380V/3N~50Hz

380V/3N~50Hz

380V/3N~50Hz

380V/3N~50Hz

380V/3N~50Hz

380V/3N~50Hz

Energy Control

25%-100%

12.5%-100%

Compressor

Model

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Number of compressor units (units)

1

1

1

1

1

2

2

Cooling power rating(kW)

104

115

127

146

165

176

196

Rated power of heat production(kW)

135

150

165

190

215

230

256

Maximum safety current (wiring)(A)

302

302

378

420

444

258*2

258+302

Refrigerant

Work Quality

R22

R22

R22

R22

R22

R22

R22

Addition quantity(Kg)

108

120

132

152

172

184

204

Evaporator

Model

Shell and tube heat exchanger

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Semi-hermetic screw compressors

Water-side resistance(KPa)

46

46

46

46

47

47

50

Dirt factor (㎡℃/kW)

0.086

0.086

0.086

0.086

0.086

0.086

0.086

Connection tube specification(mm)

DN100

DN100

DN125

DN100

DN125

DN150

DN150

Chilled water flow rate at refrigeration working condition(m/h)

93

103

113

131

148

158

175

Cold water flow rate at heating condition (m/h)

50

56

62

71

80

86

95

Condenser

Model

Shell and tube heat exchanger

Shell and tube heat exchanger

Shell and tube heat exchanger

Shell and tube heat exchanger

Shell and tube heat exchanger

Shell and tube heat exchanger

Shell and tube heat exchanger

Water-side resistance(KPa)

45

46

46

46

46

46

50

Dirt factor (㎡℃/kW)

0.086

0.086

0.086

0.086

0.086

0.086

0.086

Connection tube specification(mm)

DN125

DN125

DN125

DN125

DN125

2-DN125

2-DN125

Chilled water flow rate at refrigeration working condition(m/h)

50

56

62

71

80

86

95

Cold water flow rate at heating condition (m/h)

93

103

113

131

148

158

175

Dimension

Length(mm)

3635

3635

3120

3520

3520

3860

4360

Width(mm)

1310

1310

1340

1415

1415

1395

1395

Height(mm)

1810

1810

1900

2055

2055

2020

2020

Unit weight (standard type)(Kg)

3250

3550

3750

3800

3850

3890

4210

Unit weight (noise isolation type)(Kg)

3325

3630

3835

3890

3945

3990

4315

Noise (standard type)(dB(A))

72

73

73

73

73

73

74

Noise(noise isolation type)(dB(A))

61

62

64

64

65

65

66

 

The Air to water Source Heat Pump can have a significant impact on the environment and society in many ways.

By reducing energy consumption and carbon footprint, this system can contribute to creating a more sustainable future.

 

In addition, the Air to water Source Heat Pump system can also provide many social benefits such as improved air quality, reduced noise pollution, and increased comfort and well-being for building occupants.

 

The Air to water Source Heat Pump system can be used in various applications, including residential and commercial buildings, schools, hospitals, and hotels. They are suitable for new buildings and retrofitting existing constructions.

 

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The Air to water Source Heat Pump system is widely used in many countries around the world, including China, Japan, the United States, Canada, and many European countries.

The system's popularity is due to its low carbon footprint, energy efficiency, and cost-effectiveness.

 

The Air to water Source Heat Pump is an innovative and sustainable heating and cooling solution that offers many advantages to users. This system contributes significantly to energy efficiency and reducing carbon footprint, while providing high performance and high comfort levels to building occupants.

As more countries embrace sustainable living, the Air to water Source Heat Pump system will undoubtedly become increasingly popular.

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