FEATURES & BENEFITS
Energy Efficiency
Heat pumps are designed to recover and upgrade waste heat, rather than generating all thermal energy from fuel or electricity. COP values: 2.0–4.0 for the 150°C water-source steam heat pump, 4.5–5.0 for the 85°C water-source screw hot-water unit, and up to 2.5 for the 120°C air-source hot-air unit. That efficiency advantage is the core reason many plants replace boilers with heat pumps.
Operating Cost
Boilers depend on ongoing fuel purchase or high direct electricity consumption. Shenling’s brochure states that the 85°C water-source screw heat pump can save more than 70% energy, while the 120°C air-source hot-air unit can save more than 50% versus electric heating and more than 40% versus gas boilers under the stated operating condition.
Carbon Emissions
Boilers produce direct combustion emissions when powered by gas or coal. The brochure positions Shenling heat pumps as clean-energy equipment that support carbon reduction, zero-combustion operation, and ESG goals by using recovered heat and lower-energy input.
Temperature Capability
Boilers are often chosen because of their temperature output, but Shenling’s high-temperature heat pumps cover demanding ranges: 85°C, 120°C, and up to 150°C hot water or steam, with steam pressurization allowing up to 180°C in the ultra-high-temperature water-source model.
Installation and Space
A boiler system may require more fuel handling, exhaust management, and associated safety infrastructure. Shenling’s brochure emphasizes that its high-temperature water-source units are compact and can be installed in a machine room, on a rooftop, or outdoors, which helps reduce installation complexity and footprint.
Smart Control and Remote Operation
Unlike many traditional boilers, Shenling’s heat pump systems support intelligent controllers, LCD interfaces, cloud-platform monitoring, fault recording, and even AIoT functions on selected models. This improves visibility, maintenance, and operational control.
❓ FAQs
Q1: What temperature can this heat pump deliver?
A: It can provide hot water in the range of 85–120°C, suitable for high-temperature industrial applications.
Q2: What type of heat source does it use?
A: It uses waste heat or residual hot water from industrial or commercial processes, typically within a 45–85°C inlet range.
Q3: Can it replace traditional boilers?
A: Yes. It is specifically designed to replace electric and gas boilers, offering higher efficiency and lower operating costs.
Q4: What industries is it suitable for?
A: It is ideal for food processing, brewing, pharmaceuticals, traditional medicine, and industrial manufacturing.
Q5: How does thermal storage improve efficiency?
A: The system can store high-temperature water during low electricity price periods and use it during peak demand, reducing overall energy costs.
Q6: Is installation complicated?
A: No. The unit has a compact design and can be installed in machine rooms, rooftops, or outdoor spaces with minimal complexity.
Q7: Is this a sustainable heating solution?
A: Yes. It significantly reduces carbon emissions and supports low-carbon, energy-efficient industrial operations.
| Parameter |
Sub-Parameter |
Unit |
LSQR110FA-GRS |
LSR500FA-GRS |
LSR1000FA-GRS |
| Performance Parameters |
Heating Capacity |
kW |
107.4 |
496.3 |
970.6 |
|
Power |
kW |
26.2 |
123.7 |
241.9 |
|
COP |
kW/kW |
4.1 |
4.01 |
4.01 |
| Power Supply |
Power Supply Type |
/ |
3N~380V 50Hz |
|
Max Operating Current |
A |
60 |
302 |
562 |
| Operating System |
|
|
Medium-Temperature LCD Display |
| Compressor |
Type |
|
Scroll |
Screw |
|
Start Method |
|
Variable Frequency |
Y-Δ Start |
|
Quantity |
|
1 |
1 |
1 |
| Refrigerant |
Name |
|
R245fa |
|
Flow Control |
|
Electronic Expansion Valve |
| User Side |
Water Flow Rate |
m³/h |
18.3 |
85.5 |
167.2 |
|
Pipe Connection Size |
mm |
DN65 |
DN100 |
DN125 |
|
Water Pressure Drop |
kPa |
53 |
59 |
65 |
| Heat Source Side |
Water Flow Rate |
m³/h |
12.5 |
64.2 |
125.5 |
|
Pipe Connection Size |
mm |
DN50 |
DN100 |
DN100 |
|
Water Pressure Drop |
kPa |
50 |
54 |
60 |
| Dimensions & Weight |
Dimensions |
mm |
2200×1500×1620 |
2500×1500×2200 |
3500×2250×2200 |
|
Net Weight |
kg |
750 |
4840 |
8300 |
|
Operating Weight |
kg |
800 |
5030 |
8620 |
? Notes:
All parameters are based on nominal operating conditions:
Heat source side inlet/outlet water temperature: 85/80°C
User side steam temperature: 135°C
Makeup water temperature: 85°C
Specific unit parameters shall be subject to the nameplate of the unit.
The unit heat exchanger is a plate-type heat exchanger with flange connections.
The above parameters are for standard models. For non-standard requirements, please contact Shenling Company’s business consultation.
Due to product improvements and optimizations, the above parameters may be subject to change. Please refer to the selection guide and actual product.