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High-Efficiency V-HP-SF-1000 Evaporative Cooler from China Suppliers - Premium Factory Quality, 45 L/h Output
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High-Efficiency V-HP-SF-1000 Evaporative Cooler from China Suppliers - Premium Factory Quality, 45 L/h Output

Introducing the V-HP-SF-1000, a premium evaporative cooling solution designed by leading suppliers in China. With an impressive evaporative power of 45 L/h, this unit is perfect for maintaining optimal indoor environments.

The V-HP-SF-1000 features an installed power of 9.83 kW, ensuring efficient operation while consuming only 100-120 w/l. Its compact dimensions of 3.0 x 0.9 x 2.8 m make it a versatile choice for various applications.

As a trusted factory in the industry, we prioritize quality and performance, offering products that meet the high standards of our clients. Choose the V-HP-SF-1000 for reliable and efficient cooling solutions.

    Working Principle of the Boiling Chamber
    The boiling chamber is negative pressure at -95 to -97kPa under vacuum condition, raw material is automatically sucked into chamber under negative pressure. Meanwhile, the heat pump system will makes heat exchange device into evaporation and condensation two parts. Circulation system sprays raw wastewater onto the evaporation part nebulized, water become steam after evaporation and rise to condensing become condensate. The condensate flows to condensation vessel and the concentration remains in boiling chamber, both of them will discharge automatically when reach pre-setted rate.
    Advantages of Heat Pump Low Temperature Evaporator
    The heat pump low temperature evaporator has many unique advantages. Compared to conventional evaporators, its energy saving effect can reach more than 90%. Its unique heat source heating method uses the heat source of the compressor for heating. By using the cold amount to condense, no additional cooling water supply is required. In this way, not only is the cost of cooling water supporting facilities saved, but it also reduces the cost of electricity consumption and other supporting facilities to a certain extent.
    No additional steam or other auxiliary heat sources required; it only needs power to run.
    Simplifies operation and significantly reduces the cost of supporting facilities and maintenance.
    Low temperature evaporation properties: vacuum degree can reach -97KPa with evaporation temperature at about 35℃, making it especially suitable for handling heat sensitive materials.
    The heat pump low-temperature evaporator also has the characteristics of fully automated control and operation, without manual intervention. Compared to other evaporators, it is easier to operate, more automated, has a lower failure rate, and offers more stable operation. At the same time, the modular design makes the assembly and operation of the equipment more convenient and occupies a very small area.
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    Frequently Asked Questions
    Q1: How does the boiling chamber operate under vacuum conditions?
    The boiling chamber maintains a negative pressure of -95 to -97kPa under vacuum conditions, allowing the raw material to be automatically sucked into the chamber.
    Q2: How energy-efficient is the heat pump low temperature evaporator compared to conventional systems?
    Its energy-saving effect can reach more than 90% compared to conventional evaporators, thanks to its unique heat source heating method.
    Q3: Does this evaporator require an external cooling water supply?
    No external cooling water is required. The system utilizes the compressor's heat source for heating and the cold output for condensation, saving facilities and electricity costs.
    Q4: What auxiliary heat sources are needed to run the equipment?
    The device does not require any additional steam or auxiliary heat sources. It runs solely on electrical power.
    Q5: Why is this low-temperature evaporator suitable for heat-sensitive materials?
    With a vacuum degree of up to -97KPa, the evaporation temperature is kept low at approximately 35℃, which prevents degradation of heat-sensitive materials.
    Q6: Does the system require constant manual monitoring?
    No, the equipment features fully automated control and operation. It discharges condensate and concentrates automatically when pre-set rates are met, requiring no manual intervention.