Explore our top-tier manufacturing lines featuring highly efficient fluid dynamic technologies, advanced concentration structures, and automated hydraulic monitoring components.
Flotte Energy Saving Company, formally established in 2013 with a registered capital of 101 million yuan, proudly inherits a profound legacy of engineering mastery starting from the founding of Flotte Thermal Engineering in 1995. With exactly thirty years of technical expertise, our organization has established itself as an authoritative leader in industrial water equipment production, high-capacity HVAC systems, and sophisticated water treatment solutions.
Our commitment to thermodynamic progress guides our continuous optimization of plate and tube structures. Our systems deliver advanced performance configurations for complex manufacturing plants, urban heating grids, and large-scale waste heat reuse operations. Our engineers design systems that maximize energy output and reduce thermal loss under varying conditions.
We pride ourselves on offering comprehensive production and sales services, starting from custom engineering conceptual design, thermal profiling, and layout simulation, through to manufacturing, stress testing, delivery, and lifecycle maintenance.
Operating state-of-the-art facilities nationwide, Flotte sustains an annual output capacity exceeding 4,500 heat exchange units and water management structures. Generating over 500 million yuan in annual sales and driving tax and profit contributions of 15 million yuan, we stand as a strong economic and technological partner in the international energy equipment sector.
An analytical review of heat exchanger categories, thermal designs, and application-specific naming protocols within the energy sector.
These systems use corrugated metal plates pressed together with gaskets within a heavy frame. The modular layout allows for easy disassembly, maintenance, cleaning, and expansion.
Key Applications: Highly suited for liquid-liquid and liquid-vapor heat transfer where space is limited and temperature approach differences must remain narrow.
Built with a bundle of internal tubes housed inside a pressurized outer cylindrical shell, this design provides high durability under severe operational loads.
Key Applications: Recommended for high-pressure, extreme-temperature applications in chemical plants, oil refineries, and heavy steam condenses.
Fully skid-mounted, factory-assembled stations combining heat exchangers, smart control valves, variable frequency pumps, sensors, and PLC communication blocks.
Key Applications: Modern HVAC networks, municipal building district heating, and automated factory facility operations requiring remote regulation.
These systems run multiple evaporative vessels in sequence. The vapor generated in one vessel serves as the heating medium for the next, reducing energy consumption. They are highly efficient configurations used to treat industrial wastewater and concentrate products.
Combining microfiltration, ultrafiltration, nanofiltration, or reverse osmosis membranes, these systems concentrate and purify liquid solutions without applying thermal stress, preserving material composition in sensitive food, pharmaceutical, and chemical products.
A step-by-step overview of our factory-direct production line, where precision mechanical stamping, robotic assembly, and hydraulic pressure verification ensure equipment reliability.
Our modern production facility utilizes specialized, high-capacity equipment to produce reliable components. From sourcing raw stainless steel, titanium, and nickel alloys to the final assembly of complete modular heat transfer skids, every stage is monitored under our quality management system.
Our production, testing, and service operations strictly adhere to the ISO 9001:2015 International Quality Management System. We also operate within a pressure vessel quality assurance framework that aligns with major global standards.
Our products undergo mandatory safety registration and inspections by national standardization and quality supervision committees, including safety registration certifications for plate heat exchangers. By maintaining a complete audit trail from raw material procurement to water pressure testing, we ensure that every unit delivered meets required operational standards.
Our purchasing departments work with verified global material suppliers to source corrosion-resistant gaskets, high-strength bolts, and verified metals (like Grade 1 Titanium and 316L Stainless Steel). This strict control helps prevent premature wear and operational failures in challenging industrial environments.








How Flotte systems adapt to thermal regulation, waste heat capture, and fluid processing demands in major industrial sectors.
In centralized heating grids, our large plate heat exchangers serve as the primary transfer link between municipal cogeneration plants and local distribution pipelines. By isolating high-pressure main loops from local building systems, they help maintain consistent supply water temperatures, reduce system pressure losses, and optimize winter heating efficiency.
Corrosive media and high-temperature reactions require reliable heat exchangers. Flotte supplies shell and tube heat exchangers alongside special alloy plate models (including Hastelloy and Titanium) that withstand corrosive organic acids and high operating pressures, protecting personnel and surrounding infrastructure.
High purity requirements demand clean heat exchange configurations. Our sanitary plate heat exchangers feature electropolished surfaces, leak detection channels, and specialized gaskets that prevent cross-contamination. This helps pharmaceutical plants comply with strict cleanroom regulations.








How smart monitoring, IoT integration, and materials development drive energy-efficient heating and cooling.
As international energy regulations become stricter, the thermal management sector is moving toward digitized, high-efficiency technologies. Flotte is targeting this shift with research and development across several key technical initiatives:
Integrating digital sensors directly into plate frames enables continuous measurement of temperature differences, flow rates, and pressure variations. Our Intelligent Heating Network Monitoring System transmits this data to central dashboards in real time, allowing plant operators to identify scaling or gasket wear before it causes downtime.
By analyzing fluid dynamics through computerized simulation, our engineers have developed plate patterns with improved corrugation profiles. These designs increase fluid turbulence even at low velocities, which enhances heat transfer rates while reducing scaling and energy usage.
To reduce on-site installation times and lower installation costs, we continue to develop pre-piped, skid-mounted, and insulated heat exchanger configurations. These compact, self-contained systems are fully tested in our factory prior to shipping, facilitating faster commissioning on site.
Answers to common engineering inquiries regarding type selection, operational efficiency, scaling mitigation, and maintenance protocols.
Explore our range of heat exchange units, balancing systems, evaporation technologies, and filtration equipment designed to support your operations.