Product Description
Heat Recovery Chillers are highly efficient and allow an effective transfer of heat. These are largely used in diesel engines. Our offered range of chillers are manufactured using top quality raw material and components that are sourced from trusted and authentic vendors of the industry. Due to their exceptional performance, robust construction, easy installation and long life, these chillers are widely admired in the industry. Apart from this, we provide these Heat Recovery Chillers in numerous technical specifications at market leading rates
Precision Control and OperationEquipped with a microprocessor-based digital controller, this heat recovery chiller delivers precise temperature regulation and real-time pressure monitoring. The digital display allows operators to efficiently track system parameters, ensuring consistency and reliability during operation. Safety is enhanced by features such as overload protection, high/low pressure switches, and phase protection mechanisms, minimizing downtime and extending equipment lifespan.
Efficient Heat Recovery for Industrial UsageWith heat recovery efficiency ranging from 70% to 85%, these chillers maximize energy savings by repurposing waste heat for auxiliary processes. Suitable for use in HVAC systems and process cooling, they are built to withstand a broad ambient temperature range (5C to 45C). The robust construction, combined with options like anti-corrosion coatings and service accessibility, ensures longevity even in challenging industrial settings.
Versatile Installation and MaintenanceTailored for industrial applications, these chillers offer flexible mounting (floor-mounted with optional caster wheels) and accessible front and side panels for hassle-free maintenance. The use of premium materials for main components-such as metal housing, brass/copper/SS304 nozzles, and copper with aluminum cooling fins-enhances durability and efficiency. Engineered for quiet operation and compliance with Indian industrial standards, they provide dependable performance across a range of capacities.
FAQ's of Heat Recovery Chillers:
Q: How does the heat recovery function improve energy efficiency in these chillers?
A: The heat recovery function allows the chiller to capture and utilize waste heat generated during the cooling cycle. By repurposing this heat for auxiliary applications (such as process heating or hot water supply), energy consumption is reduced, resulting in higher operational efficiency (70%-85% heat recovery) and significant utility savings.
Q: What are the main applications of these heat recovery chillers?
A: These chillers are ideal for industrial environments, process cooling needs, HVAC systems, and facilities requiring large-scale heat recovery. They are particularly suited for factories, manufacturing units, and commercial buildings where maximizing energy utilization and maintaining precise temperature control are essential.
Q: When should anti-corrosion coating be requested for the chiller?
A: Anti-corrosion coating is recommended when the chiller will be exposed to aggressive environments-such as coastal areas, chemical processing plants, or locations with high humidity. This optional feature prolongs unit life by protecting internal and external components from corrosive elements.
Q: How is maintenance managed for these chillers?
A: Routine maintenance is streamlined by the accessible front and side panels, allowing quick inspections and servicing. The digital controller and display provide real-time diagnostic information, helping technicians promptly address any performance issues. Using high-efficiency, totally enclosed motors and reliable compressors further reduces maintenance frequency.
Q: Where are these heat recovery chillers manufactured and supplied?
A: These chillers are manufactured, supplied, and traded by established companies across India. Local manufacturing ensures that products comply with regional industrial standards and allows for timely support and service for Indian customers.
Q: What are the benefits of the microprocessor-based digital control system?
A: The microprocessor-based controller provides accurate temperature and pressure management, real-time monitoring, and system diagnostics. This level of automation enhances operational reliability, optimizes energy consumption, and allows users to react swiftly to any anomalies, improving overall system performance.