A Water-Cooled Screw Chiller removes heat from process water and transfers that heat to cooling-tower water. The basic refrigeration cycle works as follows: 🔄 Simple Flow 1. Chilled Water Return Warm water from the industrial process enters the Evaporator. ⬇️ 2. Evaporator – Heat Absorption The refrigerant absorbs heat from the warm process water. The water becomes cold and is sent back to the application. ⬇️ 3. Screw Compressor – Refrigerant Compression The screw compressor compresses the refrigerant vapor, increasing its pressure and temperature. ⬇️ 4. Condenser – Heat Rejection Hot refrigerant passes through the water-cooled condenser. Cooling water from the cooling tower removes heat from the refrigerant. ⬇️ 5. Cooling Tower The heated condenser water goes to the cooling tower, where the heat is rejected to the atmosphere. Cooled water returns to the condenser. ⬇️ 6. Expansion Valve – Pressure Reduction The high-pressure refrigerant passes through the expansion valve, reducing its pressure and temperature. ⬇️ 7. Back to Evaporator The cold refrigerant returns to the evaporator and absorbs heat from the process water again. ♻️ Complete Cycle Process Water → Evaporator → Cold Water to Process Refrigerant → Compressor → Condenser → Expansion Valve → Evaporator Cooling Water → Condenser → Cooling Tower → Condenser ⭐ In One Line Heat from Process Water → Refrigerant → Cooling Water → Cooling Tower → Atmosphere Sheetal Refrigeration Water-Cooled Screw Chiller provides efficient cooling, precise temperature control, reliable continuous operation, and is suitable for demanding industrial applications.

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