Wuhan Grat Control Valve Co., Ltd. nukiz@grat.com.cn 86-027-6070-6977
In industrial fluid control, precise flow distribution and reliable shut-off performance are critical to system stability. Designed specifically for lithium bromide unit condensate systems, the electric three-way shut-off valve delivers efficient dynamic fluid control through bidirectional flow management, fast-acting operation, and advanced control integration.
In lithium bromide refrigeration systems, condensate flow distribution critically impacts heat transfer efficiency and operational stability. The electric three-way valve serves as the central flow-regulation component via:
✅ Adaptive flow distribution: Automatically redirects flow in real-time based on unit load changes to balance branch condensate flows, preventing localized overloading.
✅ Emergency safety shut-off: Instantly isolates flow when abnormal pressure or equipment failure is detected, preventing backflow-induced pressure surges.
✅ Zero-leakage reliability: PTFE stem packing and elastomeric seat seals maintain integrity during continuous flow-redirection cycles, minimizing maintenance downtime.
Rapid Response & Low Noise
· Stroke time < 15 sec: Intelligent actuator enables emergency shut-off to prevent equipment damage
· Sound pressure level ≤ 85 dBA at 1 m: Optimized flow path geometry minimizes turbulence for noise-sensitive applications
Smart Integration & Robust Construction
· 4–20mA + HART protocol: Direct DCS/PLC integration enables remote monitoring and automated control
· Durable 316 stainless steel trim with PTFE seat seals: Maintains integrity during flow redirection
· Carbon steel body: Provides structural strength for standard operating condition
Epilogue
Centered on its flow-diversion capability, the electric three-way shut-off valve integrates rapid response and intelligent control to deliver precision fluid-distribution solutions for lithium bromide unit condensate systems. We remain committed to advancing industrial valve technologies that enhance process reliability through engineering excellence.