Excessive pressure drop increases pump or compressor energy, reduces process capacity and can cause unstable control. A practical optimization program combines hydraulic review with reliable flow, pressure, differential-pressure and temperature measurement.
1. Start with a pressure profile
Install or verify pressure measurement at the equipment discharge, before and after major restrictions, and at the critical end user. Differential-pressure transmitters are especially useful across filters, strainers, heat exchangers, control valves and long pipe sections.
Pressure-drop screening table
| Titik pengukuran | Recommended instrument | Engineering purpose | Typical alarm basis |
|---|---|---|---|
| Pump suction/discharge | Pressure transmitter + gauge | Available head and pump condition | Deviation from approved operating envelope |
| Filter or strainer | Differential-pressure transmitter | Fouling and cleaning demand | Vendor maximum differential pressure |
| Long pipe section | Two pressure transmitters | Friction loss trend | Baseline at comparable flow |
| Katup kontrol | Upstream/downstream pressure | Valve authority and cavitation review | Process design limits |
| Critical consumer | Pressure transmitter | Confirm minimum delivery pressure | Equipment minimum inlet pressure |
2. Compare data at the same flow rate
Pressure loss changes approximately with the square of velocity in turbulent service. A rising differential pressure is only meaningful when flow, fluid density and valve position are considered. Trend pressure, flow and temperature together rather than relying on a single reading.
3. Select instruments for the actual process
| Item seleksi | What to confirm |
|---|---|
| Range | Normal value, startup maximum, vacuum possibility and required turndown |
| Akurasi | Total installed uncertainty, not transmitter accuracy alone |
| Sambungan proses | Thread, flange, manifold, impulse line or diaphragm seal |
| Bahan basah | Compatibility with fluid, cleaning chemicals and corrosion allowance |
| Output | 4–20 mA/HART, fieldbus, pulse or digital communication |
| Perlindungan | IP rating, hazardous-area approval and ambient-temperature limits |
4. Typical corrective actions
- Clean fouled filters, strainers and heat exchangers.
- Remove unnecessary fittings or replace undersized piping during planned shutdowns.
- Check partially closed isolation valves and incorrect control-valve sizing.
- Review pump operating point and variable-speed control.
- Insulate temperature-sensitive services where viscosity drives pressure loss.
Recommended SANTAN instrument categories
Explore flow measurement, pressure measurement, temperature measurement dan valves and actuators.
Engineering note: Alarm values and instrument ranges must be confirmed against the approved process datasheet, piping class and equipment limits. For model selection, send your medium, pipe size, pressure, temperature, flow range, connection and required output to sales@santanfluid.com.