Field-Proven Performance Under Real Conditions
Our product designs are not only tested in laboratory conditions, but also applied to real agricultural sites for extended periods.
The following results are from a highly clogged water environment, verifying the stability and reliability of the anti-clogging structure under long-term operation.
Due to the large number of achievements of our products, it is impossible to list them all. We will only list two representative ones to illustrate our points.
Case Study 1
1. Location: Yuanchang Township, Yunlin County , Taiwan (approximately 0.3 hectares)
2. Irrigation type: Basket culture
3. Water source: Well water, pH=8.1, EC=0.34 dS/m, iron ions=0.0438 mg/L
4. Pretreatment: Sediment tank
5. Crops: Cucumber
Previous facilities
Filter: Disc type, 120 mesh
Drip emistter type: 1mm diameter microtube
Problem: Drip emitter frequently clog, resulting in uneven water distribution, which affects crop growth. Repeated cleaning or replacement of the drip emitters is necessary, leading to high labor and time costs for maintenance.
Existing facilities
Filter: None (Disc filter has been removed directly)
Drip emitter type: Typical floating drip emitter
Actual results
• The system can operate continuously for extended periods.
• Drip irrigation clogging has been significantly reduced.
• Water flow remains within acceptable limits.
• On-site maintenance frequency has decreased significantly.
• Operating continuously for more than 2 year
👉 This case demonstrates that, under well water conditions, an active drainage system can effectively reduce blockage accumulation.
Case Study 2
1. Location: Dali Dist., Taichung City, Taiwan (approximately 2 hectares)
2. Irrigation type: Bag culture + Groove tillage
3. Water source: Well water
4. Pretreatment: Sediment tank
5. Crops: Cherry tomatos, Cucumbers, Strawberries
Previous facilities
Filter: Disc type, 120 mesh
Drip emitter type: Typical floating drip emitter
Problem: A typical floating drip emitter is used to solve the problem of long-term clogging. However, the water output is uneven, and it is easy to cause excessive waste of fertilizer and water during operation.
Existing facilities
Filter: Disc type, 120 mesh
Drip emitter type: Pressure-compensating floating drip emitter
Actual results
• The system can operate continuously for extended periods.
• The waste of excessive fertilizer is significantly reduced.
• Water conservation remains within an acceptable range.
• Operating continuously for more than 1 year
👉 This case proves that when using a pressure-compensating floating drip emitter, not only can the active drainage structure effectively reduce blockage accumulation, but it can also save on the waste of fertilizer water.
Performance Summary
The above results show that:
• The anti-clogging effect comes from the structural design, not from frequent maintenance.
Different water quality conditions require different structural orientations.
• Sensor data can effectively assist irrigation decisions.
• Long-term stable operation is more important than short-term traffic data.
Technical application consultation
If you are facing the following problems:
• High-hardness water or highly clogged water quality
• Drip emitter frequently clog.
• The effectiveness of irrigation is difficult to determine.
Please feel free to contact us; we will provide suggestions based on your specific circumstances.
