Well yield is an important factor when designing a borehole water RO system. If the well cannot provide enough raw water, the RO system may experience low inlet pressure, frequent shutdowns and unstable production.
The RO capacity, recovery rate and storage tanks must therefore be designed according to both the daily water demand and the well’s sustainable yield.
Well yield is the amount of water a borehole can supply continuously, usually measured in m³/h.
Design should be based on the sustainable well yield, not only the maximum pumping rate. Seasonal groundwater changes, drawdown and recovery time must also be considered.
A pumping test should confirm:
An RO system requires more feed water than its rated product-water capacity because part of the feed becomes concentrate.
Use the following calculation:
RO Feed Flow = Product-Water Flow ÷ Recovery Rate
For example, a 4 m³/h RO system operating at 65% recovery requires:
4 ÷ 0.65 = 6.15 m³/h of feed water
If the well can continuously supply more than 6.15 m³/h, it may feed the system directly through a raw-water tank. If the yield is lower, additional storage or longer well-pumping hours may be required.
View our customized borehole water treatment systems for groundwater purification projects.
A raw-water tank can balance the difference between the well yield and the RO feed flow. However, storage cannot solve an insufficient total daily water supply.
For example:
During RO operation, the hourly raw-water shortage is:
6.15 − 4 = 2.15 m³/h
For ten hours, the calculated shortage is:
2.15 × 10 = 21.5 m³
The usable raw-water tank volume should therefore exceed 21.5 m³ and include an appropriate operating reserve.
However, if the well cannot produce at least 61.5 m³ per day, increasing tank size will not solve the long-term shortage. The project may require longer pumping hours, a smaller RO system, another well or an alternative water source.
The two tanks perform different functions.
The raw-water tank:
The product-water tank stores treated water and balances factory demand when the RO system is stopped or producing less than the peak consumption rate.
Its volume depends on:
Product-water storage should be calculated from the actual consumption schedule rather than selected only as a percentage of daily production.
A practical design sequence is:
Where turbidity, colloids or microorganisms are unstable, review whether the borehole water needs ultrafiltration before RO.
Avoid the following mistakes:
An undersupplied RO system may show symptoms similar to equipment failure. Read more about low RO permeate flow and its causes.
Before choosing an industrial reverse osmosis system, provide:
Well yield directly affects RO capacity, operating hours and storage-tank volume. A large RO system will not produce stable water if the borehole cannot supply sufficient feed water.
The correct design should balance sustainable well yield, RO recovery, daily water demand and storage requirements. Send Zhongnuo Water Treatment your pumping-test results, water analysis, operating hours and water application to receive a suitable borehole water treatment proposal.
Yes, but only when a raw-water tank stores enough water before operation and the well’s total daily supply meets the RO feed requirement.
No. It only stores water and balances flow differences. It cannot increase the amount of water available from the borehole.
No. Hourly RO capacity is calculated from daily demand and the planned operating hours.
Because part of the feed water leaves the RO system as concentrate. The actual feed requirement depends on the designed recovery rate.
Well yield is an important factor when designing a borehole water RO system. If the well cannot provide enough raw water, the RO system may experience low inlet pressure, frequent shutdowns and unstable production.
The RO capacity, recovery rate and storage tanks must therefore be designed according to both the daily water demand and the well’s sustainable yield.
Well yield is the amount of water a borehole can supply continuously, usually measured in m³/h.
Design should be based on the sustainable well yield, not only the maximum pumping rate. Seasonal groundwater changes, drawdown and recovery time must also be considered.
A pumping test should confirm:
An RO system requires more feed water than its rated product-water capacity because part of the feed becomes concentrate.
Use the following calculation:
RO Feed Flow = Product-Water Flow ÷ Recovery Rate
For example, a 4 m³/h RO system operating at 65% recovery requires:
4 ÷ 0.65 = 6.15 m³/h of feed water
If the well can continuously supply more than 6.15 m³/h, it may feed the system directly through a raw-water tank. If the yield is lower, additional storage or longer well-pumping hours may be required.
View our customized borehole water treatment systems for groundwater purification projects.
A raw-water tank can balance the difference between the well yield and the RO feed flow. However, storage cannot solve an insufficient total daily water supply.
For example:
During RO operation, the hourly raw-water shortage is:
6.15 − 4 = 2.15 m³/h
For ten hours, the calculated shortage is:
2.15 × 10 = 21.5 m³
The usable raw-water tank volume should therefore exceed 21.5 m³ and include an appropriate operating reserve.
However, if the well cannot produce at least 61.5 m³ per day, increasing tank size will not solve the long-term shortage. The project may require longer pumping hours, a smaller RO system, another well or an alternative water source.
The two tanks perform different functions.
The raw-water tank:
The product-water tank stores treated water and balances factory demand when the RO system is stopped or producing less than the peak consumption rate.
Its volume depends on:
Product-water storage should be calculated from the actual consumption schedule rather than selected only as a percentage of daily production.
A practical design sequence is:
Where turbidity, colloids or microorganisms are unstable, review whether the borehole water needs ultrafiltration before RO.
Avoid the following mistakes:
An undersupplied RO system may show symptoms similar to equipment failure. Read more about low RO permeate flow and its causes.
Before choosing an industrial reverse osmosis system, provide:
Well yield directly affects RO capacity, operating hours and storage-tank volume. A large RO system will not produce stable water if the borehole cannot supply sufficient feed water.
The correct design should balance sustainable well yield, RO recovery, daily water demand and storage requirements. Send Zhongnuo Water Treatment your pumping-test results, water analysis, operating hours and water application to receive a suitable borehole water treatment proposal.
Yes, but only when a raw-water tank stores enough water before operation and the well’s total daily supply meets the RO feed requirement.
No. It only stores water and balances flow differences. It cannot increase the amount of water available from the borehole.
No. Hourly RO capacity is calculated from daily demand and the planned operating hours.
Because part of the feed water leaves the RO system as concentrate. The actual feed requirement depends on the designed recovery rate.