Water well rehabilitation: the complete guide
The entry point to everything below — why wells lose capacity, how to diagnose the cause, the main rehabilitation methods and where each works, and how to measure results.
Read the guide → Method ComparisonImpulse vs. high-pressure jetting for well rehabilitation
Where each method delivers energy, what each can reach, and how contractors choose for a given well and problem.
Read article → Case StudiesDocumented results from the field
Before/after pump-test data from 40+ treated wells. Specific capacity, well type, geology, and treatment configuration — from the Flow Industries archive.
View case studies → FundamentalsWhy water wells lose yield
The real causes of declining yield: mineral incrustation, iron and manganese, biofouling, and gravel-pack plugging — and where each occurs.
Read article → Job PlanningPlanning gas supply for an AirShock® job
How much nitrogen or compressed air a treatment needs: pressure by depth, consumption logic, and a worked example — plus the downloadable Field Planning Guide.
Read article → Specialized ApplicationImpulse rehabilitation of horizontal collector wells
Ranney-type collector wells: why laterals are hard to rehabilitate, and the first documented US application, reported in Journal AWWA.
Read article → TechnologyThe Physics of AirShock® Impulse Cleaning
What happens when the tool fires: the shock wave, the surging bubble, and why receiver volume, port size, and tool diameter must be matched.
Read article → FAQFrequently asked questions
The questions contractors, utilities, and water-services companies actually ask — short answers, linked to the full technical pages.
Read the FAQ →