Emergency & Disaster Water Supply

Rapid water supply deployment for disaster response, humanitarian operations, and emergency situations.

Water Needs in Emergencies

After a disaster, safe water is the first life-saving priority. Contaminated water causes cholera, typhoid, and dysentery — leading causes of post-disaster mortality.

PhaseTimelineWater NeedPriority
Immediate (0-72 hrs)0-3 days7.5 L/person/day minimumSurvival hydration
Short-term (3-30 days)1-4 weeks15-20 L/person/daySanitation + cooking
Recovery (1-6 months)1-6 months20-50 L/person/dayReturn to normal
Reconstruction (6+ months)6+ months50+ L/person/dayPermanent systems

Rapid Water Supply Options

Water Trucking

  • Capacity: 5,000-20,000 liters per truck — serves 500-2,000 people/day
  • Cost: $0.02-0.10 per liter delivered — highest per-unit cost
  • Setup time: 24-48 hours from contract to delivery
  • Limitations: Road access required, fuel dependency, ongoing cost
  • Best for: Immediate response (first 1-2 weeks), remote areas

Bottled Water Distribution

  • Supply chain: Requires regional bottling plant within 200-500 km
  • Distribution: Palletized delivery to distribution points
  • Cost: $0.10-0.50 per liter — expensive but universally accepted
  • Limitations: Plastic waste, storage requirements, logistics intensive
  • Best for: First 48 hours, areas with contaminated source water

Emergency Drilling

  • Rapid drilling rigs: Truck-mounted, 5-10 m/hour in soft formations
  • Timeline: 1-3 days for well completion (shallow wells)
  • Depth: Typically 10-50 m — targeting shallow aquifers
  • Cost: $3,000-15,000 per well — cheapest long-term option
  • Best for: Short-term to permanent supply where aquifer exists

Drive-Point / Sand-Point Wells

  • Method: Drive steel point with screen into shallow aquifer — manual or jackhammer
  • Depth: Up to 10-15 m — limited by driving resistance
  • Yield: 0.5-5 L/s — sufficient for 100-500 people
  • Setup time: 2-8 hours — fastest drilling option
  • Cost: $200-1,000 — extremely low cost
MethodSetup TimeCostCapacityLifespan
Water trucking24-48 hrsHigh ongoing500-2000/dayWeeks
Bottled water48-72 hrsVery highVariableDays
Emergency well1-3 days$3,000-15,000500-5,000/dayPermanent
Drive-point2-8 hrs$200-1,000100-500/day1-5 years
Bladder tank1-4 hrs$500-3,0001,000-10,000LDays-weeks

Emergency Water Treatment

Point-of-Use Treatment

  • Boiling: Most reliable — 1 minute rolling boil kills all pathogens
  • Chlorination: 2 drops household bleach (5%) per liter — 30 min contact time
  • Chlorine tablets: Aquatabs, Katadyn Micropur — pre-dosed, easy to use
  • Ceramic filters: Biosand, ceramic pot — remove 90-99% bacteria
  • Solar disinfection (SODIS): Clear PET bottles, 6+ hours sun exposure — 99% bacteria kill

Mobile Treatment Units

  • Containerized RO: Pre-assembled in 20ft container — 100-1,000 m³/day
  • UF membrane units: Ultrafiltration removes bacteria and protozoa — 50-500 m³/day
  • Electrochlorination: Salt + electricity → chlorine on-site — no chemical transport
  • Rapid sand filtration: Temporary treatment plant — removes turbidity + pathogens

NGO Water Response Protocols

UNICEF WASH Standards

  • Minimum standard: 15 L/person/day for domestic use
  • Distance to water point: Maximum 500 m from shelter
  • Queue time: Maximum 30 minutes per collection
  • Water quality: Zero E. coli per 100 mL at point of distribution
  • Monitoring: Daily chlorination testing at distribution points

MSF (Doctors Without Borders)

  • Priority: Water for medical facilities first, then general population
  • Quality: Higher standard for medical use (sterile water for procedures)
  • Volume: 20-50 L/person/day in camps with medical facilities

Red Cross/Red Crescent

  • First 72 hours: Bottled water + water purification tablets
  • Week 1-2: Water trucking + emergency drilling
  • Month 1+: Permanent well construction + treatment
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Key Emergency Water Statistics

After the 2010 Haiti earthquake, cholera killed 10,000+ people due to contaminated water. After the 2015 Nepal earthquake, rapid well drilling provided permanent water to 50,000 people within 2 weeks. Every $1 invested in emergency water supply saves $4-7 in healthcare costs.

Emergency Supply Chain

  • Pre-positioning: Store water kits in strategic locations before disasters occur
  • Procurement: Framework agreements with suppliers for rapid delivery
  • Logistics: Air freight for immediate needs, sea/road for bulk supply
  • Distribution: Community water points with queue management
  • Monitoring: Daily water quality testing, usage tracking, feedback collection
  • Transition: Handover to local authorities when emergency phase ends
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