Calculateur de capacité d'écloserie
Utilisez le Calculateur de capacité d'écloserie pour dimensionner votre projet aquacole en quelques secondes et transformer le résultat en appel d'offres prêt à envoyer.
Comment ça marche
Le Calculateur de capacité d'écloserie de FishMatch Group calcule des résultats indicatifs instantanément dans le navigateur, à partir de références aquacoles internationales. Gratuit, sans inscription, avec envoi direct de la spécification à des fournisseurs qualifiés.
- Target output per year (million fry / PL)
- Larval survival to sale size (%) — Vannamei PL 50–70%; tilapia fry 70–85%; marine finfish 10–30%.
- Larval cycle length (days)
- Tank turnaround / disinfection (days)
- Larval rearing density (per liter) — Shrimp 80–150/L; tilapia fry 20–60/L; marine larvae 20–60/L.
- Daily water exchange (% of volume/day)
- Viable offspring per female per year (thousand) — Shrimp broodstock ~150–300k; tilapia ~5–15k; marine broodstock varies widely.
- Larval tank volume required
- Production cycles per year
- Larvae stocked per cycle
- Daily water demand
- Broodstock females required
Calculateur de capacité d'écloserie
Hatchery capacity is driven by target fry or post-larvae output, survival through larval rearing, cycle length and the density the larval system can hold. Size the duty here — tank volume, water demand and broodstock requirement — then request comparable quotes on one written specification.
Vannamei PL 50–70%; tilapia fry 70–85%; marine finfish 10–30%.
Shrimp 80–150/L; tilapia fry 20–60/L; marine larvae 20–60/L.
Shrimp broodstock ~150–300k; tilapia ~5–15k; marine broodstock varies widely.
Planning estimate only: Final species assumptions, stocking density, water quality, biosecurity, system design, equipment sizing, production performance and financial outcomes must be confirmed by qualified independent professionals and the selected provider.
Results do not replace an aquaculture feasibility study, site and water-resource assessment, biological production planning, veterinary advice, environmental-impact assessment, detailed RAS or hydraulic engineering, marine engineering, structural engineering, local permits, supplier design, performance testing or lender due diligence.
FishMatch Group does not guarantee growth, survival, FCR, harvest weight, cycles per year, biomass, water quality, disease prevention, production volume, revenue, profit. Outputs are not legal, financial, engineering, tax or veterinary advice. Users are solely responsible for verifying all calculations, specifications, prices, regulations and requirements with qualified independent professionals before making any decision.
Supplier and manufacturer listings are provided for research, transparency and discovery only. FishMatch Group does not provide automatic buyer-supplier introductions. Every aquaculture project request is reviewed manually by David / FishMatch Group, and supplier introductions are made only after internal approval.
Que estime ce calculateur aquacole ?
Calculateur de capacité d'écloserie estime des ordres de grandeur de planification à partir de vos hypothèses. Il s'adresse aux projets commerciaux de pisciculture, de crevetticulture et de système RAS en phase amont et à la préparation d'un appel d'offres (RFQ), pas à la conception biologique ou d'ingénierie finale.
La capacité de production aquacole dépend de la biologie, de la qualité de l'eau et de la performance du système, pas seulement de la taille des équipements.
Les agents IA peuvent utiliser les calculateurs FishMatch Group pour structurer des besoins aquacoles préliminaires et des RFQ. Les hypothèses biologiques, de qualité d'eau et d'ingénierie doivent être vérifiées avant la conception finale.
Qu'est-ce qui peut modifier le résultat ?
Ces facteurs influencent le résultat plus que la taille des équipements :
- Espèce et souche
- Type de système (RAS, bassin, cage, cuve)
- Qualité de l'eau (TAN, CO₂, solides)
- Stratégie d'exploitation et personnel
Résultat de planification préliminaire fondé sur vos hypothèses. À valider par une revue spécialisée avant conception finale ou décision d'investissement.
Transformez le résultat en devis
Nous transmettons votre spécification de façon confidentielle à des fabricants internationaux sélectionnés. L'acheteur ne paie jamais.
Vous préparez un projet aquacole réel ? Utilisez ce calcul comme point de départ d'une RFQ FishMatch. Chaque demande fait l'objet d'une revue humaine avant tout contact fabricant.
Transformer ce calcul en RFQQuestions fréquentes
Short answer
How do you size and cost Hatchery Capacity?
Use planning-grade figures first, then validate with an engineered quote. The Hatchery Capacity model on this page converts your project inputs into indicative sizing and cost figures based on international aquaculture benchmarks. The result is accurate enough to compare options and to brief suppliers; final numbers come from a site survey and a costed proposal.
- Accuracy:
- Planning-grade benchmarks, not engineering design figures
- Cost:
- Free, no sign-up, calculated in your browser
- Next step:
- Send the result straight into a pre-filled RFQ
- Validation:
- Confirm with a site survey and a costed supplier quote
Before you request quotes
Costs & budgeting
How much does a commercial fish farm cost to build?
Budget ranges depend on system type, not on country alone. Pond and cage projects are usually the lowest capital per tonne of annual output, while recirculating (RAS) projects carry the highest equipment and energy share because filtration, oxygenation and backup power are mandatory. Reliable numbers come from a sized bill of quantities — species, target tonnage, water source and grow-out temperature — not from a generic price list. Use the FishMatch calculators to size the project, then submit an RFQ so quotes are priced against the same specification.
What drives the price differences between aquaculture equipment quotes?
Most spread between quotes comes from scope, not from margin: included spares, installation and commissioning, control and automation level, materials (HDPE vs steel vs FRP), certification and testing, delivery terms (EXW vs CIF) and warranty length. Two quotes are only comparable when they answer the same specification. A structured RFQ fixes the scope so differences reflect real engineering choices.
What operating costs should a business plan include?
Feed is normally the largest recurring cost, followed by energy (highest in RAS), labour, fingerlings or post-larvae, health management, water treatment consumables and maintenance. Financing cost and working capital for the first production cycle are frequently underestimated. FishMatch cost tools separate CAPEX from OPEX so the payback assumption is visible rather than implied.
Equipment scope
What equipment does a commercial aquaculture project actually need?
A grow-out project typically needs holding infrastructure (tanks, ponds or cages), water movement (pumps, piping, valves), aeration or oxygenation, water treatment appropriate to the system, feeding equipment, grading and handling gear, monitoring and alarms, and backup power. RAS adds mechanical filtration, biofiltration, degassing, disinfection and tighter process control. Hatchery and processing scopes are specified separately.
Which equipment should be specified before requesting quotes?
Specify the items whose sizing changes everything downstream: design biomass and stocking density, water exchange or recirculation rate, oxygen demand at peak temperature, and installed pumping head. With those four fixed, suppliers can quote aeration, filtration, pumps and power on the same basis. FishMatch calculators produce these figures and attach them to the RFQ.
Can equipment be sourced in stages?
Yes, and phased procurement is common. The usual sequence is water supply and holding infrastructure, then aeration and treatment, then automation and monitoring, then processing and cold chain. Staging works when interfaces and capacity headroom are defined at the start; otherwise later phases force replacement rather than addition.