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KeyPointsforSelectingthePowerofLEDExplosion-ProofLightsinGasStations|MattersNeedingAttention

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Ключови точки за избор на мощност на LED взривозащитени светлини в бензиностанции

Определянето на оптималната мощност за LED взривозащитени светлини на бензиностанциите за постигане на достатъчна яркост, като същевременно е рентабилно и издръжливо, може да бъде предизвикателство за мнозина. С изобилие от запитвания и различни обяснения онлайн, here’s a simplified guide to making the right choice:

gas station-1

Основни съображения:

Първо, важно е да се разбере that solely focusing on wattage is misleading. Different brands offer varying brightness and beam angles at the same wattage. Например, while the general market brightness is around 90 Lumens per Watt (LM/W), our company’s LED canopy lights offer 120-150 LM/W. Следователно, a 100-watt light typically provides 9,000 Lumens (90 LM/W x 100W), but our lights offer 12,000 Lumens (120 LM/W x 100W), което е 30% brighter.

Второ, avoid LED gas station lights that cause glare or dazzle. Например, lights with integrated large LED bulbs can be overwhelming and unsuitable for gas stations, compromising the safety of vehicles entering the station. Lights that cause side glare should also be avoided as their distribution is not suitable for gas stations and can affect drivers.

These insights are from a professional standpoint. въпреки това, most people choose lights based on their budget. Така, let’s discuss from a traditional perspective. Gas stations typically have

varying heights:

Small gas stations (4-5 meters high): We recommend 100-watt explosion-proof lights installed symmetrically over the fueling lanes and islands.

Traditional gas stations (around 6 meters high): Opt for 150-watt LED canopy lights, installed over the fueling lanes and islands symmetrically.

Large gas stations (относно 8 meters high): It’s advisable to use 200-watt fixtures, installed over the fueling lanes and islands.

This traditional method can be adjusted based on installation density and brightness requirements. Lower wattages can be used for higher installation densities, and vice versa for higher brightness demands.

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