Convert acre-foot/year [ac*ft/y] to pound/day (Gasoline at 15.5%b0C) Online | Free flow Converter

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t/Year [ac·ft/y]


Acre-foot per year [ac·ft/y] is a unit of volumetric flow rate commonly used in hydrology, water resource management, and irrigation planning. One acre-foot represents the volume of water required to cover one acre of land to a depth of one foot, which is approximately 1,233 cubic meters or 325,851 gallons. When expressed per year, ac·ft/y quantifies the total water volume delivered, used, or available over a 12-month period. This unit is particularly useful for managing large-scale water supplies, such as reservoirs, rivers, or agricultural irrigation systems, providing a standardized measure to estimate annual water availability and consumption. For example, an irrigation system supplying 500 ac·ft/y delivers enough water to cover 500 acres to a depth of one foot over a year. It is also used to plan municipal water supply, allocate water rights, and forecast long-term resource needs. Compared to daily or monthly flow units, acre-foot per year gives a macro-level perspective, suitable for long-term planning, resource management, and sustainability assessments. Using ac·ft/y enables engineers, hydrologists, and policymakers to monitor, manage, and optimize water resources, ensuring efficient allocation and conservation for agricultural, municipal, and industrial use.


Pound/Day (Gasoline at 15.5°C) [lb/d]


Pound per day [lb/d] is a unit of mass flow rate that measures the mass of a substance passing through a system over a 24-hour period. When specified for gasoline at 15.5°C (approximately 60°F), it accounts for the standard density of gasoline, roughly 6.073 lb/gal (0.725 g/cm³). Expressed in lb/d, this unit is commonly used in fuel storage, inventory management, and long-term consumption monitoring for industrial, automotive, and energy applications. For example, a fuel storage facility supplying 172,800 lb/d of gasoline can track daily usage, plan resupply schedules, and manage inventory efficiently. In pipelines or large-scale fueling operations, lb/d allows operators to assess total daily fuel transfer, optimize delivery logistics, and ensure safety. Compared to lb/h or lb/min, pound per day provides a macro-level overview, making it suitable for strategic planning, reporting, and long-term operational analysis. Using lb/d for gasoline at 15.5°C enables engineers, operators, and energy managers to monitor, regulate, and optimize fuel mass flow over extended periods, ensuring accurate accounting, efficient fuel use, and reliable operation in industrial, automotive, and energy systems where consistent fuel management is critical.



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