Convert pound/day (Gasoline at 15.5%b0C) to cubic foot/second [ft^3/s] Online | Free flow Converter

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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.


Foot/Second [ft³/s]


Cubic foot per second [ft³/s] is a unit of volumetric flow rate that measures the volume of fluid or material passing through a system every second, based on the cubic foot. One cubic foot equals approximately 28.3168 liters. Expressed per second, ft³/s is commonly used in hydrology, water resource management, industrial processes, and large-scale fluid systems where high flow rates must be monitored and controlled in real time. For example, in river discharge or dam release studies, a flow of 50 ft³/s represents 50 cubic feet of water passing a point each second, allowing engineers to manage flood risks and water supply efficiently. In industrial settings, it can be used to monitor large-scale liquid, slurry, or gas flows to ensure operational efficiency and prevent system overload. Compared to ft³/min or ft³/h, cubic foot per second provides instantaneous measurement and high-resolution control, enabling immediate adjustments to changing conditions. Using cubic feet per second allows engineers, hydrologists, and operators to measure, regulate, and optimize volumetric flow, ensuring safety, efficiency, and reliability in municipal, industrial, and environmental applications.



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