Convert gallon (US)/second to cubic meter/second [m^3/s] Online | Free flow Converter

Second [gal (US)/s]


Gallon per second (US) [gal (US)/s] is a unit of volumetric flow rate that measures the volume of liquid passing through a system every second, using the US liquid gallon as the standard. One US gallon equals approximately 3.785 liters, so gal (US)/s quantifies how many gallons flow each second, making it suitable for applications requiring very high flow rates. This unit is commonly used in hydraulics, large-scale water distribution, industrial processes, and emergency systems where rapid fluid movement must be monitored and controlled accurately. For instance, in water supply networks or dam releases, gal (US)/s helps engineers design pipelines, pumping stations, and valves to deliver large volumes of water efficiently. In industrial manufacturing, it regulates the flow of liquids in processes like cooling, chemical mixing, or fuel transfer, ensuring smooth and safe operation. Compared to gal/min or gal/h, gallon per second provides real-time measurement and control, enabling immediate response to changes in flow demand. Using gal (US)/s allows engineers, technicians, and managers to measure, manage, and optimize high-volume fluid flow, ensuring efficiency, safety, and reliable operation in critical municipal and industrial applications.


Cubic Meter/Second [m³/s]


Cubic meter per second (m³/s) is a standard unit of volumetric flow rate, representing the volume of a fluid—liquid or gas—that passes through a given cross-sectional area per second. One cubic meter corresponds to a cube with sides of one meter in length, so when measured per second, it quantifies how many such cubic meters move through a system every second. This unit is widely used in hydrology, fluid mechanics, and engineering, including applications such as river flow measurement, pipeline transport, and ventilation systems. In hydrology, for example, the flow of a river or stream is often expressed in m³/s to understand water availability, flood potential, or for designing dams and irrigation systems. In industrial settings, it helps engineers design pumps, fans, and piping systems to ensure efficient transport of fluids. Because it measures volumetric flow, it can be converted into mass flow rate if the fluid’s density is known, enabling calculations related to energy transfer, heating, or cooling. The cubic meter per second is a crucial unit for planning, monitoring, and managing fluid systems, ensuring safety, efficiency, and sustainability in both natural and engineered environments.



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