Convert liter/second [L/s] to kilogram/second (Gasoline at 15.5%b0C) Online | Free flow Converter

/Second [L/s]


Liter per second (L/s) is a unit of volumetric flow rate that measures the volume of liquid passing through a system every second. One liter equals 1,000 cubic centimeters, so L/s quantifies how many liters flow per second, making it ideal for applications requiring rapid fluid movement. This unit is widely used in hydraulics, industrial processes, water supply systems, and large-scale chemical operations where high flow rates must be monitored and controlled precisely. For instance, in water distribution networks, L/s helps engineers design pipelines and pumping stations to deliver sufficient water to meet demand during peak usage. In industrial manufacturing, it regulates the flow of liquids in processes like cooling, chemical mixing, or fuel supply, ensuring efficiency and safety. Compared to L/min or L/h, liter per second provides a much finer temporal resolution, enabling real-time monitoring and control of high-volume flows. Using L/s allows professionals to measure, manage, and optimize fluid transport effectively, ensuring operational efficiency, system reliability, and accurate delivery in both industrial and municipal contexts where rapid and precise fluid movement is essential.


Kilogram/Second (Gasoline at 15.5°C) [kg/s]


Kilogram per second [kg/s] is a unit of mass flow rate that measures the mass of a substance passing through a system every second. When specified for gasoline at 15.5°C (approximately 60°F), it accounts for the density of gasoline under standard conditions, which is about 0.725 g/cm³. Expressed in kg/s, this unit is widely used in fuel injection systems, industrial fuel delivery, and engine performance analysis where precise real-time measurement of fuel mass is critical. For example, an engine consuming 1.2 kg/s of gasoline can be analyzed to optimize combustion efficiency, reduce emissions, and improve overall performance. In pipelines or storage systems, kg/s allows operators to monitor rapid mass transfer, prevent overflows, and maintain system stability. Compared to kg/min or kg/h, kilogram per second provides high-resolution, real-time monitoring, enabling immediate adjustments to fuel flow for optimal operation. Using kg/s for gasoline at 15.5°C allows engineers, technicians, and operators to measure, control, and optimize fuel mass flow, ensuring efficient combustion, precise dosing, and safe handling in automotive, industrial, and energy applications where fuel performance and consistency are crucial.



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