Acre-foot/year To Kilogram/second Converter

(acre-ft/yr to kg/s converter)

Convert Acre-foot/year to Kilogram/second (Gasoline At 15.5°C)

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Effortlessly Convert Acre-ft/yr to kg/s with Precision


(Last Updated On: 2025-01-27)

Discover the efficiency of our Acre-foot/year to Kilogram/second (Gasoline At 15.5°C) Converter. This tool, developed by Newtum, provides a seamless transition from acre-ft/yr to kg/s, ensuring accuracy and convenience. Dive in to explore how easily you can manage your conversions with just a click.

What are Acre-foot/year and Kilogram/second

Definition of Acre-foot/year

An acre-foot per year is a unit of volumetric flow rate commonly used in the agricultural and water management sectors. The term 'acre-foot' refers to the volume of water needed to cover an acre of land to a depth of one foot, equivalent to about 1,233.5 cubic meters. When measuring flow rates, the 'per year' aspect denotes the amount of this volume that moves in a year. It is a vital measure for understanding water usage and distribution over time, playing a crucial role in resource planning and management.

Definition of Kilogram/second

Kilogram per second is a unit of mass flow rate indicating how much mass in kilograms passes through a particular point every second. This unit is instrumental in various engineering applications where material transportation is involved. It helps determine the efficiency and capacity of systems such as pumps, compressors, and fuel lines. By knowing the kilogram per second, engineers can optimize processes, ensuring that materials are delivered at the right speed and quantity, leading to improved operational performance and resource management.

Acre-foot/year to Kilogram/second Conversion Table

Acre-foot/year (ac-ft/yr) Kilogram/second (kg/s)
1 ac-ft/yr 0.039 kg/s
5 ac-ft/yr 0.195 kg/s
10 ac-ft/yr 0.39 kg/s
20 ac-ft/yr 0.78 kg/s
30 ac-ft/yr 1.17 kg/s
40 ac-ft/yr 1.56 kg/s
50 ac-ft/yr 1.95 kg/s
75 ac-ft/yr 2.92 kg/s
100 ac-ft/yr 3.9 kg/s
200 ac-ft/yr 7.8 kg/s

Conversion of Acre-foot/year to Kilogram/second

1 ac-ft/yr ≈ 0.039 kg/s

Example 1:
Convert 10 ac-ft/yr to kg/s:
10 ac-ft/yr ≈ 10 × 0.039 kg/s = 0.39 kg/s

Example 2:
Convert 25 ac-ft/yr to kg/s:
25 ac-ft/yr ≈ 25 × 0.039 kg/s = 0.975 kg/s

History of Acre-foot/year and Kilogram/second

The Acre-foot/year to Kilogram/second (Gasoline At 15.5°C) Converter emerged from the need to translate volumetric water measurements into usable mass flow rates in engineering contexts. Historically, water management relied heavily on acre-foot/year for agricultural and resource planning. As technology advanced, integrating these traditional measurements with modern systems like fuel distribution became essential, leading to the development of converters that bridge these units. This transformation symbolizes the blending of conventional resource management with contemporary technological demands, enhancing accuracy and application across diverse industrial fields.

How to use Acre-foot/year to Kilogram/second Converter

Real Life Applications of Acre-foot/year to Kilogram/second

Explore how the Acre-foot/year to Kilogram/second (Gasoline At 15.5°C) Converter can be applied in real-world scenarios. This tool provides valuable insights into water resource management, engineering, and industrial applications, promoting efficiency and accuracy in various fields.

Solved Examples acre-ft/yr to kg/s

Example 1: Convert 15 ac-ft/yr to kg/s:
15 ac-ft/yr ≈ 15 × 0.039 kg/s = 0.585 kg/s

Example 2: Convert 50 ac-ft/yr to kg/s:
50 ac-ft/yr ≈ 50 × 0.039 kg/s = 1.95 kg/s

Frequently Asked Questions

What is an Acre-foot/year?
An acre-foot/year is a volumetric flow rate measure, indicating the volume of water covering an acre to a depth of one foot annually.

How does the converter work?
The converter translates acre-foot/year into kilogram/second, adjusting for the density of gasoline at 15.5°C for precise measurement.

Why use this converter?
This tool offers accurate conversion for applications requiring both traditional water measurements and modern fuel distribution analysis.