Liter/day To Kilogram/second Converter

(L/day to kg/s converter)

Convert Liter/day to Kilogram/second (Gasoline at 15.5°C)

switch

Efficiently Convert L/day to kg/s with Ease


(Last Updated On: 2025-01-24)

Discover how our tool effortlessly converts volume flow from Liters per day to mass flow in Kilograms per second, specifically for gasoline at 15.5°C. Designed by Newtum, this converter provides precise results, ensuring you make accurate calculations in no time. Dive in to explore how this tool can simplify your tasks.

What are Liter/day and Kilogram/second

Definition of Liter/day

Liter/day, often abbreviated as L/day, represents a unit of volume flow rate. It indicates the amount of liquid, in liters, that flows or is consumed every day. This unit is commonly used in contexts where a liquid's daily flow needs to be measured, such as in fluid dynamics, water treatment processes, or chemical manufacturing. By providing a clear measurement over a fixed period, Liter/day helps in understanding and analyzing various processes that involve liquid movement or consumption. Its application extends across industries, making it a vital measurement in both scientific and practical scenarios.

Definition of Kilogram/second

Kilogram/second, abbreviated as kg/s, is a unit of mass flow rate. It quantifies the mass of a substance, measured in kilograms, that passes through a given point or is processed each second. This unit is crucial in fields like engineering, physics, and chemistry, where understanding the rate of mass transfer is essential. Whether it's in pipelines, chemical reactions, or production lines, kg/s provides a clear metric to assess the efficiency and scale of operations. Its use ensures precise control and optimization of processes, making it indispensable for professionals dealing with mass flow analysis.

Liter/day to Kilogram/second Conversion Table

Liter/day (L/day) Kilogram/second (kg/s)
10 L/day 0.00011574 kg/s
20 L/day 0.00023148 kg/s
30 L/day 0.00034722 kg/s
40 L/day 0.00046296 kg/s
50 L/day 0.00057870 kg/s
60 L/day 0.00069444 kg/s
70 L/day 0.00081018 kg/s
80 L/day 0.00092592 kg/s
90 L/day 0.00104166 kg/s
100 L/day 0.0011574 kg/s

Conversion of Liter/day to Kilogram/second

1 L/day = 0.00011574 kg/s
1 kg/s = 864000 L/day

Example 1:
Convert 50 L/day to kg/s:
50 L/day = 50 × 0.00011574 kg/s = 0.005787 kg/s

Example 2:
Convert 0.002 kg/s to L/day:
0.002 kg/s = 0.002 × 864000 L/day = 1728 L/day

History of Liter/day and Kilogram/second

In scientific and industrial contexts, converting volume flow rates to mass flow rates is crucial. The Liter/day to Kilogram/second converter, especially for gasoline at 15.5°C, emerged from the need to handle energy resources efficiently. Over the years, as fuel management became vital, this conversion ensured accurate calculations in fuel distribution and consumption monitoring. Its development marked a significant advancement in engineering, providing a reliable tool for precise measurement and control in fuel-related applications.

How to use Liter/day to Kilogram/second Converter

Real Life Applications of Liter/day to Kilogram/second

The Liter/day to Kilogram/second (Gasoline at 15.5°C) Converter serves as a vital tool in numerous real-world scenarios. It aids in converting volumetric flow rates to mass flow rates, offering precise calculations essential for various industries.

Solved Examples L/day to kg/s

Example 1: Convert 150 L/day to kg/s:
150 L/day = 150 × 0.00011574 kg/s = 0.017361 kg/s

Example 2: Convert 0.01 kg/s to L/day:
0.01 kg/s = 0.01 × 864000 L/day = 8640 L/day

Frequently Asked Questions

What is the conversion factor for L/day to kg/s?

The conversion factor for gasoline at 15.5°C is approximately 0.00011574 kg/s per L/day.

Does temperature affect the conversion?

Yes, this conversion is specific to gasoline at 15.5°C. Different temperatures can alter density and thus affect the conversion.

Why is this conversion important?

It allows for accurate mass flow calculations crucial for fuel management, environmental compliance, and operational efficiency in various sectors.