Efficiency of electrical power plant

In summary, the overall efficiency of the heat-to-work conversion in the electrical power plant is greater than 88 percent. This is because the plant is able to transfer 88 percent of the heat produced to convert water to steam, and then convert 40 percent of that heat carried by the steam into mechanical energy of the spinning turbine. Using the equation for efficiency, it can be determined that the overall efficiency is greater than 88 percent.
  • #1
ariana0923
15
0

Homework Statement



An electrical power plant manages to transfer 88 percent of the heat produced in the burning of fossil fuel to convert water to steam. Of the heat carried by the steam, 40 percent is converted to the mechanical energy of the spinning turbine. Which best describes the overall efficiency of the heat-to-work conversion in the plant?

--> greater than 88 percent
--> 88 percent
--> 40 percent
--> less than 40 percent

Homework Equations



eff = 1 - (Qc/Qh)

The Attempt at a Solution



Uhh..? No idea lol, I tried using this equation but I got like .54 (when i plugged in .40 for Qc and .88 for Qh)
 
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  • #2


Efficiencies multiply, if you have a source that is 50% that drives another stage that is 50% then overall you have 25%
 
  • #3
which doesn't seem right.

I would say that the overall efficiency of the heat-to-work conversion in the plant is greater than 88 percent. This is because the given information states that 88 percent of the heat produced is transferred to convert water to steam, and then 40 percent of the heat carried by the steam is converted to mechanical energy. This means that the overall efficiency is the product of these two efficiencies, which would be greater than 88 percent. However, without knowing the specific equations and calculations used in the plant, it is difficult to determine the exact efficiency.
 

Related to Efficiency of electrical power plant

1. What is the efficiency of an electrical power plant?

The efficiency of an electrical power plant is a measure of how much of the energy contained in the fuel is converted into usable electricity. It is typically expressed as a percentage and can range from 30% to 50% for most power plants.

2. What factors affect the efficiency of an electrical power plant?

The efficiency of an electrical power plant is influenced by several factors, including the type of fuel used, the design of the plant, and the operating conditions. Other factors such as maintenance and environmental conditions can also have an impact on efficiency.

3. How can the efficiency of an electrical power plant be improved?

There are several ways to improve the efficiency of an electrical power plant, such as upgrading equipment and technology, optimizing the fuel-to-power conversion process, and implementing efficient operating practices. Regular maintenance and monitoring can also help to improve efficiency.

4. What is the difference between thermal efficiency and electrical efficiency in a power plant?

Thermal efficiency refers to the efficiency of converting the heat energy from fuel into mechanical energy, while electrical efficiency is the efficiency of converting mechanical energy into electrical energy. In other words, thermal efficiency is the overall efficiency of the power plant, while electrical efficiency is a subset of thermal efficiency.

5. How does the efficiency of an electrical power plant impact the environment?

The efficiency of an electrical power plant can have a significant impact on the environment. Higher efficiency means less fuel is required to produce the same amount of electricity, resulting in reduced emissions and less pollution. Improving efficiency can also help to conserve natural resources and reduce the overall carbon footprint of the power plant.

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