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Shankar IAS Summary: Renewable Energy- 2 | Shankar IAS for Environment: Summaries & MCQs - UPSC PDF Download

Introduction 

Shankar IAS Summary: Renewable Energy- 2 | Shankar IAS for Environment: Summaries & MCQs - UPSC

luminescent solar concentrator (LSC) is like a special sheet that can capture sunlight across a big surface. Instead of directly turning sunlight into electricity, it uses a thin sheet made of a special material, usually a type of plastic called polymethylmethacrylate (PMMA). This sheet is mixed with tiny particles that can glow when exposed to sunlight, like special dyes or tiny particles called quantum dots. 

Conventional cross-section of LSCConventional cross-section of LSC

This glowing sheet doesn't generate electricity itself. Instead, it guides the captured sunlight to the edges of the sheet, where solar cells are waiting to turn that light into electricity. So, it's like a way of concentrating and channeling sunlight to where it can be turned into power more efficiently.

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What is the purpose of a luminescent solar concentrator (LSC)?
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What is the need for LSCs?

Building-integrated photovoltaics (BIPV)Building-integrated photovoltaics (BIPV)

  1. Luminescent Solar Concentrators (LSCs) are designed to replace expensive parts of standard solar panels with a more affordable alternative.
  2. The main goal is to reduce the cost of the solar panel module per unit of power produced, making solar energy more economical.
  3. LSCs can collect both direct sunlight and scattered light, making them effective even on cloudy days. This is an advantage over some other solar systems that rely mainly on direct sunlight.
  4. Unlike certain solar setups that need to track the sun's movement, LSCs don't require sun tracking systems.
  5. LSCs are well-suited for building-integrated photovoltaics (BIPV), meaning they can be integrated into structures like windows or walls.
  6. They are particularly useful in regions with cloudier climates, where they can still generate power effectively.

Question for Shankar IAS Summary: Renewable Energy- 2
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What is the advantage of Luminescent Solar Concentrators (LSCs) over some other solar systems?
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Ideal LSC

Sunlight after passing through LSCSunlight after passing through LSC

  1. Catches a lot of sunlight: The material should be good at absorbing sunlight from all the different colors it comes in. Think of it like a sponge soaking up water, but in this case, it's sunlight.
  2. Shines all the captured light: Once it has soaked up sunlight, it should release it all as light. It's like squeezing that sponge to get all the water out.
  3. Big difference between taking in and giving out light: When it takes in sunlight, it should be different from when it gives out light. This helps in not losing too much sunlight during the process. Imagine if your sponge absorbed blue water and squeezed out yellow water – you'd know it did its job.
  4. Lasts a long time without problems: The material should keep doing this job well for a really long time without breaking or becoming less efficient. It's like having a reliable tool that works well for years.

Question for Shankar IAS Summary: Renewable Energy- 2
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Which characteristic is important for an ideal LSC (Light Harvesting Material)?
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The document Shankar IAS Summary: Renewable Energy- 2 | Shankar IAS for Environment: Summaries & MCQs - UPSC is a part of the UPSC Course Shankar IAS for Environment: Summaries & MCQs.
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FAQs on Shankar IAS Summary: Renewable Energy- 2 - Shankar IAS for Environment: Summaries & MCQs - UPSC

1. What is a Luminescent Solar Concentrator (LSC)?
Ans. A Luminescent Solar Concentrator (LSC) is a device that is used to harvest and concentrate sunlight for solar energy conversion. It consists of a transparent plate or film containing luminescent materials that absorb sunlight and re-emit it at longer wavelengths. This emitted light is then guided to the edges of the plate, where solar cells are placed to convert it into electricity.
2. How does a Luminescent Solar Concentrator work?
Ans. A Luminescent Solar Concentrator (LSC) works by using luminescent materials to capture sunlight and re-emit it at longer wavelengths. These luminescent materials are doped into a transparent plate or film, which acts as a waveguide to guide the emitted light to the edges of the plate. Solar cells are placed at the edges to convert the guided light into electricity. This allows the LSC to concentrate sunlight and increase the efficiency of solar energy conversion.
3. What are the advantages of using Luminescent Solar Concentrators?
Ans. Luminescent Solar Concentrators (LSCs) offer several advantages. Firstly, they can be made flexible and lightweight, making them suitable for various applications and easy to install. Secondly, LSCs can capture sunlight from a wide range of angles, allowing them to generate electricity even in low-light conditions. Additionally, LSCs can be integrated into building materials, such as windows or façades, making them aesthetically appealing and increasing their potential for widespread adoption. Lastly, LSCs can be manufactured using low-cost materials and processes, reducing the overall cost of solar energy systems.
4. Are Luminescent Solar Concentrators suitable for all types of solar energy conversion systems?
Ans. Luminescent Solar Concentrators (LSCs) are most suitable for systems that use photovoltaic (PV) cells to convert sunlight into electricity. The concentrated light guided by LSCs can be efficiently captured by PV cells, increasing their power output. However, LSCs may not be ideal for solar thermal systems that require direct heat from sunlight, as the emitted light from LSCs is of lower intensity and wavelength. Therefore, the application of LSCs is primarily focused on improving the efficiency of PV-based solar energy conversion systems.
5. Can Luminescent Solar Concentrators be used in both indoor and outdoor settings?
Ans. Luminescent Solar Concentrators (LSCs) can be used in both indoor and outdoor settings, although their performance may vary. In outdoor settings, LSCs can efficiently capture sunlight and convert it into electricity. However, in indoor settings, where the available light intensity is lower, the performance of LSCs may be reduced. Nevertheless, LSCs can still be beneficial in indoor applications, such as integrating them into windows or skylights to generate electricity from indoor lighting.
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