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Valorisation des rejets thermiques industriels par un systeme ORC: Modelisation et optimisation des systemes ORC sous-critiques et surpercritique
XCD 223
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Unlock the potential of industrial waste heat with optimized Organic Rankine Cycle systems.
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Product Details
| Publisher | u00c9ditions universitaires europu00e9ennes |
| Publication date | January 10, 2017 |
| Language | French |
| Print length | 272 pages |
| ISBN-10 | 3639548647 |
| ISBN-13 | 978-3639548648 |
| Item Weight | 14.3 ounces (405.41 grams) |
| Dimensions | 5.91 x 0.62 x 8.66 inches (15 x 1.6 x 22 cm) |
Product Description
Valorisation des rejets thermiques industriels par un systeme ORC: Modelisation et optimisation des systemes ORC sous-critiques et surpercritique pour ... de la chaleur fatale French Edition Paperback January 10, 2017
Customer Questions & Answers
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Question:
What is the Organic Rankine Cycle?
Answer: The Organic Rankine Cycle is a thermodynamic process used to convert low-temperature waste heat into usable energy. -
Question:
Why is exergy analysis important?
Answer: Exergy analysis helps identify and quantify energy losses in the system, ensuring better optimization of energy use. -
Question:
Who would benefit from this book?
Answer: This book is ideal for engineers, researchers, and industry professionals interested in energy recovery systems and sustainable practices.
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XCD 223
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Ubuy works hard to protect your security and privacy. Our advanced payment security system ensures confidentiality by encrypting your information during transmission using AES (Advanced Encryption Standards) and SSL (Secure Socket Layer) protocols. Your payment details are 100% secure as we do not share your payment details with third party sellers.
Features & Benefits
- Explore the feasibility of low-temperature waste heat recovery.
- Learn about subcritical and supercritical Organic Rankine Cycle configurations.
- Discover energy and exergy analysis methods for performance optimization.
- Identify energy loss sources within the system components.
- Gain insights from a comprehensive literature comparison.
- Maximize energy utilization from industrial waste streams.