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Low thermal conductivity: Because a very high thermal conductivity is required to transport thermal energy away from a heat source such as a digital microprocessor, the low thermal conductivity of thermoelectric generators makes them unsuitable to recover the heat. Thermoelectric generator - Wikipedia wikipedia.org wiki Thermoelectricgenerator wikipedia.org wiki Thermoelectricgenerator
Thermoelectric modules work on two different principals These types of modules are low amp (typically in the 6 amp range, running at 12V) and are designed for low temperature exposure of no more than 70C to 80C hot side. How Thermoelectric TEG Generators Work thermoelectric-generator.com how-thermoelectri thermoelectric-generator.com how-thermoelectri
A single TEG generates power from 1 to 125 W. The use of more TEGs in a modular connection may increase the power up to 5 kW and T max could be bigger than 70C. Heat source , for example, a heat pipe system (the TEG devices and the heat pipe system can be used together in waste heat recovery systems). Thermoelectric Energy Harvesting: Basic Principles and Applications intechopen.com chapters intechopen.com chapters
Besides low efficiency and relatively high cost, practical problems exist in using thermoelectric devices in certain types of applications resulting from a relatively high electrical output resistance, which increases self-heating, and a relatively low thermal conductivity, which makes them unsuitable for applications
Thermoelectric generators are not very popular for several reasons. One reason is their relatively low efficiency compared to other power generation technologies. They are also currently more expensive to produce than traditional power generation methods, such as burning fossil fuels. Why are thermoelectric generators not very popular? - Quora quora.com Why-are-thermoelectric-genera quora.com Why-are-thermoelectric-genera
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The main disadvantage of the thermoelectric module is that it has got less efficiency. The CoP of the thermoelectric module is less than 1 usually in the range of 0.30.7 hence the CoP of TEC should be increased in the future.
The reliability model of TEG has been established for analyzing the TEGs life by considering the TEG structure compositions. The TEG life length has been studied under different heat flux per unit time conditions ing to reliability distribution function.
In practice, however, they have several drawbacks: they are relatively hard to manufacture (especially in bulk), and they are inefficient (around 10%). That efficiency figure, while low, is often acceptable when the heat would otherwise be wasted, or there is no other viable choice.

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