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Rethinking Thermoelectric Effects In Seebeck And Peltier Elements: Toward A Unifying Paradigm By Michael Spry

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From the Author
I can remember many times over my years in the thermoelectric industry, when I would hear a bold announcement of some development in the field and find that my BS Detector was pulsing loudly. It was usually in synch with the comparable detection equipment of my colleagues, as we stood around and shook our heads. This was the typical response to word about an astronomical increase in ZT or a claim of dramatic improvement in performance from an innovation in TE module structure. We always sensed that these trumpeted leaps would be founded on errors in methodology or analysis; ultimately, the fanfare would be drowned in silence.
On rare occasions, I would be asked to "run the numbers" on proposed device enhancements, to see how the voltage and current levels played out with pellet geometries and bulk properties. Sometimes this would even involve some rough computer modeling to arrive at interface temperatures along the way. The results would almost never support the claims and I sometimes found that the design concepts were based on very naïve misunderstandings of thermoelectric technology.
Thus, I can understand that prospective readers might greet this project with similar reservations. Claims that a small shift in perspective can lead to profound insights--especially ones which challenge longstanding theoretical fundamentals--are just the sort of thing to trigger skepticism in any professional. In this case, however, the findings come from a very thorough mathematical analysis using computer models which insure harmony with the Laws of Thermodynamics everywhere along the length of a TE element. These models have been checked and rechecked repeatedly for consistency and balance (they are thoroughly detailed within the book for those readers who wish to examine them). While there are a few hypotheses based on band theory which are subject to further refinement, the conceptual frameworks have been meticulously developed and challenged every step of the way by a demanding skeptic--myself.
I readily acknowledge, though, that this book is not for everybody. Obviously first and foremost, a reader must have an interest in thermoelectricity and its fundamental theories. There must be at least a superficial understanding of the role of bulk material properties and their temperature dependencies. Beyond that:
About the Author
Michael Spry brings a somewhat unorthodox background into this project. He earned a BS in psychology from Michigan State University in 1974 and was a practicing social worker for five and a half years before undertaking studies in electronics. He earned an AAS in electronics technology in 1982 and spent four years at Northwestern Michigan College as an instructional assistant and full-time instructor in the ET program.
In 1987, the author became one of the first staff members hired for a fledgling Tellurex Corporation. Over the next 24-years, he enjoyed a multifaceted career in the thermoelectric industry, designing products, production & test equipment, engineering software, computer models & analytical tools, and writing much of the company's web-based educational material. He became one of the chief experts on analysis of power generation systems and custom thermoelectric modules.
Spry left Tellurex in September of 2011 after a reorganization, and began the work which led to Rethinking Thermoelectric Effects In Seebeck and Peltier Elements: Toward A Unifying Paradigm. Over the course of the next two years, he developed concepts of longitudinal energy balance with respect to operational thermoelectric elements, assuring that the Laws of Thermodynamics were satisfied throughout. Supported by his own computer models, his work led to a series of discoveries, hypotheses, and insights which impacted upon fundamental theory. The first edition was published in November of 2013.
The author is also a novelist and author of other non-fiction works. In addition to his solo books, he has contributed to anthologies and periodicals.
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