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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
391

Despacho integrado da geração termeletrica e da produção e transmissão de gas natural / An integrated dispatch of thermoelectric power plants and natural gas system

Mello, Oderson Dias de 08 January 2006 (has links)
Orientador: Takaaki Ohishi / Tese (doutorado) - Universidade Estadual de Campinas, Faculdade de Engenharia Eletrica e de Computação / Made available in DSpace on 2018-08-07T05:54:02Z (GMT). No. of bitstreams: 1 Mello_OdersonDiasde_D.pdf: 1392271 bytes, checksum: 4a25b0e50f13f9b1cc3f51c1bbf51592 (MD5) Previous issue date: 2006 / Resumo: Esta tese apresenta um modelo de despacho para usinas termelétricas a gás natural considerando a produção e o transporte de gás. O modelo proposto associa a operação do sistema de geração termelétrica com a operação da rede de gasodutos. A metodologia utilizada para obter a solução foi aplicada a um exemplo com seis usinas termelétricas supridas por uma rede de gás natural. O modelo apresentado integra eficientemente a operação das usinas termelétricas com a operação do sistema de gasodutos / Abstract: This thesis presents a dispatch model for natural gas power plants considering the production and transmission of gas. The proposed model put together the operation of the power plant system with the operation of the natural gas pipeline network. The proposed approach was applied to an example of six power plants supplied by a gas system. The proposed approach integrates the operation of power plants with the operation of natural gas transmission system / Doutorado / Energia Eletrica / Doutor em Engenharia Elétrica
392

Konzeption, Optimierung und Evaluation von thermoelektrischen Generatorsystemen für den Einsatz in dieselelektrischen Lokomotiven

Heghmanns, Alexander 19 June 2017 (has links) (PDF)
Die verschiedenen Maßnahmen zur Senkung des Kraftstoffverbrauchs von dieselbetriebenen Schienenfahrzeugen sind Gegenstand der Forschung und werden in den kommenden Jahren, bedingt durch weltweit anwachsendes Transportvolumen, begrenzte Ressourcen und steigendes Umweltbewusstsein, weiter an Bedeutung zunehmen. Die Nutzung der Abgasenthalpie des Dieselmotors stellt dabei eine Möglichkeit zur Reduktion des Kraftstoffverbrauchs dar. Im Vergleich zu anderen Methoden ist der absolute Einfluss auf den Verbrauch zwar geringer, eine Kombination ist jedoch möglich und führt zu einer Verbesserung der Energieeffizienz. In dieser Arbeit wird die Möglichkeit der Abgasenthalpienutzung mittels thermoelektrischer Generatoren (TEG) betrachtet. Diese hat den Vorteil einer hohen Leistungsdichte, eines geringen Wartungsaufwands sowie einer einfachen Integration in die Topologie der exemplarisch untersuchten Lokomotive. Bei der Umsetzung sind wesentliche Randbedingungen wie die herrschenden Abgastemperaturen und -massenströme das verfügbare Einbauvolumen und der maximal zulässige Abgasgegendruck, zu beachten. Weiterhin stellt sich die thermomechanische Festigkeit der thermoelektrischen Module (TEM) als Herausforderung dar. Dies macht eine Optimierung auf Systemebene unabdingbar, welche mit numerischen Methoden effizient und wirtschaftlich durchgeführt werden kann. Aufgrund der Systemkomplexität und unterschiedlichen Skalierungsebenen der Systemkomponenten wird dazu ein Multi-Layer-Multi-Scale Optimierungsansatz vorgestellt, welcher eine realitätsnahe Konzeption und Bewertung des Systems ermöglicht. Wesentliche Fragestellungen der thermomechanischen Festigkeit des Moduls, der technischen Realisierbarkeit bis hin zur Gestaltung einer systemleistungsorientierten Betriebsstrategie werden im Laufe des implementierten Prozesses mit Hinblick auf die maßgebende maximale Systemleistung adressiert und beantwortet.
393

Photothermoélectricité : Modélisation en régime harmonique et caractérisation de matériaux thermoélectriques solides et liquides / Photothermoelectricity : Modeling in harmonic regime and characterization of solid and liquid thermoelectric materials

Touati, Karim 12 December 2016 (has links)
Ce mémoire de thèse porte sur l'exploitation de l'effet Seebeck pour la caractérisation thermo-physique des matériaux thermoélectriques (TE) solides et liquides. Lors de travaux récents au sein du laboratoire, la technique photothermoélectrique (PTE) a été développée pour la caractérisation thermique de matériaux TE solides de faibles conductivités électriques. Dans ce travail, l'utilisation de cette technique a été généralisée à tous les matériaux TE solides (de faibles ou de hautes conductivités électriques). Cela est rendu possible par la prise en compte de la nature gaussienne de l'excitation thermique modulée à laquelle le matériau est soumis ainsi que par la compréhension des effets de couplage des mécanismes de transport thermique et électrique dans les matériaux TE. Dans cette thèse, plusieurs matériaux thermoélectriques solides ont été étudiés : le trisulfure de titane (TiS₃), les oxydes types Bi₂Ca₂Co₁,₇Oₓ, le séléniure du tellurure de bismuth (Bi₂Te₂,₄Se₀,₆). La tension auto-induite par effet Seebeck a été aussi exploitée pour la détection des transitions de phases que présentent certains matériaux thermoélectriques, ici le cas du séléniure de cuivre a été étudié. Une nouvelle procédure qui permet de déterminer l'évolution de la diffusivité thermique d'un matériau TE en fonction de la température est présentée. En plus des matériaux TE solides, la technique PTE a été étendue à l'étude des matériaux thermoélectriques liquides (LTE). Un modèle théorique qui décrit le signal délivré par un matériau LTE soumis à une excitation thermique périodique a été développé. Ensuite, une étude de l'évolution des propriétés thermiques d'un matériau LTE en fonction de la concentration d'un soluté a été réalisée. Enfin, l'approche dite de cavité résonnante d'ondes thermiques (TWRC) a été utilisée pour investiguer thermiquement des matériaux LTE. À notre connaissance, c'est la première fois que l'approche TWRC est utilisée pour l'analyse du signal généré par un liquide thermoélectrique. L'utilisation des LTE comme capteurs thermiques a été aussi abordée dans ce travail. / The use of the self-induced Seebeck effect in thermophysical characterization of solid and liquid thermoelectric (TE) materials is described in this manuscript. In previous works, the photothermoelectric technique (PTE) has been developed in our laboratory for the thermal characterization of solid TE materials having low electrical conductivities. In this work, we first generalized the use of the PTE technique to all solid thermoelectric materials (with high or low electrical conductivities). This is achieved by taking into account the Gaussian shape of the thermal source exciting the material as well as by the understanding of the coupling effects between thermal and electrical transport mechanisms when a TE material is submitted to a modulated thermal excitation. In this thesis, several solid thermoelectric materials were studied : Titanium trisulfide (TiS₃),Bi₂Ca₂Co₁,₇Oₓ oxydes and Bismuth Selenido-telluride (Bi₂Te₂,₄Se₀,₆). Then, the self-induced Seebeck voltage was used for the detection of phase transitions exhibited by certain thermoelectric materials. The case of the copper selenide (Cu₂Se) was studied. A new procedure allowing to follow the temperature dependance of the thermal diffusivity of solid TE materials is also presented. In this work, the PTE technique was extended to liquid thermoelectric (LTE) materials. Indeed, a theoretical model describing the signal delivered by a LTE material subject to a periodic thermal excitation has been developed. Then, a study of the evolution of the thermal properties of an electrolyte as function of a solute concentration was performed. Finally, the thermal-wave resonator cavity (TWRC) approach was used to characterize thermally LTE materials. As far as we know, this is the first method proposing a TWRC approach applied directly to the sensor itself. The use of LTE such as heat sensors was also addressed here.
394

Nanostructured Carbon-Based Composites for Energy Storage and Thermoelectric Applications

Hsieh, Yu-Yun January 2019 (has links)
No description available.
395

Syntéza keramických materiálů na bázi Ca-Co-O systému / Synthesis of ceramic materials based on Ca-Co-O system

Žáková, Kateřina January 2018 (has links)
In this work synthesis of structure cobaltites based on Ca-Co-O system is discussed. As major way of synthesis was chosen citric acid method. The document is devided into theoretical and experimental part and also into discussion of observed results. Main focus of literary research is general utilization and function of thermoelectric materials, related thermoeletric effects according to structural defects in crystals. Also topic of cobaltite ceramics is described. Due to the fact that calcium-cobalt oxides are conductive, their use is point of interest in high-temperature and energy applications. During experiments differential thermal and thermogravimetric analysis (TG-DTA), X-Ray diffraction, heat microscopy and scanning electron microscopy were used.
396

Návrh a tvorba laboratorní úlohy s Peltierovým článkem / Design and construction laboratory exercise with Peltier cell

Mejzlík, Michal January 2009 (has links)
The introduction of this paper describes three thermoeletrical effects and their properties. It also deals with thermoelectrical cells, which are using Seebeck´s and Peltrier´s effects. The paper decribes principles how the Peltier´s cells work, their mathematical model, construction and practical use. The paper shows what kinds, shapes and output we can meet at the market and which kinds of parameters regulate their selection. The paper suggests the possibility to measure characteristic behaviour and quantity during laboratories tasks and their evaluations. At the conclusion is adduced the suggestion of laboratory task together with theoretically made pilot protocol.
397

Různé způsoby využití slunečního záření pro výrobu elektrické energie / Different way how to use solar radiation for the electric energy production

Obadal, Petr January 2011 (has links)
The thesis deals with the problem of potential use of solar energy through the conversion into electric energy. The thesis analyses in great detail several types of conversion. My special concern included photovoltaic conversion and thermal conversion of solar energy using steam turbines for energy production. In the subsequent parts, I focus on the problem of photovoltaic, photovoltaic systems, and solar thermal power plants, their installation and use.
398

Optimalizace pohybu termoelektrického lineárního aktuátoru / Movement optimization of the thermoelectric linear actuator

Belháč, Jakub January 2011 (has links)
The thesis describes movement optimization of a linear thermoelectric actuator that is used for operating floor heating valves in modern buildings. Featuring experimental nature, the thesis deals with a problem specified by an industrial company within the following steps; definition of possible solutions based on problem research, experimental verification of selected propositions, the best solution selection resulting from the analysis of executed measurements, final verification with all product versions, benchmarking.
399

Využití termoelektrického generátoru pro zvýšení účinnosti otopného tělesa / Using thermoelectric generator to increase the efficiency of the radiator

Kříž, Pavel January 2015 (has links)
This diploma thesis deals with a design layout of the fan power supply that ensures the increase of the efficiency of the heating unit. For usage in the areas without electric power, the power supply is secured by thermoelectric generator. The system has to function on the basis of autonomous system which turns itself on only when necessary. In the introductory part of the paper there is a recherché of thermoelectric generators for general usage. Next it mentions the basic findings in from the field of DC/DC converters for low power applications. In this part attention is given to MPPT algorithm. Furthermore basic knowledge from the field of heat transmission together with its most used elements is described. Subsequently existing applications that increase the effectiveness of heating are mentioned. Their disadvantage however is that they depend on the external source of power supply. The practical part to a large extent covers the analysis of the suitability of the chosen thermoelectric module. For securing of the heat gradient of the generator there was a model created meeting the figures in the manual and there are several simulations in the MATLAB program. Furthermore several measurements of the thermoelectric module took place in order to secure realistic figures. Subsequently a DC/DC converter was chosen. Finally the testing was made on the real composition. In conclusion there is an overall evaluation including the real usage and the economical aspect of the project. The outcomes of the work enable to avoid common mistakes that are part of many specialized articles. The created system is to be used after the adjustment of the cooling to the required aim. At the same time it becomes very effective.
400

MEMS termoelektrický generátor v letecké aplikaci / MEMS Thermoelectric Generator for Aerospace Applications

Janák, Luděk January 2014 (has links)
Tato diplomová práce se zabývá vývojem autonomního zdroje elektrické energie založeného na MEMS termoelektrickém generátoru. Uvažovaný generátor bude následně použit pro napájení autonomní senzorické jednotky pro letecké aplikace. Systémový pohled na autonomní senzorickou jednotku zahrnuje senzor se zpracováním a přenosem dat, energy harvester (termoelektrický generátor), power management, akumulační prvek a autodiagnostiku. Všechny výše uvedené komponenty jsou v práci podrobně popsány. V úvodu práce je provedena široká rešerše existujících termoelektrických generátorů pro letecké aplikace. Následně jsou popsány základní teoretické poznatky z oblasti DC/DC měničů pro energy harvesting. Zvláštní pozornost je věnována metodám MPPT (Maximum Power Point Tracking). Jako základ pro vývoj napájení autonomní senzorické jednotky bylo provedeno množství simulací za pomoci nástroje MATLAB/Simulink Simscape. Pro identifikaci prametrů modelu posloužilo měření na speciálním přípravku. Praktická implementace teoreticky popsaných problémů je provedena na k tomuto účelu navrženém technologickém demonstrátoru. Závěrem je zhodnocena reálná využitelnost navržené technologie pro finální aplikaci v leteckém průmyslu.

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