{"id":44901,"date":"2019-10-16T23:07:21","date_gmt":"2019-10-16T22:07:21","guid":{"rendered":"https:\/\/www.thermal-engineering.org\/quest-ce-que-le-cycle-de-brayton-diagramme-pv-ts-definition\/"},"modified":"2020-02-19T14:35:05","modified_gmt":"2020-02-19T13:35:05","slug":"quest-ce-que-le-cycle-de-brayton-diagramme-pv-ts-definition","status":"publish","type":"post","link":"https:\/\/www.thermal-engineering.org\/fr\/quest-ce-que-le-cycle-de-brayton-diagramme-pv-ts-definition\/","title":{"rendered":"Qu&#8217;est-ce que le cycle de Brayton &#8211; Diagramme pV-ts &#8211; D\u00e9finition"},"content":{"rendered":"<div class=\"su-quote su-quote-style-default\">\n<div class=\"su-quote-inner su-clearfix\">Cycle de Brayton &#8211; Diagramme pV &#8211; Ts.\u00a0Le cycle de Brayton est souvent trac\u00e9 sur un diagramme de volume de pression (diagramme pV) et sur un diagramme de temp\u00e9rature d&#8217;entropie (diagramme Ts).\u00a0G\u00e9nie thermique<\/div>\n<\/div>\n<div class=\"su-divider su-divider-style-dotted\"><\/div>\n<div class=\"lgc-column lgc-grid-parent lgc-grid-50 lgc-tablet-grid-50 lgc-mobile-grid-100 lgc-equal-heights lgc-first\">\n<div class=\"inside-grid-column\">\n<div class=\"su-spacer\"><\/div>\n<h2>Brayton Cycle &#8211; Moteur \u00e0 turbine<\/h2>\n<p>En 1872, un ing\u00e9nieur am\u00e9ricain,\u00a0<strong>George Bailey Brayton, a fait<\/strong>\u00a0progresser l\u2019\u00e9tude des\u00a0<a title=\"Moteurs de chaleur\" href=\"https:\/\/www.thermal-engineering.org\/fr\/quest-ce-quun-moteur-thermique-definition\/\">moteurs thermiques<\/a>\u00a0en brevetant un moteur \u00e0 combustion interne \u00e0 pression constante, utilisant initialement du gaz vaporis\u00e9, puis des combustibles liquides tels que le k\u00e9ros\u00e8ne.\u00a0Ce moteur thermique est connu sous le nom de \u00ab\u00a0<em><strong>moteur pr\u00eat de Brayton<\/strong>\u00a0\u00bb<\/em>\u00a0.\u00a0Cela signifie que le\u00a0<strong>moteur Brayton d&#8217;origine<\/strong>\u00a0utilisait un\u00a0<strong>compresseur \u00e0\u00a0<\/strong><strong>piston<\/strong>\u00a0et\u00a0<strong>un d\u00e9tendeur \u00e0 piston<\/strong>\u00a0au lieu d&#8217;une turbine \u00e0 gaz et d&#8217;un compresseur \u00e0 gaz.<\/p>\n<p>Aujourd&#8217;hui,\u00a0<strong>les moteurs \u00e0 turbine \u00e0 gaz<\/strong>\u00a0et les\u00a0<strong>turbor\u00e9acteurs modernes \u00e0 air comprim\u00e9<\/strong>\u00a0sont \u00e9galement des moteurs thermiques \u00e0 pression constante. C&#8217;est pourquoi nous d\u00e9crivons leur thermodynamique selon le\u00a0<strong>cycle de Brayton<\/strong>\u00a0.\u00a0En g\u00e9n\u00e9ral, le\u00a0<strong>cycle de Brayton<\/strong>\u00a0d\u00e9crit le fonctionnement d\u2019un\u00a0<strong>moteur thermique \u00e0 pression constante<\/strong>\u00a0.<\/p>\n<p>C&#8217;est l&#8217;un des\u00a0<a title=\"Cycles thermodynamiques\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/thermodynamic-cycles\/\"><strong>cycles thermodynamiques<\/strong><\/a>\u00a0les plus courants\u00a0que l&#8217;on puisse trouver dans les centrales \u00e0 turbine \u00e0 gaz ou dans les avions.\u00a0Contrairement au\u00a0<a title=\"Cycle Carnot - Moteur thermique Carnot\" href=\"https:\/\/www.thermal-engineering.org\/fr\/quest-ce-que-carnot-cycle-moteur-thermique-carnot-definition\/\">cycle de Carnot<\/a>\u00a0, le\u00a0<strong>cycle de Brayton<\/strong>\u00a0n&#8217;ex\u00e9cute pas de\u00a0<a title=\"Processus isothermique\" href=\"https:\/\/www.thermal-engineering.org\/fr\/quel-est-le-processus-isothermique-definition\/\">processus isothermiques<\/a>\u00a0, car ceux-ci doivent \u00eatre effectu\u00e9s tr\u00e8s lentement.\u00a0Dans un\u00a0<strong>cycle de Brayton id\u00e9al<\/strong>\u00a0, le syst\u00e8me qui ex\u00e9cute le cycle subit une s\u00e9rie de quatre processus: deux processus isentropiques (adiabatiques r\u00e9versibles) altern\u00e9s avec deux processus isobares.<\/p>\n<p>Puisque le\u00a0<strong>principe de Carnot<\/strong>\u00a0stipule qu&#8217;aucun moteur ne\u00a0peut \u00eatre plus efficace qu&#8217;un moteur r\u00e9versible (\u00a0<strong>un moteur thermique Carnot<\/strong>\u00a0) fonctionnant entre la m\u00eame temp\u00e9rature \u00e9lev\u00e9e et des\u00a0r\u00e9servoirs \u00e0\u00a0basse temp\u00e9rature, une turbine \u00e0 gaz en\u00a0fonction du cycle Brayton doit avoir une\u00a0efficacit\u00e9 inf\u00e9rieure \u00e0 l&#8217;efficacit\u00e9 Carnot.<\/p>\n<p>Une grande turbine \u00e0 gaz \u00e0 cycle unique produit par exemple, par exemple, 300 m\u00e9gawatts d&#8217;\u00e9nergie \u00e9lectrique et un rendement thermique compris entre 35 et 40%.\u00a0Les installations modernes \u00e0 turbine \u00e0 gaz \u00e0 cycle combin\u00e9 (CCGT), dans lesquelles le cycle thermodynamique est constitu\u00e9 de deux cycles de centrale (par exemple, le cycle de Brayton et le cycle de Rankine), peuvent atteindre un rendement thermique d\u2019environ 55%.<\/p>\n<\/div>\n<\/div>\n<div class=\"lgc-column lgc-grid-parent lgc-grid-50 lgc-tablet-grid-50 lgc-mobile-grid-100 lgc-equal-heights lgc-last\">\n<div class=\"inside-grid-column\">\n<div class=\"su-youtube su-responsive-media-yes\"><iframe class=\"lazy-loaded\" src=\"https:\/\/www.youtube.com\/embed\/zcWkEKNvqCA?\" width=\"340\" height=\"200\" frameborder=\"0\" allowfullscreen=\"allowfullscreen\" data-lazy-type=\"iframe\" data-src=\"https:\/\/www.youtube.com\/embed\/zcWkEKNvqCA?\" data-mce-fragment=\"1\"><\/iframe><\/div>\n<p><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/open-Brayton-cycle-Gas-Turbine-min.png\"><img loading=\"lazy\" class=\"aligncenter size-medium wp-image-17685 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/open-Brayton-cycle-Gas-Turbine-min-249x300.png\" alt=\"cycle de Brayton ouvert - Turbine \u00e0 gaz\" width=\"249\" height=\"300\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/open-Brayton-cycle-Gas-Turbine-min-249x300.png\" \/><\/a><\/p>\n<\/div>\n<\/div>\n<div class=\"lgc-column lgc-grid-parent lgc-grid-100 lgc-tablet-grid-100 lgc-mobile-grid-100 lgc-equal-heights lgc-first lgc-last\">\n<div class=\"inside-grid-column\">\n<div class=\"su-spacer\"><\/div>\n<h2>Cycle de Brayton &#8211; diagramme pV, Ts<\/h2>\n<p>Le\u00a0<strong>cycle de Brayton<\/strong>\u00a0est souvent trac\u00e9 sur un diagramme de volume de pression (diagramme\u00a0<strong>pV<\/strong>\u00a0) et sur un diagramme de temp\u00e9rature d&#8217;entropie (\u00a0<strong>diagramme Ts<\/strong>\u00a0).<\/p>\n<figure id=\"attachment_17694\" class=\"wp-caption alignright\" aria-describedby=\"caption-attachment-17694\"><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-Cycle-Ts-diagram.png\"><img loading=\"lazy\" class=\"size-medium wp-image-17694 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-Cycle-Ts-diagram-300x266.png\" alt=\"Brayton Cycle - Diagramme Ts\" width=\"300\" height=\"266\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-Cycle-Ts-diagram-300x266.png\" \/><\/a><figcaption id=\"caption-attachment-17694\" class=\"wp-caption-text\">Brayton Cycle &#8211; Diagramme Ts<\/figcaption><\/figure>\n<p>Trac\u00e9s sur un\u00a0<strong>diagramme de volume de pression<\/strong>\u00a0, les processus isobares suivent les lignes isobares du gaz (les lignes horizontales), les processus adiabatiques se d\u00e9placent entre ces lignes horizontales et la zone d\u00e9limit\u00e9e par la piste cyclable compl\u00e8te repr\u00e9sente le\u00a0<strong>travail total<\/strong>\u00a0pouvant \u00eatre effectu\u00e9 pendant une journ\u00e9e. cycle.<\/p>\n<p><span>Le\u00a0<\/span><strong><span>diagramme temp\u00e9rature-entropie<\/span><\/strong><span>\u00a0(diagramme Ts) dans laquelle l&#8217;\u00e9tat thermodynamique est d\u00e9fini par un point sur un graphique avec l&#8217;\u00a0<\/span><a title=\"Entropie sp\u00e9cifique\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/what-is-energy-physics\/what-is-entropy\/specific-entropy\/\"><span>entropie d\u00e9termin\u00e9e<\/span><\/a><span>\u00a0(s) en\u00a0tant que l&#8217;axe horizontal et la\u00a0<\/span><a title=\"\u00c9chelle Kelvin - Temp\u00e9rature absolue\" href=\"https:\/\/www.nuclear-power.com\/nuclear-engineering\/thermodynamics\/thermodynamic-properties\/what-is-temperature-physics\/kelvin-scale-absolute-temperature\/\"><span>temp\u00e9rature absolue<\/span><\/a><span>\u00a0(T) comme axe vertical.\u00a0Les diagrammes Ts sont un outil utile et courant, notamment parce qu&#8217;il permet de visualiser le\u00a0<\/span><strong><span>transfert de chaleur au<\/span><\/strong><span>\u00a0cours d&#8217;un processus.\u00a0Pour les processus r\u00e9versibles (id\u00e9aux), l&#8217;aire sous la courbe Ts d&#8217;un processus est la\u00a0<\/span><strong><span>chaleur transf\u00e9r\u00e9e<\/span><\/strong><span>\u00a0au syst\u00e8me pendant ce processus.<\/span><\/p>\n<figure id=\"attachment_17704\" class=\"wp-caption aligncenter\" aria-describedby=\"caption-attachment-17704\"><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-cycle-reheat-and-regeneration.png\"><img loading=\"lazy\" class=\"size-full wp-image-17704 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-cycle-reheat-and-regeneration.png\" alt=\"Diagramme Ts du cycle de Brayton avec r\u00e9chauffage et r\u00e9g\u00e9n\u00e9ration\" width=\"668\" height=\"579\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-cycle-reheat-and-regeneration.png\" \/><\/a><figcaption id=\"caption-attachment-17704\" class=\"wp-caption-text\"><span>Diagramme Ts du cycle de Brayton avec r\u00e9chauffage et r\u00e9g\u00e9n\u00e9ration<\/span><\/figcaption><\/figure>\n<figure id=\"attachment_17709\" class=\"wp-caption aligncenter\" aria-describedby=\"caption-attachment-17709\"><a href=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-cycle-reheat-intercooling-regeneration.png\"><img loading=\"lazy\" class=\"size-full wp-image-17709 lazy-loaded\" src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-cycle-reheat-intercooling-regeneration.png\" alt=\"Cycle de Brayton - r\u00e9chauffage - refroidissement interm\u00e9diaire - r\u00e9g\u00e9n\u00e9ration\" width=\"772\" height=\"660\" data-lazy-type=\"image\" data-src=\"https:\/\/thermal-engineering.org\/wp-content\/uploads\/2019\/05\/Brayton-cycle-reheat-intercooling-regeneration.png\" \/><\/a><figcaption id=\"caption-attachment-17709\" class=\"wp-caption-text\"><span>Diagramme Ts du cycle de Brayton avec r\u00e9chauffage, refroidissement interm\u00e9diaire et r\u00e9g\u00e9n\u00e9ration thermique<\/span><\/figcaption><\/figure>\n<\/div>\n<\/div>\n<p>&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;&#8230;.<\/p>\n<p>Cet article est bas\u00e9 sur la traduction automatique de l&#8217;article original en anglais. Pour plus d&#8217;informations, voir l&#8217;article en anglais. Pouvez vous nous aider Si vous souhaitez corriger la traduction, envoyez-la \u00e0 l&#8217;adresse: translations@nuclear-power.com ou remplissez le formulaire de traduction en ligne. Nous appr\u00e9cions votre aide, nous mettrons \u00e0 jour la traduction le plus rapidement possible. Merci<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Cycle de Brayton &#8211; Diagramme pV &#8211; Ts.\u00a0Le cycle de Brayton est souvent trac\u00e9 sur un diagramme de volume de pression (diagramme pV) et sur un diagramme de temp\u00e9rature d&#8217;entropie (diagramme Ts).\u00a0G\u00e9nie thermique Brayton Cycle &#8211; Moteur \u00e0 turbine En 1872, un ing\u00e9nieur am\u00e9ricain,\u00a0George Bailey Brayton, a fait\u00a0progresser l\u2019\u00e9tude des\u00a0moteurs thermiques\u00a0en brevetant un moteur \u00e0 &#8230; <a title=\"Qu&#8217;est-ce que le cycle de Brayton &#8211; Diagramme pV-ts &#8211; D\u00e9finition\" class=\"read-more\" href=\"https:\/\/www.thermal-engineering.org\/fr\/quest-ce-que-le-cycle-de-brayton-diagramme-pv-ts-definition\/\" aria-label=\"En savoir plus sur Qu&#8217;est-ce que le cycle de Brayton &#8211; Diagramme pV-ts &#8211; D\u00e9finition\">Lire la suite<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":[],"categories":[8],"tags":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v15.4 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Qu&#039;est-ce que le cycle de Brayton - Diagramme pV-ts - D\u00e9finition<\/title>\n<meta name=\"description\" content=\"Cycle de Brayton - Diagramme pV - Ts. 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