{"id":784,"date":"2024-06-07T09:52:54","date_gmt":"2024-06-07T01:52:54","guid":{"rendered":"https:\/\/www.cmecsteel.com\/?post_type=products&#038;p=784"},"modified":"2024-08-02T10:36:06","modified_gmt":"2024-08-02T02:36:06","slug":"high-efficiency-industrial-heat-exchanger","status":"publish","type":"products","link":"https:\/\/www.cmecsteel.com\/cs\/products\/high-efficiency-industrial-heat-exchanger\/","title":{"rendered":"Vysoce v\u00fdkonn\u00fd pl\u00e1\u0161\u0165ov\u00fd a trubkov\u00fd v\u00fdm\u011bn\u00edk tepla: \u0158e\u0161en\u00ed probl\u00e9m\u016f s \u00fa\u010dinnost\u00ed a trvanlivost\u00ed v chemick\u00e9m pr\u016fmyslu"},"content":{"rendered":"<p>V\u00fdm\u011bn\u00edk tepla je za\u0159\u00edzen\u00ed, kter\u00e9 p\u0159ed\u00e1v\u00e1 \u010d\u00e1st tepla z hork\u00e9 kapaliny do studen\u00e9 kapaliny, zn\u00e1m\u00e9 tak\u00e9 jako v\u00fdm\u011bn\u00edk tepla. V\u00fdm\u011bn\u00edky tepla hraj\u00ed d\u016fle\u017eitou roli v chemick\u00e9m, ropn\u00e9m, energetick\u00e9m, potravin\u00e1\u0159sk\u00e9m a mnoha dal\u0161\u00edch pr\u016fmyslov\u00fdch v\u00fdrob\u00e1ch. V chemick\u00e9 v\u00fdrob\u011b se v\u00fdm\u011bn\u00edky tepla mohou pou\u017e\u00edvat jako oh\u0159\u00edva\u010de, chladi\u010de, kondenz\u00e1tory, v\u00fdparn\u00edky a p\u0159eva\u0159ova\u010de a maj\u00ed \u0161irok\u00e9 vyu\u017eit\u00ed.<\/p>\n<p>Vhodn\u00e9 pro v\u00fdm\u011bn\u00edky tepla s r\u016fzn\u00fdmi m\u00e9dii, pracovn\u00edmi podm\u00ednkami, teplotami a tlaky a s r\u016fzn\u00fdmi konstruk\u010dn\u00edmi typy. Specifick\u00e1 klasifikace v\u00fdm\u011bn\u00edk\u016f tepla je n\u00e1sleduj\u00edc\u00ed:<br \/>\nKlasifikace na z\u00e1klad\u011b princip\u016f p\u0159enosu tepla<br \/>\n1. Mezist\u011bnov\u00fd v\u00fdm\u011bn\u00edk tepla je typ v\u00fdm\u011bn\u00edku tepla, kde v prostoru odd\u011blen\u00e9m st\u011bnou proud\u00ed dv\u011b kapaliny o r\u016fzn\u00fdch teplot\u00e1ch, p\u0159i\u010dem\u017e na st\u011bn\u011b doch\u00e1z\u00ed k veden\u00ed tepla a na povrchu st\u011bny ke konvekci. Teplo se p\u0159en\u00e1\u0161\u00ed mezi ob\u011bma kapalinami. Mezi st\u011bnov\u00e9 v\u00fdm\u011bn\u00edky tepla pat\u0159\u00ed pl\u00e1\u0161\u0165ov\u00e9, trubkov\u00e9, n\u00e1trubkov\u00e9 a dal\u0161\u00ed typy v\u00fdm\u011bn\u00edk\u016f tepla. St\u011bnov\u00e9 v\u00fdm\u011bn\u00edky tepla jsou nejpou\u017e\u00edvan\u011bj\u0161\u00edmi typy v\u00fdm\u011bn\u00edk\u016f tepla.<br \/>\n2. Akumula\u010dn\u00ed v\u00fdm\u011bn\u00edk tepla je tepeln\u00e9 t\u011bleso slo\u017een\u00e9 z pevn\u00fdch materi\u00e1l\u016f, kter\u00e9 p\u0159en\u00e1\u0161\u00ed teplo z vysokoteplotn\u00ed kapaliny do n\u00edzkoteplotn\u00ed kapaliny. Hork\u00e9 m\u00e9dium nejprve dos\u00e1hne ur\u010dit\u00e9 teploty zah\u0159\u00e1t\u00edm pevn\u00e9ho materi\u00e1lu a pot\u00e9 je pevn\u00fdm materi\u00e1lem oh\u0159\u00edv\u00e1no studen\u00e9 m\u00e9dium, aby bylo dosa\u017eeno \u00fa\u010delu p\u0159enosu tepla. Regenera\u010dn\u00ed v\u00fdm\u011bn\u00edky tepla zahrnuj\u00ed rota\u010dn\u00ed a ventilov\u00e9 sp\u00ednac\u00ed typy.<br \/>\n3. Nep\u0159\u00edm\u00fd v\u00fdm\u011bn\u00edk tepla s p\u0159ipojen\u00edm kapaliny Nep\u0159\u00edm\u00fd v\u00fdm\u011bn\u00edk tepla s p\u0159ipojen\u00edm kapaliny je v\u00fdm\u011bn\u00edk tepla, kter\u00fd spojuje dva povrchov\u00e9 v\u00fdm\u011bn\u00edky tepla s cirkuluj\u00edc\u00edm teplonosn\u00fdm m\u00e9diem. Nosi\u010d tepla cirkuluje mezi v\u00fdm\u011bn\u00edkem tepla s vysokoteplotn\u00ed kapalinou a n\u00edzkoteplotn\u00ed kapalinou, p\u0159i\u010dem\u017e p\u0159ij\u00edm\u00e1 teplo ve vysokoteplotn\u00ed kapalin\u011b a uvol\u0148uje teplo do n\u00edzkoteplotn\u00ed kapaliny ve v\u00fdm\u011bn\u00edku tepla s n\u00edzkoteplotn\u00ed kapalinou.<br \/>\n4. P\u0159\u00edm\u00fd kontaktn\u00ed v\u00fdm\u011bn\u00edk tepla, zn\u00e1m\u00fd tak\u00e9 jako hybridn\u00ed v\u00fdm\u011bn\u00edk tepla, je za\u0159\u00edzen\u00ed, kde se dv\u011b kapaliny dost\u00e1vaj\u00ed do p\u0159\u00edm\u00e9ho kontaktu a vz\u00e1jemn\u011b se m\u00eds\u00ed za \u00fa\u010delem v\u00fdm\u011bny tepla, jako je nap\u0159\u00edklad v\u011b\u017e na studenou vodu, plynov\u00fd kondenz\u00e1tor atd.<br \/>\n5. Sm\u00ed\u0161en\u00fd v\u00fdm\u011bn\u00edk tepla je za\u0159\u00edzen\u00ed, kter\u00e9 kombinuje dva typy p\u0159enosu tepla: nep\u0159\u00edm\u00fd p\u0159enos tepla z povrchu p\u00e1ry a p\u0159\u00edm\u00fd p\u0159enos tepla sm\u011bsn\u00fdm proud\u011bn\u00edm vody. Ve srovn\u00e1n\u00ed s nep\u0159\u00edm\u00fdm p\u0159enosem tepla na povrchu p\u00e1ry m\u00e1 vy\u0161\u0161\u00ed \u00fa\u010dinnost p\u0159enosu tepla; ve srovn\u00e1n\u00ed s p\u0159\u00edm\u00fdm sm\u011b\u0161ov\u00e1n\u00edm p\u00e1ry a vody p\u0159i v\u00fdm\u011bn\u011b tepla m\u00e1 vy\u0161\u0161\u00ed stabilitu a ni\u017e\u0161\u00ed jednotkovou hlu\u010dnost.<br \/>\nRozd\u011blen\u00ed podle \u00fa\u010delu<br \/>\n1. Topn\u00e9 t\u011bleso oh\u0159\u00edv\u00e1 kapalinu na pot\u0159ebnou teplotu, ale nedoch\u00e1z\u00ed v n\u011bm k \u017e\u00e1dn\u00e9 f\u00e1zov\u00e9 zm\u011bn\u011b.<br \/>\n2. P\u0159edeh\u0159\u00edva\u010d p\u0159edem oh\u0159\u00edv\u00e1 kapalinu a poskytuje standardn\u00ed procesn\u00ed parametry pro procesn\u00ed operace.<br \/>\n3. P\u0159eh\u0159\u00edv\u00e1k se pou\u017e\u00edv\u00e1 k oh\u0159evu kapaliny (procesn\u00edho plynu nebo p\u00e1ry) do p\u0159eh\u0159\u00e1t\u00e9ho stavu. 4. V\u00fdparn\u00edk se pou\u017e\u00edv\u00e1 k oh\u0159evu kapaliny na teplotu vy\u0161\u0161\u00ed ne\u017e bod varu, co\u017e zp\u016fsob\u00ed odpa\u0159ov\u00e1n\u00ed kapaliny, obvykle s f\u00e1zov\u00fdmi zm\u011bnami.<br \/>\nRozd\u011blen\u00ed podle struktury<br \/>\nLze je rozd\u011blit na: v\u00fdm\u011bn\u00edky tepla s plovouc\u00ed hlavou, pevn\u00e9 trubkov\u00e9 deskov\u00e9 v\u00fdm\u011bn\u00edky tepla, trubkov\u00e9 deskov\u00e9 v\u00fdm\u011bn\u00edky tepla ve tvaru U, deskov\u00e9 v\u00fdm\u011bn\u00edky tepla atd.<\/p>\n<p>V\u00fdm\u011bn\u00edky tepla lze rozd\u011blit na t\u0159i typy podle r\u016fzn\u00fdch zp\u016fsob\u016f p\u0159enosu tepla: hybridn\u00ed, akumula\u010dn\u00ed a mezist\u011bnov\u00e9.<\/p>\n<p>Hybridn\u00ed v\u00fdm\u011bn\u00edk tepla je v\u00fdm\u011bn\u00edk tepla, kter\u00fd vym\u011b\u0148uje teplo p\u0159\u00edm\u00fdm kontaktem a m\u00edsen\u00edm studen\u00e9 a hork\u00e9 kapaliny, zn\u00e1m\u00fd tak\u00e9 jako kontaktn\u00ed v\u00fdm\u011bn\u00edk tepla. Proto\u017ee po sm\u00edch\u00e1n\u00ed a v\u00fdm\u011bn\u011b tepla mezi dv\u011bma kapalinami je nutn\u00e9 v\u010dasn\u00e9 odd\u011blen\u00ed, je tento typ v\u00fdm\u011bn\u00edku tepla vhodn\u00fd pro v\u00fdm\u011bnu tepla mezi plynn\u00fdmi a kapaln\u00fdmi kapalinami. Nap\u0159\u00edklad v chladic\u00edch v\u011b\u017e\u00edch pou\u017e\u00edvan\u00fdch v chemick\u00fdch a elektr\u00e1rensk\u00fdch provozech se hork\u00e1 voda st\u0159\u00edk\u00e1 shora dol\u016f, zat\u00edmco studen\u00fd vzduch se nas\u00e1v\u00e1 zdola nahoru. Na povrchu vodn\u00edho filmu nebo kapi\u010dek n\u00e1pl\u0148ov\u00e9ho materi\u00e1lu doch\u00e1z\u00ed ke kontaktu hork\u00e9 vody a studen\u00e9ho vzduchu za \u00fa\u010delem v\u00fdm\u011bny tepla. Hork\u00e1 voda se ochlad\u00ed, studen\u00fd vzduch se oh\u0159eje a pot\u00e9 se v\u010das odd\u011bl\u00ed v z\u00e1vislosti na rozd\u00edlu hustoty obou kapalin.<\/p>\n<p>Tepeln\u00fd akumula\u010dn\u00ed v\u00fdm\u011bn\u00edk je typ tepeln\u00e9ho v\u00fdm\u011bn\u00edku, kter\u00fd vyu\u017e\u00edv\u00e1 st\u0159\u00eddav\u00e9ho proud\u011bn\u00ed studen\u00e9 a hork\u00e9 kapaliny p\u0159es povrch tepeln\u011b akumula\u010dn\u00edho materi\u00e1lu (obalu) v tepeln\u00e9 akumula\u010dn\u00ed komo\u0159e za \u00fa\u010delem v\u00fdm\u011bny tepla, jako je tepeln\u00e1 akumula\u010dn\u00ed komora pro p\u0159edeh\u0159ev vzduchu pod koks\u00e1renskou pec\u00ed. Tento typ tepeln\u00e9ho v\u00fdm\u011bn\u00edku se pou\u017e\u00edv\u00e1 p\u0159edev\u0161\u00edm k rekuperaci a vyu\u017eit\u00ed tepla z vysokoteplotn\u00edch spalin. Podobn\u00e9 za\u0159\u00edzen\u00ed zam\u011b\u0159en\u00e9 na zp\u011btn\u00e9 z\u00edsk\u00e1v\u00e1n\u00ed chladn\u00e9 energie se naz\u00fdv\u00e1 chladic\u00ed za\u0159\u00edzen\u00ed, kter\u00e9 se \u010dasto pou\u017e\u00edv\u00e1 v za\u0159\u00edzen\u00edch na odd\u011blov\u00e1n\u00ed vzduchu.<\/p>\n<p>St\u011bnov\u00fd v\u00fdm\u011bn\u00edk tepla je typ v\u00fdm\u011bn\u00edku tepla, kde jsou studen\u00e1 a hork\u00e1 kapalina odd\u011bleny pevn\u00fdmi st\u011bnami a v\u00fdm\u011bna tepla prob\u00edh\u00e1 p\u0159es st\u011bny. Proto je tak\u00e9 zn\u00e1m jako povrchov\u00fd typ v\u00fdm\u011bn\u00edku tepla a tento typ v\u00fdm\u011bn\u00edku tepla je nejpou\u017e\u00edvan\u011bj\u0161\u00ed.<\/p>\n<p>St\u011bnov\u00e9 v\u00fdm\u011bn\u00edky tepla lze rozd\u011blit na trubkov\u00e9, deskov\u00e9 a dal\u0161\u00ed typy podle struktury povrchu pro p\u0159enos tepla. Trubkov\u00e9 v\u00fdm\u011bn\u00edky tepla pou\u017e\u00edvaj\u00ed jako teplosm\u011bnnou plochu povrch trubky, v\u010detn\u011b hadovit\u00fdch trubkov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla, trubkov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla a pl\u00e1\u0161\u0165ov\u00fdch a trubkov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla; deskov\u00e9 v\u00fdm\u011bn\u00edky tepla pou\u017e\u00edvaj\u00ed jako teplosm\u011bnnou plochu povrch desky, v\u010detn\u011b deskov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla, spir\u00e1lov\u00fdch deskov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla, deskov\u00fdch lamelov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla, deskov\u00fdch pl\u00e1\u0161\u0165ov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla a de\u0161tn\u00edkov\u00fdch deskov\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla atd.; dal\u0161\u00ed typy v\u00fdm\u011bn\u00edk\u016f tepla jsou navr\u017eeny tak, aby spl\u0148ovaly ur\u010dit\u00e9 zvl\u00e1\u0161tn\u00ed po\u017eadavky, jako jsou v\u00fdm\u011bn\u00edky tepla se se\u0161kraban\u00fdm povrchem, rota\u010dn\u00ed deskov\u00e9 v\u00fdm\u011bn\u00edky tepla a chladi\u010de vzduchu.<\/p>\n<p>Obecn\u011b existuj\u00ed dva typy relativn\u00edch sm\u011br\u016f proud\u011bn\u00ed kapalin ve v\u00fdm\u011bn\u00edc\u00edch tepla: p\u0159\u00edm\u00fd a zp\u011btn\u00fd tok. P\u0159i proud\u011bn\u00ed po sm\u011bru toku je rozd\u00edl teplot mezi ob\u011bma kapalinami na vstupu maxim\u00e1ln\u00ed a postupn\u011b se sni\u017euje pod\u00e9l teplosm\u011bnn\u00e9 plochy, a\u017e je rozd\u00edl teplot na v\u00fdstupu minim\u00e1ln\u00ed. P\u0159i zp\u011btn\u00e9m proud\u011bn\u00ed je rozlo\u017een\u00ed teplotn\u00edho rozd\u00edlu mezi ob\u011bma kapalinami pod\u00e9l teplosm\u011bnn\u00e9 plochy relativn\u011b rovnom\u011brn\u00e9. Za p\u0159edpokladu, \u017ee vstupn\u00ed a v\u00fdstupn\u00ed teploty studen\u00e9 a hork\u00e9 kapaliny jsou konstantn\u00ed, kdy\u017e u obou kapalin nedoch\u00e1z\u00ed k f\u00e1zov\u00e9mu p\u0159echodu, je maxim\u00e1ln\u00ed a minim\u00e1ln\u00ed rovnom\u011brn\u00fd teplotn\u00ed rozd\u00edl p\u0159i protiproud\u00e9m proud\u011bn\u00ed stejn\u00fd.<\/p>\n<p>Za p\u0159edpokladu, \u017ee dojde ke stejn\u00e9mu p\u0159enosu tepla, m\u016f\u017ee pou\u017eit\u00ed protiproudu zv\u00fd\u0161it rovnom\u011brn\u00fd teplotn\u00ed rozd\u00edl a zmen\u0161it teplosm\u011bnnou plochu v\u00fdm\u011bn\u00edku tepla; pokud se teplosm\u011bnn\u00e1 plocha nezm\u011bn\u00ed, m\u016f\u017ee pou\u017eit\u00ed protiproudu sn\u00ed\u017eit spot\u0159ebu topn\u00fdch nebo chladic\u00edch kapalin. Prvn\u00ed zp\u016fsob m\u016f\u017ee u\u0161et\u0159it n\u00e1klady na za\u0159\u00edzen\u00ed, zat\u00edmco druh\u00fd zp\u016fsob m\u016f\u017ee u\u0161et\u0159it provozn\u00ed n\u00e1klady, tak\u017ee protiproud\u00e1 v\u00fdm\u011bna tepla by se m\u011bla p\u0159i n\u00e1vrhu nebo v\u00fdrobn\u00edm pou\u017eit\u00ed pou\u017e\u00edvat co nejv\u00edce.<\/p>\n<p>P\u0159i f\u00e1zov\u00e9 zm\u011bn\u011b (varu nebo kondenzaci) mezi studenou a horkou kapalinou, kdy se p\u0159i f\u00e1zov\u00e9 zm\u011bn\u011b uvol\u0148uje nebo pohlcuje pouze latentn\u00ed teplo vypa\u0159ov\u00e1n\u00ed, se teplota samotn\u00e9 kapaliny nem\u011bn\u00ed. Proto jsou vstupn\u00ed a v\u00fdstupn\u00ed teplota kapaliny stejn\u00e9. V tomto okam\u017eiku je rozd\u00edl teplot mezi ob\u011bma kapalinami nez\u00e1visl\u00fd na volb\u011b sm\u011bru proud\u011bn\u00ed kapaliny. Krom\u011b vzestupn\u00e9ho a sestupn\u00e9ho sm\u011bru proud\u011bn\u00ed existuj\u00ed tak\u00e9 sm\u011bry proud\u011bn\u00ed, jako je p\u0159\u00ed\u010dn\u00e9 proud\u011bn\u00ed a turbulence.<\/p>\n<p>Sn\u00ed\u017een\u00ed tepeln\u00e9ho odporu v mezist\u011bnov\u00fdch v\u00fdm\u011bn\u00edc\u00edch tepla za \u00fa\u010delem zlep\u0161en\u00ed sou\u010dinitele prostupu tepla je d\u016fle\u017eitou ot\u00e1zkou p\u0159i p\u0159enosu tepla. Tepeln\u00fd odpor poch\u00e1z\u00ed p\u0159edev\u0161\u00edm z tenk\u00e9 vrstvy kapaliny (tzv. mezn\u00ed vrstvy) p\u0159ilnut\u00e9 k teplosm\u011bnn\u00e9mu povrchu na obou stran\u00e1ch mezist\u011bny a z vrstvy zne\u010di\u0161t\u011bn\u00ed, kter\u00e1 se na obou stran\u00e1ch st\u011bny vytvo\u0159\u00ed b\u011bhem pou\u017e\u00edv\u00e1n\u00ed v\u00fdm\u011bn\u00edku tepla. Tepeln\u00fd odpor kovov\u00e9 st\u011bny je relativn\u011b mal\u00fd.<\/p>\n<p>Zv\u00fd\u0161en\u00ed rychlosti proud\u011bn\u00ed a rozru\u0161en\u00ed tekutiny m\u016f\u017ee zten\u010dit mezn\u00ed vrstvu, sn\u00ed\u017eit tepeln\u00fd odpor a zlep\u0161it sou\u010dinitel p\u0159estupu tepla. Zv\u00fd\u0161en\u00ed rychlosti proud\u011bn\u00ed kapaliny v\u0161ak zv\u00fd\u0161\u00ed spot\u0159ebu energie, proto je t\u0159eba p\u0159i n\u00e1vrhu spravedliv\u011b koordinovat sn\u00ed\u017een\u00ed tepeln\u00e9ho odporu a sn\u00ed\u017een\u00ed spot\u0159eby energie. Pro sn\u00ed\u017een\u00ed tepeln\u00e9ho odporu ne\u010distot je mo\u017en\u00e9 tvorbu ne\u010distot odd\u00e1lit a povrch pro p\u0159enos tepla v\u010das vy\u010distit.<\/p>\n<p>V\u00fdm\u011bn\u00edky tepla se obecn\u011b vyr\u00e1b\u011bj\u00ed z kovov\u00fdch materi\u00e1l\u016f, z nich\u017e se pro v\u00fdrobu st\u0159edotlak\u00fdch a n\u00edzkotlak\u00fdch v\u00fdm\u011bn\u00edk\u016f tepla pou\u017e\u00edvaj\u00ed p\u0159edev\u0161\u00edm uhl\u00edkov\u00e1 a n\u00edzkolegovan\u00e1 ocel; krom\u011b toho, \u017ee se pou\u017e\u00edvaj\u00ed p\u0159edev\u0161\u00edm pro r\u016fzn\u00e9 podm\u00ednky odolnosti proti korozi, lze jako materi\u00e1l odoln\u00fd v\u016f\u010di vysok\u00fdm a n\u00edzk\u00fdm teplot\u00e1m pou\u017e\u00edt tak\u00e9 austenitickou nerezovou ocel; M\u011b\u010f, hlin\u00edk a jejich slitiny se b\u011b\u017en\u011b pou\u017e\u00edvaj\u00ed p\u0159i v\u00fdrob\u011b n\u00edzkoteplotn\u00edch v\u00fdm\u011bn\u00edk\u016f tepla; Slitina niklu se pou\u017e\u00edv\u00e1 v podm\u00ednk\u00e1ch vysok\u00fdch teplot; Krom\u011b v\u00fdroby t\u011bsnic\u00edch d\u00edl\u016f se k v\u00fdrob\u011b v\u00fdm\u011bn\u00edk\u016f tepla odoln\u00fdch proti korozi pou\u017e\u00edvaj\u00ed i n\u011bkter\u00e9 nekovov\u00e9 materi\u00e1ly, jako jsou grafitov\u00e9 v\u00fdm\u011bn\u00edky tepla, fluoroplastov\u00e9 v\u00fdm\u011bn\u00edky tepla a sklen\u011bn\u00e9 v\u00fdm\u011bn\u00edky tepla.<\/p>\n<p>Hlavn\u00ed oblasti pou\u017eit\u00ed v\u00fdm\u011bn\u00edk\u016f tepla<br \/>\n1\u3001 Chemick\u00fd pr\u016fmysl<br \/>\nV\u00fdm\u011bn\u00edky tepla jsou \u0161iroce pou\u017e\u00edv\u00e1ny v chemick\u00e9m pr\u016fmyslu a lze je pou\u017e\u00edt v mnoha procesech, jako je kondenzace, odpa\u0159ov\u00e1n\u00ed, krystalizace, su\u0161en\u00ed a pyrol\u00fdza. Mezi b\u011b\u017en\u00e9 aplikace pat\u0159\u00ed oh\u0159ev p\u00e1ry, rekuperace chladic\u00ed kapaliny, koncentrace, oh\u0159ev a chlazen\u00ed atd. P\u0159enosu tepla lze dos\u00e1hnout prost\u0159ednictv\u00edm v\u00fdm\u011bn\u00edk\u016f tepla, co\u017e m\u016f\u017ee sn\u00ed\u017eit emise \u0161kodliv\u00fdch plyn\u016f a zv\u00fd\u0161it \u00fa\u010dinnost v\u00fdroby.<br \/>\n2\u3001 Energetick\u00fd pr\u016fmysl<br \/>\nV energetick\u00e9m pr\u016fmyslu se v\u00fdm\u011bn\u00edky tepla pou\u017e\u00edvaj\u00ed zejm\u00e9na pro ropu, zemn\u00ed plyn, jadernou energii, v\u011btrnou energii, sol\u00e1rn\u00ed energii atd. V\u00fdm\u011bn\u00edky tepla lze pou\u017e\u00edt k oh\u0159evu, chlazen\u00ed a destilaci ropy a zemn\u00edho plynu. Mohou zp\u011btn\u011b z\u00edsk\u00e1vat odpadn\u00ed teplo a poskytovat tepelnou energii jin\u00fdm za\u0159\u00edzen\u00edm, \u010d\u00edm\u017e se dosahuje efektivn\u00edho vyu\u017eit\u00ed energie.<br \/>\n3\u3001 Pr\u016fmysl ochrany \u017eivotn\u00edho prost\u0159ed\u00ed<br \/>\nV\u00fdm\u011bn\u00edky tepla maj\u00ed tak\u00e9 d\u016fle\u017eit\u00e9 vyu\u017eit\u00ed v pr\u016fmyslu ochrany \u017eivotn\u00edho prost\u0159ed\u00ed, kde je lze pou\u017e\u00edt v r\u016fzn\u00fdch aspektech, jako je \u010di\u0161t\u011bn\u00ed odpadn\u00edch vod, \u010di\u0161t\u011bn\u00ed plyn\u016f a su\u0161en\u00ed kal\u016f. Pou\u017eit\u00ed v\u00fdm\u011bn\u00edk\u016f tepla m\u016f\u017ee sn\u00ed\u017eit vypou\u0161t\u011bn\u00ed odpadn\u00edch plyn\u016f, odpadn\u00edch vod a strusky, sn\u00ed\u017eit zne\u010di\u0161t\u011bn\u00ed a zlep\u0161it \u00fa\u010dinnost ochrany \u017eivotn\u00edho prost\u0159ed\u00ed.<br \/>\n4\u3001 Potravin\u00e1\u0159sk\u00fd a farmaceutick\u00fd pr\u016fmysl<br \/>\nV pr\u016fmyslov\u00fdch odv\u011btv\u00edch, jako je potravin\u00e1\u0159stv\u00ed a l\u00e9ka\u0159stv\u00ed, se v\u00fdm\u011bn\u00edky tepla pou\u017e\u00edvaj\u00ed hlavn\u011b k oh\u0159evu, chlazen\u00ed, odpa\u0159ov\u00e1n\u00ed, koncentraci a dal\u0161\u00edm proces\u016fm. P\u0159i zpracov\u00e1n\u00ed potravin lze v\u00fdm\u011bn\u00edky tepla pou\u017e\u00edt k dezinfekci a sterilizaci, co\u017e zlep\u0161uje kvalitu a bezpe\u010dnost potravin; ve farmaceutick\u00e9m pr\u016fmyslu mohou v\u00fdm\u011bn\u00edky tepla regulovat reak\u010dn\u00ed teplotu, dos\u00e1hnout p\u0159esn\u00e9 v\u00fdroby l\u00e9k\u016f a zlep\u0161it kvalitu v\u00fdrobk\u016f.<br \/>\n5\u3001 Stavebnictv\u00ed<br \/>\nVe stavebnictv\u00ed se v\u00fdm\u011bn\u00edky tepla pou\u017e\u00edvaj\u00ed p\u0159edev\u0161\u00edm v oborech, jako je vzduchotechnika a klimatizace. Pomoc\u00ed v\u00fdm\u011bn\u00edku tepla lze dos\u00e1hnout oh\u0159evu, chlazen\u00ed, odvlh\u010dov\u00e1n\u00ed a dal\u0161\u00edch funkc\u00ed v situac\u00edch, kdy je velk\u00fd teplotn\u00ed rozd\u00edl mezi interi\u00e9rem a exteri\u00e9rem, co\u017e zlep\u0161uje vnit\u0159n\u00ed prost\u0159ed\u00ed a zvy\u0161uje komfort.<\/p>\n<p><span>Kontaktn\u00ed informace pro dotazy t\u00fdkaj\u00edc\u00ed se v\u00fdm\u011bn\u00edk\u016f tepla v pl\u00e1\u0161t\u00edch a trubk\u00e1ch<\/span><\/p>\n<p><span>Pro v\u00edce informac\u00ed o pl\u00e1\u0161\u0165ov\u00e9m a trubkov\u00e9m v\u00fdm\u011bn\u00edku tepla nebo pro z\u00edsk\u00e1n\u00ed \u0159e\u0161en\u00ed na m\u00edru n\u00e1s pros\u00edm kontaktujte:<\/span><\/p>\n<ul>\n<li><span> Kontaktn\u00ed osoba: Frank<\/span><\/li>\n<li><span> Tel: 86-510-82305188-8060<\/span><\/li>\n<li><span> Mobil: 86-18605101203<\/span><\/li>\n<li><span> Mail: frankgu@cmecwuxi.com<\/span><\/li>\n<li><span> Adresa: 15-16F, budova A10, \u010d. 777, JianZhu West Road, Binhu District, Wuxi, Jiangsu, 214072. P.R. China<\/span><\/li>\n<\/ul>\n<p><span>T\u011b\u0161\u00edme se na spolupr\u00e1ci s v\u00e1mi a na poskytov\u00e1n\u00ed spolehliv\u00e9 podpory a slu\u017eeb pro va\u0161e podnik\u00e1n\u00ed.<\/span><\/p>","protected":false},"excerpt":{"rendered":"<p>Shell and Tube Heat Exchanger je hlavn\u00edm produktem spole\u010dnosti CHINA MACHINERY ENGINEERING WUXI CO., LTD. Jedn\u00e1 se o kl\u00ed\u010dov\u00fd v\u00fdrobek \u0161iroce pou\u017e\u00edvan\u00fd v mnoha pr\u016fmyslov\u00fdch odv\u011btv\u00edch a aplika\u010dn\u00edch sc\u00e9n\u00e1\u0159\u00edch, jako je chemick\u00e9 zpracov\u00e1n\u00ed, rafinace ropy a v\u00fdroba energie.<\/p>","protected":false},"featured_media":785,"template":"","adweb_product_categories":[53],"adweb_product_tags":[139,109,143,142,141,140],"gallery":[787,788,789,790,791,792,793,794,795,796,797,798,799],"order":"0","acf":[],"_links":{"self":[{"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/adweb_products\/784"}],"collection":[{"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/adweb_products"}],"about":[{"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/types\/products"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/media\/785"}],"wp:attachment":[{"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/media?parent=784"}],"wp:term":[{"taxonomy":"adweb_product_cat","embeddable":true,"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/adweb_product_categories?post=784"},{"taxonomy":"adweb_product_tag","embeddable":true,"href":"https:\/\/www.cmecsteel.com\/cs\/wp-json\/wp\/v2\/adweb_product_tags?post=784"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}