{"id":6622,"date":"2015-05-26T12:08:32","date_gmt":"2015-05-26T10:08:32","guid":{"rendered":"https:\/\/blog.wika.com\/de\/?p=6622"},"modified":"2022-05-12T15:15:11","modified_gmt":"2022-05-12T13:15:11","slug":"neues-schutzrohr-in-scrutonwell-design","status":"publish","type":"post","link":"https:\/\/blog.wika.com\/de\/produkte\/temperatur-produkte\/neues-schutzrohr-in-scrutonwell-design\/","title":{"rendered":"Neues Schutzrohr in ScrutonWell \u00ae-Design"},"content":{"rendered":"<p><strong>Zur Vermeidung von Sch\u00e4den am Schutzrohr w\u00e4hrend des Betriebs aufgrund von mechanischen Belastungen empfehlen wir bei anspruchsvollen Prozessbedingungen eine Schutzrohrberechnung gem\u00e4\u00df ASME PTC 19.3 TW-2016. Im Falle einer Berechnung mit negativem Ergebnis waren bisher die einzigen m\u00f6glichen konstruktiven L\u00f6sungen die K\u00fcrzung des Schutzrohr-Tauchschafts oder die Vergr\u00f6\u00dferung des Wurzel- und Spitzendurchmessers unter Akzeptanz einer erh\u00f6hten Ansprechzeit des Thermometers.<\/strong><\/p>\n<p>Das ScrutonWell \u00ae-Design reduziert die Schwingungsamplitude um mehr als 90 % und erm\u00f6glicht die einfache und schnelle Montage des Schutzrohres ohne St\u00fctzanker und somit ohne teure und zeitintensive Nacharbeit vor Ort. Diese helixartige Konstruktion wird seit Jahrzehnten in den verschiedensten Industrieanwendungen erfolgreich eingesetzt, um durch Verwirbelungen verursachte Schwingungen zu unterbinden.<\/p>\n<h2>Funktionsprinzip<\/h2>\n\n      <div class=\"wp-caption alignleft\" style=\"max-width:396px;\"><a href=\"https:\/\/blog.wika.com\/de\/files\/2015\/05\/ScrutonWell_Standard_thermowell.jpg\"><img decoding=\"async\" src=\"https:\/\/blog.wika.com\/de\/files\/2015\/05\/ScrutonWell_Standard_thermowell-388x339.jpg\" alt=\"Standard-Schutzrohr\" \/><\/a><p class=\"wp-caption-text\">Standard-Schutzrohr<\/p><\/div>\n    \n<p>Bei bestimmten Str\u00f6mungsbedingungen bildet sich hinter dem angestr\u00f6mten Schutzrohrschaft in einer Rohrleitung eine K\u00e1rm\u00e1nsche Wirbelstra\u00dfe aus. Diese Wirbelstra\u00dfe besteht aus zwei Reihen von Wirbeln mit entgegengesetztem Drehsinn, die sich phasenverschoben rechts und links am Schutzrohr abl\u00f6sen und dieses zur Schwingung anregen k\u00f6nnen.<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n\n      <div class=\"wp-caption alignleft\" style=\"max-width:396px;\"><a href=\"https:\/\/blog.wika.com\/de\/files\/2015\/05\/Thermowell_in_ScrutonWell_design.jpg\"><img decoding=\"async\" src=\"https:\/\/blog.wika.com\/de\/files\/2015\/05\/Thermowell_in_ScrutonWell_design-e1432640173778-388x349.jpg\" alt=\"Schutzrohr in ScrutonWell-Design\" \/><\/a><p class=\"wp-caption-text\">Schutzrohr in ScrutonWell <span lang=\"DE\">\u00ae<\/span>-Design<\/p><\/div>\n    \n<p>Die helixartigen, um den Schutzrohrschaft angeordneten Wendeln des ScrutonWell \u00ae-Designs brechen die Str\u00f6mung und verhindern so die Ausbildung einer klar definierten K\u00e1rm\u00e1nschen Wirbelstra\u00dfe. Durch die reduzierten Amplituden der diffusen Verwirbelungen wird eine Schwingungsanregung des Schutzrohres vermieden.<\/p>\n<p>Das ScrutonWell \u00ae-Design kann f\u00fcr alle Arten von einteiligen Schutzrohren mit Flanschanschluss, Vanstone-Ausf\u00fchrung und auch f\u00fcr geschwei\u00dfte oder geschraubte Prozessanschl\u00fcsse eingesetzt werden.<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Hinweis<\/strong><br \/>\nWeitere Information zu unseren <a href=\"https:\/\/www.wika.com\/de-de\/schutzrohre.WIKA\" target=\"_blank\" rel=\"noopener noreferrer external\">Schutzrohren<\/a> erhalten Sie auf der WIKA-Webseite.<\/p>\n<p>Informieren Sie sich weiterhin in folgendem Video \u00fcber Schutzrohe im ScrutonWell<span lang=\"DE\">\u00ae-Design:<\/span><\/p>\n<div data-fullscreen=\"disabled\" data-mode=\"normal\" data-oembed=\"1\" data-provider=\"youtube\" data-reset-after-played id=\"arve-youtube-l9d6wd4obue\" style=\"max-width:900px;\" class=\"arve\">\n<div class=\"arve-inner\">\n<div style=\"aspect-ratio:500\/281\" class=\"arve-embed arve-embed--has-aspect-ratio\">\n<div class=\"arve-ar\" style=\"padding-top:56.200000%\"><\/div>\n<p>\t\t\t<iframe allow=\"accelerometer &apos;none&apos;;autoplay &apos;none&apos;;bluetooth &apos;none&apos;;browsing-topics &apos;none&apos;;camera &apos;none&apos;;clipboard-read &apos;none&apos;;clipboard-write;display-capture &apos;none&apos;;encrypted-media &apos;none&apos;;gamepad &apos;none&apos;;geolocation &apos;none&apos;;gyroscope &apos;none&apos;;hid &apos;none&apos;;identity-credentials-get &apos;none&apos;;idle-detection &apos;none&apos;;keyboard-map &apos;none&apos;;local-fonts;magnetometer &apos;none&apos;;microphone &apos;none&apos;;midi &apos;none&apos;;otp-credentials &apos;none&apos;;payment &apos;none&apos;;picture-in-picture;publickey-credentials-create &apos;none&apos;;publickey-credentials-get &apos;none&apos;;screen-wake-lock &apos;none&apos;;serial &apos;none&apos;;summarizer &apos;none&apos;;sync-xhr;usb &apos;none&apos;;web-share;window-management &apos;none&apos;;xr-spatial-tracking &apos;none&apos;;\" allowfullscreen=\"\" class=\"arve-iframe fitvidsignore\" credentialless data-arve=\"arve-youtube-l9d6wd4obue\" data-lenis-prevent=\"\" data-src-no-ap=\"https:\/\/www.youtube-nocookie.com\/embed\/l9d6wd4oBuE?feature=oembed&amp;iv_load_policy=3&amp;modestbranding=1&amp;rel=0&amp;autohide=1&amp;playsinline=0&amp;autoplay=0&amp;enablejsapi=1\" frameborder=\"0\" height=\"505.8\" loading=\"lazy\" name=\"\" referrerpolicy=\"strict-origin-when-cross-origin\" sandbox=\"allow-scripts allow-same-origin allow-presentation allow-popups allow-popups-to-escape-sandbox\" scrolling=\"no\" src=\"https:\/\/www.youtube-nocookie.com\/embed\/l9d6wd4oBuE?feature=oembed&#038;iv_load_policy=3&#038;modestbranding=1&#038;rel=0&#038;autohide=1&#038;playsinline=0&#038;autoplay=0&#038;enablejsapi=1\" title=\"WIKA ScrutonWell\u00ae design for thermowells | Areas of application, configuration and advantages\" width=\"900\"><\/iframe><\/p><\/div>\n<\/p><\/div>\n<p>\t<script type=\"application\/ld+json\">{\"@context\":\"http:\\\/\\\/schema.org\\\/\",\"@id\":\"https:\\\/\\\/blog.wika.com\\\/de\\\/produkte\\\/temperatur-produkte\\\/neues-schutzrohr-in-scrutonwell-design\\\/#arve-youtube-l9d6wd4obue\",\"type\":\"VideoObject\",\"embedURL\":\"https:\\\/\\\/www.youtube-nocookie.com\\\/embed\\\/l9d6wd4oBuE?feature=oembed&iv_load_policy=3&modestbranding=1&rel=0&autohide=1&playsinline=0&autoplay=0&enablejsapi=1\",\"name\":\"WIKA ScrutonWell\\u00ae design for thermowells | Areas of application, configuration and advantages\",\"thumbnailUrl\":\"https:\\\/\\\/i.ytimg.com\\\/vi\\\/l9d6wd4oBuE\\\/hqdefault.jpg\",\"uploadDate\":\"2021-04-19T05:07:22Z\",\"author\":\"WIKA Group\",\"description\":\"The ScrutonWell\\u00ae design was originally created by Christopher Scruton to stabilise building structures, by preventing vibration excitation caused by air and liquid flows.\\nIt is a helical design that has been used successfully for decades in a broad range of industrial applications to adequately suppress vortex-induced vibration.\\n \\nThe ScrutonWell\\u00ae design for thermowells is used to avoid damages to the thermowell during operations, due to mechanical load. It is suitable for all kind of solid-machined thermowells with flange connection, in Vanstone design or for weld-in or threaded process connection.\\n \\nSpecial features of the ScrutonWell\\u00ae design for thermowells include:\\n\\u2705 Application in critical measuring locations\\n\\u2705 Easy and cost-effective installation\\n\\u2705 Versatility in changing process conditions\\n \\n\\ud83c\\udf10 Find out more on our website: \\n \\n\\ud83d\\udc47 Download our data sheet \\\"Thermowell in ScrutonWell\\u00ae design\\\": \\n \\n\\u25b6 Watch a video about thermowells: \\n \\n_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ \\n \\nFollow us on our social media channels:\\n\\ud83d\\udcfa YouTube: \\n\\ud83c\\udfaf LinkedIn:\"}<\/script><\/p>\n<\/div>\n","protected":false},"excerpt":{"rendered":"<p>Zur Vermeidung von Sch\u00e4den am Schutzrohr w\u00e4hrend des Betriebs aufgrund von mechanischen Belastungen empfehlen wir bei anspruchsvollen Prozessbedingungen eine Schutzrohrberechnung gem\u00e4\u00df ASME PTC 19.3 TW-2016. Im Falle einer Berechnung mit negativem Ergebnis waren bisher die einzigen m\u00f6glichen konstruktiven L\u00f6sungen die K\u00fcrzung des Schutzrohr-Tauchschafts oder die Vergr\u00f6\u00dferung des Wurzel- und Spitzendurchmessers unter Akzeptanz einer erh\u00f6hten Ansprechzeit [&hellip;]<\/p>\n","protected":false},"author":76,"featured_media":6631,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[479],"tags":[486,491,520,482,794,488,489],"class_list":["post-6622","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-temperatur-produkte","tag-ausfall","tag-einsatzbedingungen","tag-messstelle","tag-prozessanschluss","tag-schutzrohr","tag-vibration-schock","tag-werkstoffe"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Neues Schutzrohr in ScrutonWell \u00ae-Design - 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