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When the temperature of working fluid is high, a productive value of the heat transfer coefficient by the heat transfer area is smaller and the total efficiency is higher. \u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000\u3000", "subitem_description_type": "Abstract"}]}, "item_2_full_name_3": {"attribute_name": "\u8457\u8005\u5225\u540d", "attribute_value_mlt": [{"nameIdentifiers": [{"nameIdentifier": "32747", "nameIdentifierScheme": "WEKO"}], "names": [{"name": "Hiromu, BABA"}]}, {"nameIdentifiers": [{"nameIdentifier": "32748", "nameIdentifierScheme": "WEKO"}], "names": [{"name": "Kimio, KANAYAMA"}]}]}, "item_2_publisher_32": {"attribute_name": "\u51fa\u7248\u8005", "attribute_value_mlt": [{"subitem_publisher": "\u5317\u898b\u5de5\u696d\u5927\u5b66"}]}, "item_2_select_15": {"attribute_name": "\u8457\u8005\u7248\u30d5\u30e9\u30b0", "attribute_value_mlt": [{"subitem_select_item": "publisher"}]}, "item_creator": {"attribute_name": "\u8457\u8005", "attribute_type": "creator", "attribute_value_mlt": [{"creatorNames": [{"creatorName": "\u99ac\u5834, \u5f18"}], "nameIdentifiers": [{"nameIdentifier": "32745", "nameIdentifierScheme": "WEKO"}]}, {"creatorNames": [{"creatorName": "\u91d1\u5c71, \u516c\u592b"}], "nameIdentifiers": [{"nameIdentifier": "32746", "nameIdentifierScheme": "WEKO"}]}]}, "item_files": {"attribute_name": "\u30d5\u30a1\u30a4\u30eb\u60c5\u5831", "attribute_type": "file", "attribute_value_mlt": [{"accessrole": "open_date", "date": [{"dateType": "Available", "dateValue": "2016-11-22"}], "displaytype": "detail", "download_preview_message": "", "file_order": 0, "filename": "11-1-3.pdf", "filesize": [{"value": "5.2 MB"}], "format": "application/pdf", "future_date_message": "", "is_thumbnail": false, "licensetype": "license_free", "mimetype": "application/pdf", "size": 5200000.0, "url": {"label": "11-1-3.pdf", "url": "https://kitami-it.repo.nii.ac.jp/record/6477/files/11-1-3.pdf"}, "version_id": "1c0b3790-4525-49c0-8529-5ee2797c5185"}]}, "item_language": {"attribute_name": "\u8a00\u8a9e", "attribute_value_mlt": [{"subitem_language": "jpn"}]}, "item_resource_type": {"attribute_name": "\u8cc7\u6e90\u30bf\u30a4\u30d7", "attribute_value_mlt": [{"resourcetype": "departmental bulletin paper", "resourceuri": "http://purl.org/coar/resource_type/c_6501"}]}, "item_title": "\u96c6\u5149\u578b\u96c6\u71b1\u5668\u306e\u53d7\u71b1\u7ba1\u5f62\u72b6\u3068\u96c6\u71b1\u52b9\u7387", "item_titles": {"attribute_name": "\u30bf\u30a4\u30c8\u30eb", "attribute_value_mlt": [{"subitem_title": "\u96c6\u5149\u578b\u96c6\u71b1\u5668\u306e\u53d7\u71b1\u7ba1\u5f62\u72b6\u3068\u96c6\u71b1\u52b9\u7387"}]}, "item_type_id": "2", "owner": "1", "path": ["7/15/32"], "permalink_uri": "https://kitami-it.repo.nii.ac.jp/records/6477", "pubdate": {"attribute_name": "\u516c\u958b\u65e5", "attribute_value": "2007-04-09"}, "publish_date": "2007-04-09", "publish_status": "0", "recid": "6477", "relation": {}, "relation_version_is_last": true, "title": ["\u96c6\u5149\u578b\u96c6\u71b1\u5668\u306e\u53d7\u71b1\u7ba1\u5f62\u72b6\u3068\u96c6\u71b1\u52b9\u7387"], "weko_shared_id": 3}
  1. 紀要掲載論文
  2. 北見工業大学研究報告
  3. Vol.11

集光型集熱器の受熱管形状と集熱効率

https://kitami-it.repo.nii.ac.jp/records/6477
e0e05d43-cd44-4741-925d-092d7c44c7b1
名前 / ファイル ライセンス アクション
11-1-3.pdf 11-1-3.pdf (5.2 MB)
Item type 紀要論文 / Departmental Bulletin Paper(1)
公開日 2007-04-09
タイトル
タイトル 集光型集熱器の受熱管形状と集熱効率
言語
言語 jpn
資源タイプ
資源 http://purl.org/coar/resource_type/c_6501
タイプ departmental bulletin paper
その他のタイトル
その他のタイトル Configuration of Absorbing Pipe and Collector Efficiency of Focusing Type Collectors
著者 馬場, 弘

× 馬場, 弘

WEKO 32745

馬場, 弘

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金山, 公夫

× 金山, 公夫

WEKO 32746

金山, 公夫

Search repository
著者別名
識別子
識別子 32747
識別子Scheme WEKO
姓名
姓名 Hiromu, BABA
著者別名
識別子
識別子 32748
識別子Scheme WEKO
姓名
姓名 Kimio, KANAYAMA
抄録
内容記述タイプ Abstract
内容記述 The performance of five kinds of focusing type collectors with absorbing pipes of circular, rhombic, triangular, rectangular and parabolic sections was analyzed. With respect to the four kinds of absorbing pipes except the parabolic, the rate of received energy on the absorbing pipe to an incident energy on the reflector is nearly equal. Absorbed energy on the parabolic pipe closely approaches unity affected by the multiple reflections. 0n the other hand, the reradiation from an absorbing pipe is proportional to the pipe area so that the radiative heat loss on the circular pipe is minimum. In accordance with heat balance for absorbed energy and radiative energy, it was clarified that the parabolic absorbing pipe has the most effective performance. In view of heat transmission from the absorbing pipes to working fluid flowing within the pipe, the heat transmission efficiency of all collectors depends on the heat transfer coefficient, the heat transfer area of absorbing pipe and also the attained temperature of working fluid. When the temperature of working fluid is high, a productive value of the heat transfer coefficient by the heat transfer area is smaller and the total efficiency is higher.
書誌情報 北見工業大学研究報告

巻 11, 号 1, p. 25-37, 発行日 1979-10
フォーマット
内容記述タイプ Other
内容記述 application/pdf
著者版フラグ
値 publisher
出版者
出版者 北見工業大学
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