{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":2,"startPagecode":1},"records":[{"abstractinfo":"研究复杂地形条件风电场空气动力场对风电场的微观选址、风功率预测等有着重要的意义.本文采用制动盘理论简化风力机对风场空气动力场的影响,按照数值方法求解复杂地形条件风场空气动力场,研究网格、边界条件以及湍流模型等对风场空气动力场的影响,结合风电场实测数据对比分析风场空气动力场数值计算方法的可靠性,得到适合复杂地形风场空气动力场数值计算方法.研究结果可为风电场微观选址和风功率预测等提供参考.","authors":[{"authorName":"许昌","id":"0a99d14d-6416-4824-950c-14a7bed759fe","originalAuthorName":"许昌"},{"authorName":"李辰奇","id":"a3854926-939b-4368-83d2-dd287c5620a3","originalAuthorName":"李辰奇"},{"authorName":"韩星星","id":"31e2141f-3c98-4ae1-9ade-2018f972368a","originalAuthorName":"韩星星"},{"authorName":"SHEN Wen-Zhong","id":"dc99c7a3-912b-4711-9999-6c638af3d957","originalAuthorName":"SHEN Wen-Zhong"},{"authorName":"张明明","id":"ae65734f-271b-4352-a9e3-c0b53be89978","originalAuthorName":"张明明"},{"authorName":"刘德有","id":"b3e73316-3068-4230-b896-5f27317e5482","originalAuthorName":"刘德有"},{"authorName":"郑源","id":"70e94cb6-3f27-42b2-b83a-f3d9467e6030","originalAuthorName":"郑源"}],"doi":"","fpage":"1696","id":"7267d6c9-b524-4e57-adef-39cfba5d08b9","issue":"8","journal":{"abbrevTitle":"GCRWLXB","coverImgSrc":"journal/img/cover/GCRWLXB.jpg","id":"32","issnPpub":"0253-231X","publisherId":"GCRWLXB","title":"工程热物理学报 "},"keywords":[{"id":"5eaef8c6-2cd1-4b47-ad8e-ac66447705dd","keyword":"复杂地形","originalKeyword":"复杂地形"},{"id":"230f42e2-e84f-4fb4-b707-20e59fb90c19","keyword":"风电场","originalKeyword":"风电场"},{"id":"4dfcab35-5a28-4b25-8abf-f047922c34a9","keyword":"计算流体力学","originalKeyword":"计算流体力学"},{"id":"8361bcc4-6e3b-411f-bee2-51bf32a94fcd","keyword":"制动盘","originalKeyword":"制动盘"}],"language":"zh","publisherId":"gcrwlxb201508017","title":"基于制动盘模型的复杂地形风电场空气动力场数值模拟","volume":"36","year":"2015"},{"abstractinfo":"研究α-NaYF4:Yb,Er上转换纳米粒子的W/O微乳液溶剂热制备,并用正硅酸乙酯为SiO2前驱体对NaYF4:Yb,Er上转换纳米粒子进行SiO2包覆,分析SiO2包覆对Er3+发光增强作用来自于两方面.包覆弥补上转换纳米粒子表面的发光粹灭中心,提高上转换发光强度.同时由于Si-O-Si的对称振动能量1 106 cm-1与4F7/2能级到2H11/2能级弛豫能量1 177cm-1相当,(CH2)n的红外振动模能量为743 cm-1与2H11/2能级到4S3/2弛豫能量780 cm-1相当,4F7/2能级到4F9/2弛豫能量为5 023 cm-1,4I11/2能级到4I13/2弛豫能量接近4 500 cm-1与Si-O-Si的对称伸缩振动能量1 106 cm-1不匹配,所以SiO2包覆能有效的增加表面发光中心2H11/2,4S3/2能级布居数,而使得产生红光发射的能级4F9/2能级布居数不变.","authors":[{"authorName":"韩星星","id":"47f56d75-9103-4012-ac8f-161b0dd40641","originalAuthorName":"韩星星"},{"authorName":"涂进春","id":"c5b960d8-082e-48df-97a6-272892d63f96","originalAuthorName":"涂进春"},{"authorName":"李晓天","id":"d3d58ebc-3003-4e56-a25a-c1b4b6b5f4a8","originalAuthorName":"李晓天"}],"doi":"10.3969/j.issn.1004-244X.2009.03.016","fpage":"52","id":"b4d27a3a-53e9-4932-bf8d-1048cb8aa3c0","issue":"3","journal":{"abbrevTitle":"BQCLKXYGC","coverImgSrc":"journal/img/cover/BQCLKXYGC.jpg","id":"4","issnPpub":"1004-244X","publisherId":"BQCLKXYGC","title":"兵器材料科学与工程 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"},"keywords":[{"id":"4fccb22c-0cac-44b8-b352-61dae8a38749","keyword":"软件开发","originalKeyword":"软件开发"},{"id":"67f1d60d-f76f-42c8-94a8-b2a4bdb010e1","keyword":"仿真","originalKeyword":"仿真"},{"id":"e7bb155c-f40f-4d93-9b35-4275796990fe","keyword":"软件测试","originalKeyword":"软件测试"},{"id":"8650bdb8-0675-42bf-a69b-6b5066071ddd","keyword":"嵌入式软件","originalKeyword":"嵌入式软件"}],"language":"zh","publisherId":"lzdzxb200203020","title":"\"创新一号\"软件开发及仿真测试平台研究","volume":"19","year":"2002"},{"abstractinfo":"韩冰,1965年生,硕士学位,教授级高级工程师。现任中国腐蚀与防护学会理事和山东省腐蚀与防护学会副理事长,钢铁研究总院青岛海洋腐蚀研究所所长。","authors":[],"doi":"","fpage":"0002","id":"443f3948-9232-458a-bc36-ed14aed428c3","issue":"3","journal":{"abbrevTitle":"ZGYJ","coverImgSrc":"journal/img/cover/ZGYJ.jpg","id":"87","issnPpub":"1006-9356","publisherId":"ZGYJ","title":"中国冶金"},"keywords":[{"id":"f014e6d8-2085-4efd-92b2-f88e5c95265d","keyword":"科技","originalKeyword":"科技"},{"id":"a38a03a0-f775-4c16-a0aa-4283b0f2cd2f","keyword":"冶金","originalKeyword":"冶金"},{"id":"53044534-c5e0-467b-befc-ffe91739bd04","keyword":"海洋腐蚀","originalKeyword":"海洋腐蚀"},{"id":"ad0acba9-2ba8-4fda-9dfc-5995602f24ca","keyword":"钢铁研究总院","originalKeyword":"钢铁研究总院"},{"id":"41df8b2e-1993-474b-bcf1-dc63b1451a59","keyword":"高级工程师","originalKeyword":"高级工程师"},{"id":"2c3be210-e862-4c55-a88b-61be851c79ab","keyword":"硕士学位","originalKeyword":"硕士学位"},{"id":"4fffc6d1-f834-4e57-9817-44d7f98ab1c9","keyword":"副理事长","originalKeyword":"副理事长"},{"id":"be91a762-00fe-48fe-9bc5-81bd10654835","keyword":"山东省","originalKeyword":"山东省"}],"language":"zh","publisherId":"zgyj201203001","title":"冶金青年科技英才","volume":"22","year":"2012"},{"abstractinfo":"通过对贵州毕节地区两个处于不同石漠化等级条件下的洞穴朝营洞(潜在)与韩家冲洞(强度)滴水的滴率与元素进行了为期1年的监测,分析了各洞穴上覆的土壤、基岩元素,探讨了滴水的元素来源及其石漠化效应.结果表明,朝营洞上覆土壤元素Ca、Mg、Sr含量高于韩家冲洞;朝营洞滴水Ca2+、Mg2+、Ba2+、Sr2+平均浓度分别为60.81、3.24、0.012、0.085 mg·L-1,韩家冲洞滴水分别为58.39、2.47、0.01、0.074 mg·L-1;地表石漠化程度越严重,洞穴滴水滴率对大气降雨的响应越敏感,季节变幅越大,滴水元素受到上覆基岩的贡献程度越高;受地表石漠化效应的差异影响,朝营洞滴水元素离子浓度呈现出雨季高旱季低的变化规律,而韩家冲洞滴水元素离子浓度呈现出雨季低,旱季高的变化规律.","authors":[{"authorName":"李渊","id":"6e4fb755-8531-47f6-a556-a022649fd530","originalAuthorName":"李渊"},{"authorName":"刘子琦","id":"07d1c333-ab26-4e23-82c3-5d84086dea54","originalAuthorName":"刘子琦"},{"authorName":"吕小溪","id":"6c9909f7-28c1-4427-96db-4c464e97c39f","originalAuthorName":"吕小溪"},{"authorName":"曹洋","id":"e7a87841-d3b4-4d88-a60a-4c67ae943267","originalAuthorName":"曹洋"},{"authorName":"李开萍","id":"103f1e04-a6b0-4b03-88ed-1864ce25ed36","originalAuthorName":"李开萍"},{"authorName":"覃换勋","id":"5fd482af-971d-4755-a165-b357c28a7e1a","originalAuthorName":"覃换勋"}],"doi":"10.7524/j.issn.0254-6108.2016.09.2016033004","fpage":"1894","id":"e497ddcc-54b6-494b-ba46-fa1267864aa7","issue":"9","journal":{"abbrevTitle":"HJHX","coverImgSrc":"journal/img/cover/HJHX.jpg","id":"43","issnPpub":"0254-6108","publisherId":"HJHX","title":"环境化学 "},"keywords":[{"id":"0ed68e86-2000-4d67-b61e-3665b0247bf6","keyword":"土壤","originalKeyword":"土壤"},{"id":"e857a8f9-8d74-4f2e-abf1-2d83f2351926","keyword":"洞穴滴水","originalKeyword":"洞穴滴水"},{"id":"b110bb61-2c26-4531-8ae1-8a7021656279","keyword":"元素","originalKeyword":"元素"},{"id":"45792d19-b873-4fbe-b211-576972f0b98e","keyword":"石漠化","originalKeyword":"石漠化"}],"language":"zh","publisherId":"hjhx201609018","title":"贵州毕节石漠化地区洞穴上覆土壤与基岩对滴水元素特征的影响?","volume":"35","year":"2016"},{"abstractinfo":"采用薄壁圆筒扭转的试验方法测定碳纤维/环氧树脂复合材料的面内剪切性能,得到了碳纤维/环氧树脂复合材料的面内剪切模量与剪切强度结果.最后将试验结果与4种经验公式估算结果对比,得出蔡-韩修正公式对面内剪切模量的估算结果接近试验值.","authors":[{"authorName":"孙炳君","id":"ee4cf278-3c10-4bc0-aa4b-decc15004622","originalAuthorName":"孙炳君"},{"authorName":"王俊","id":"1f95dfdc-fd71-41ac-b0d8-b4180aa040de","originalAuthorName":"王俊"},{"authorName":"迟蕾","id":"e7f98809-cdf2-4368-8b64-687acc1edc02","originalAuthorName":"迟蕾"}],"doi":"","fpage":"187","id":"3f733507-f2fe-4de2-9611-63619f2a96cf","issue":"z3","journal":{"abbrevTitle":"CLDB","coverImgSrc":"journal/img/cover/CLDB.jpg","id":"8","issnPpub":"1005-023X","publisherId":"CLDB","title":"材料导报"},"keywords":[{"id":"c824d975-47da-4d4c-92e4-e0419c01ed0d","keyword":"薄壁圆筒","originalKeyword":"薄壁圆筒"},{"id":"5737a280-5d2b-4e1a-8d59-2283ba59a9be","keyword":"扭转","originalKeyword":"扭转"},{"id":"02cce7c9-7546-441a-bed5-9d6afa26110e","keyword":"经验公式","originalKeyword":"经验公式"}],"language":"zh","publisherId":"cldb2008z3060","title":"碳纤维复合材料面内剪切性能试验研究","volume":"22","year":"2008"},{"abstractinfo":"腐蚀疲劳裂纹内的化学与电化学状态韩恩厚,柯伟(中国科学院金属腐蚀与防护研究所腐蚀科学开放研究实验室,沈阳110015)发表于CorrosionScience,1993;35(1—4):599.获中国腐蚀与防护学会第三届全国青年腐蚀科技论文讲评会一等奖韩恩厚,男,1961年8月生.1990年在东北大学获博士学位.1993年3月从中国科学院金属研究所博士后出站,同月受聘为中国科学院金属腐蚀与防护研究所副研究员.主要从事环境敏感断裂机理、工程结构失效分析与寿命....","authors":[{"authorName":"韩恩厚","id":"0c777ca4-e734-4601-a0e7-70582b07406c","originalAuthorName":"韩恩厚"},{"authorName":"柯伟","id":"597e84ca-cb21-40a3-8797-41b5432e996f","originalAuthorName":"柯伟"}],"categoryName":"|","doi":"","fpage":"22","id":"94f4f128-d01a-4c73-8891-a8d8a46a95bf","issue":"1","journal":{"abbrevTitle":"FSXB","coverImgSrc":"journal/img/cover/腐蚀学报封面.jpg","id":"24","issnPpub":"2667-2669","publisherId":"FSXB","title":"腐蚀学报(英文)"},"keywords":[],"language":"zh","publisherId":"1002-6495_1994_1_22","title":"腐蚀疲劳裂纹内的化学与电化学状态","volume":"6","year":"1994"}],"totalpage":2,"totalrecord":13}