钢铁, 2005, 40(8): 22-25.
大型转炉低硅铁水炼钢研究
杨文远 1, , 吴文东 2, , 王明林 3, , 石洪志 4{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"通过对地表沉降曲线的两种不同假设,在分析地表沉降、基坑隆起、墙体侧移相互关系的基础上,推导了两个用来求算地表沉降量的估算式,经工程验证结果较满意.","authors":[{"authorName":"潘洪科","id":"881e4780-61e9-40ee-a00f-0dbc01965dee","originalAuthorName":"潘洪科"},{"authorName":"饶运章","id":"97e8ebb3-1baf-4397-8594-bd4eb4d447dc","originalAuthorName":"饶运章"}],"doi":"10.3969/j.issn.1001-1277.2002.04.003","fpage":"25","id":"48a00eef-bfbf-49b2-8539-79ec6e201fed","issue":"4","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"a7530472-59aa-4f2c-938b-b435f49b1318","keyword":"深基坑工程","originalKeyword":"深基坑工程"},{"id":"17a358fd-f140-4f58-932a-aeedc21f0e60","keyword":"地表沉降","originalKeyword":"地表沉降"},{"id":"ae38a929-98fe-43f9-a157-9891a07b313b","keyword":"估算式","originalKeyword":"估算式"}],"language":"zh","publisherId":"huangj200204003","title":"深基坑开挖坑外地表沉降分析与计算","volume":"23","year":"2002"},{"abstractinfo":"文中介绍了自适应调整学习率的改进BP算法,建立了适用于围岩稳定性分级评价和模式识别的BP神经网络模型,编写了相应的MATLAB计算程序.应用示例表明,该模型具有良好的评价识别效果.","authors":[{"authorName":"饶运章","id":"f7584657-25a7-4433-a414-d8d8aee02da2","originalAuthorName":"饶运章"},{"authorName":"侯运炳","id":"6bb9d94d-531d-4e00-9b55-75f15d622267","originalAuthorName":"侯运炳"}],"doi":"10.3969/j.issn.1001-1277.2001.10.004","fpage":"15","id":"5054b134-7492-4c1d-96ed-dd3bb5889063","issue":"10","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"04537f23-059b-4dab-8022-b5c049bffa0a","keyword":"神经网络","originalKeyword":"神经网络"},{"id":"d2c2ceb0-f505-4a5d-be12-6a4c1f88d813","keyword":"改进BP算法","originalKeyword":"改进BP算法"},{"id":"e1e469f9-0739-43ec-a74c-3ac3a357face","keyword":"MATLAB程序","originalKeyword":"MATLAB程序"},{"id":"bdc3ce99-860e-41e0-b4d1-35066a65285d","keyword":"围岩稳定性分级","originalKeyword":"围岩稳定性分级"},{"id":"db4f3b24-19d6-4d9f-af3b-c680cc8061a5","keyword":"评价","originalKeyword":"评价"}],"language":"zh","publisherId":"huangj200110004","title":"神经网络方法在围岩稳定性分级评价中的应用","volume":"22","year":"2001"},{"abstractinfo":"文中分析了普遍分布的各种含硫矿山产生酸性废水的机理,研究了废水pH值对重金属溶出的影响,揭示了废水酸化与重金属污染的内在关系,探讨了重金属迁移转化规律和时空分布规律.","authors":[{"authorName":"戴玉华","id":"647a2c43-6b7b-461a-8151-0a547c0f4a66","originalAuthorName":"戴玉华"},{"authorName":"饶运章","id":"a81c69c2-c3bb-4cef-84a8-d036695c48fa","originalAuthorName":"饶运章"},{"authorName":"吴红","id":"ab9b5cc7-c9ba-4cae-90e7-1cb5bb4756d2","originalAuthorName":"吴红"},{"authorName":"张水平","id":"2cf80f95-8021-4a58-8801-df1138ee6cbc","originalAuthorName":"张水平"}],"doi":"10.3969/j.issn.1001-1277.2007.07.014","fpage":"45","id":"ec255077-81d3-487a-b543-4751c4714514","issue":"7","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"8933c7e2-144d-4ee9-9e29-194ea81c0f2b","keyword":"矿山","originalKeyword":"矿山"},{"id":"9fd759b9-3c50-418a-b9f0-6f1a47a27539","keyword":"酸性废水","originalKeyword":"酸性废水"},{"id":"1bc04ff9-20f4-4522-8fc8-ab09ffe31095","keyword":"pH值","originalKeyword":"pH值"},{"id":"e6bd73aa-6c15-4796-a08c-64ac682b123e","keyword":"重金属污染","originalKeyword":"重金属污染"},{"id":"9bc3cef5-46f5-4cf3-9d1b-bcdc44f73cc4","keyword":"分布规律","originalKeyword":"分布规律"}],"language":"zh","publisherId":"huangj200707014","title":"矿山酸性废水与重金属污染规律研究","volume":"28","year":"2007"},{"abstractinfo":"通过对不同赋存类型的离子型稀土矿山开展现场调查,论述了原地浸矿采场滑坡的基本特征和致灾机理,结合某滑坡易发稀土矿区开采技术条件,实施了滑坡防控工业对比试验.研究表明,离子型稀土矿采场滑坡的主要破坏类型为浅层小型圆弧强风化残积层滑坡,通过调整注液参数、增加收液工程、预留保安矿体、抗滑桩人工加固等防控技术措施,采场滑坡现象得到了有效控制,所用防控措施具有投入少、产出大、施工简单、效果明显等优点,可为南方离子型稀土矿山的采场防控和安全开采提供参考,解决稀土矿山面临的安全环保等现实问题,具有良好的经济和环境效益.","authors":[{"authorName":"饶睿","id":"e7d5d03b-f594-472c-a0a4-40ac7763e295","originalAuthorName":"饶睿"},{"authorName":"李明才","id":"85c768f4-f5af-46ed-88ce-0d5449e02428","originalAuthorName":"李明才"},{"authorName":"张树标","id":"d3e0f29f-cd60-4ede-8401-7875b6a93697","originalAuthorName":"张树标"},{"authorName":"饶运章","id":"a156c1bb-2a53-44ef-8017-e5c61f63022f","originalAuthorName":"饶运章"},{"authorName":"钟健民","id":"d564d4e5-6155-4fdb-838a-2e49c571d757","originalAuthorName":"钟健民"}],"doi":"10.16533/J.CNKI.15-1099/TF.201606005","fpage":"26","id":"cd526de6-3fd2-4b13-8e5b-3b3ddd64f43c","issue":"6","journal":{"abbrevTitle":"XT","coverImgSrc":"journal/img/cover/XT.jpg","id":"65","issnPpub":"1004-0277","publisherId":"XT","title":"稀土"},"keywords":[{"id":"16791738-98e7-4d3c-ac90-1d97a646b858","keyword":"稀土","originalKeyword":"稀土"},{"id":"93fd47a0-35f0-4650-95b7-cd63454782e6","keyword":"原地浸矿","originalKeyword":"原地浸矿"},{"id":"e25b4589-ea84-4075-ace4-5d0735a715d7","keyword":"滑坡特征","originalKeyword":"滑坡特征"},{"id":"e32fd12a-bde6-4933-b8eb-a39ed5a10470","keyword":"滑坡机理","originalKeyword":"滑坡机理"},{"id":"6c4b85ee-2990-4bba-abcb-2cd047d091cc","keyword":"防控措施","originalKeyword":"防控措施"}],"language":"zh","publisherId":"xitu201606005","title":"离子型稀土原地浸矿采场滑坡特征及防控试验研究","volume":"37","year":"2016"},{"abstractinfo":"针对超细全尾砂?水泥胶结膏体充填料浆黏性大、和易性差,其满足充填输送要求时充填体强度低的问题,通过不同掺量聚羧酸高效减水剂对膏体料浆流动度、坍落、泌水率及其充填体抗压强度影响的试验研究,并借助XRD能谱分析和电镜扫描(SEM)方法,从微观角度揭示减水剂提到充填体强度机理。结果表明:掺量0.5%(质量分数)的聚羧酸高效减水剂可使质量分数为70%~76%膏体充填料浆的流动度、坍落度有效增加;料浆泌水率明显提高,但不会发生严重离析;充填体微观上水泥水化凝胶更多,尾砂颗粒因水化凝胶“包裹”作用形成更大的晶体颗粒,且颗粒分布更为均匀、孔隙更小、结构更为致密,宏观上初期/长期强度显著提高,最高达50%;同时,减水剂掺量小于0.5%为“安全掺量”,对充填体强度不会造成劣化影响。","authors":[{"authorName":"饶运章","id":"c865a16f-2523-44dd-be73-ea527a0552b0","originalAuthorName":"饶运章"},{"authorName":"邵亚建","id":"9203b8cd-8391-4f19-91b6-8e4e8ae4f644","originalAuthorName":"邵亚建"},{"authorName":"肖广哲","id":"942adc6a-73f0-4513-a205-f1ab1bb8856f","originalAuthorName":"肖广哲"},{"authorName":"孙翔","id":"5c508012-0657-4580-9baf-03ad94ef6cd2","originalAuthorName":"孙翔"},{"authorName":"黄永刚","id":"410eaa46-ee7d-4548-83f9-ea476d3ba81e","originalAuthorName":"黄永刚"}],"doi":"","fpage":"2647","id":"0143d293-c63d-4153-aa2d-3a27452b05d8","issue":"12","journal":{"abbrevTitle":"ZGYSJSXB","coverImgSrc":"journal/img/cover/ZGYSJSXB.jpg","id":"88","issnPpub":"1004-0609","publisherId":"ZGYSJSXB","title":"中国有色金属学报"},"keywords":[{"id":"b8d0e7ab-1998-46a6-a2ca-a77111c738e9","keyword":"聚羧酸减水剂","originalKeyword":"聚羧酸减水剂"},{"id":"a8a6bb2c-2d94-4582-b700-5f1f64b6c7cf","keyword":"膏体充填","originalKeyword":"膏体充填"},{"id":"2af0ce45-66d9-4af7-82d6-f175b4cb377e","keyword":"超细全尾砂","originalKeyword":"超细全尾砂"},{"id":"97eadd89-3e4f-47bf-81d6-26c51012c5de","keyword":"流动性","originalKeyword":"流动性"},{"id":"0232fd91-9a40-4d30-a5b4-f7b39249b578","keyword":"充填体强度","originalKeyword":"充填体强度"},{"id":"966f01e6-5359-4813-926f-bb67b1cfe713","keyword":"微观机制","originalKeyword":"微观机制"}],"language":"zh","publisherId":"zgysjsxb201612021","title":"聚羧酸减水剂对超细全尾砂膏体性能的影响","volume":"26","year":"2016"},{"abstractinfo":"模糊综合评判是一种科学的决策方法.文中运用该法对高硫高品位矿体的采矿方法进行优选,实践表明,模糊综合评判在采矿方法方案优选中具有很强的实用价值.","authors":[{"authorName":"吴贤振","id":"600bb490-4e4d-4bfa-b480-470570792ad7","originalAuthorName":"吴贤振"},{"authorName":"饶运章","id":"f8c0d249-bc3d-4a0f-94c6-730b2225526d","originalAuthorName":"饶运章"},{"authorName":"刘洪兴","id":"4df17422-1d98-42bd-a002-668cacebfdf8","originalAuthorName":"刘洪兴"}],"doi":"10.3969/j.issn.1001-1277.2004.02.005","fpage":"14","id":"29bbeb7c-8906-4c91-9435-bbcf0cf15f59","issue":"2","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"cd8c6040-66af-474f-b5f9-0bad8b62215c","keyword":"模糊综合评判","originalKeyword":"模糊综合评判"},{"id":"4a403631-538f-4d98-80cb-08a365a0b26c","keyword":"高硫高品位矿体","originalKeyword":"高硫高品位矿体"},{"id":"28b81f5c-0e0f-45b5-b14c-cb9c29009528","keyword":"采矿方法","originalKeyword":"采矿方法"}],"language":"zh","publisherId":"huangj200402005","title":"模糊综合评判优选深部高硫高品位矿体采矿方法的研究","volume":"25","year":"2004"},{"abstractinfo":"通过分析论述了矿区水土重金属污染预警系统的涵义、必要性和功能,建立了矿区水土重金属污染预警系统的逻辑结构和总体架构,以期从方法和技术角度为建立矿区水土重金属污染预警系统提供一个全面、新颖的支撑方案.","authors":[{"authorName":"徐水太","id":"25725855-ba57-4789-8886-8d6ce3815b45","originalAuthorName":"徐水太"},{"authorName":"饶运章","id":"06b9fb52-497f-4fe4-a934-3a59cc3f5f6d","originalAuthorName":"饶运章"},{"authorName":"熊灵燕","id":"297cd95f-ea0b-4a63-bc47-6a6318c6bf9f","originalAuthorName":"熊灵燕"}],"doi":"10.3969/j.issn.1001-1277.2009.07.014","fpage":"58","id":"9ca2d7a9-4290-4095-a1ae-65366528a36a","issue":"7","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"ee4307fe-94ce-400c-949b-de930e3ff3ec","keyword":"硫化矿区","originalKeyword":"硫化矿区"},{"id":"6907d21a-b0b5-4741-a3c5-e906e9bb6f3a","keyword":"水土重金属污染","originalKeyword":"水土重金属污染"},{"id":"c9744576-e82e-4a8e-a146-b088cfa51d5a","keyword":"预警系统","originalKeyword":"预警系统"}],"language":"zh","publisherId":"huangj200907014","title":"金属硫化矿区水土重金属污染预警系统的研究","volume":"30","year":"2009"},{"abstractinfo":"主要阐述了ANSYS数值模拟方法在紫金山金铜矿采空区稳定性分析的过程,通过对ANSYS分析结果进行分析,客观地评价了紫金山金铜矿露天地下联合开采过程的采空区围岩稳定性.","authors":[{"authorName":"饶运章","id":"dd61443d-0ff0-4a2f-b038-a301ce27a768","originalAuthorName":"饶运章"},{"authorName":"柴炜","id":"d5de2d2d-9129-4e74-abfe-e4adb9685da8","originalAuthorName":"柴炜"},{"authorName":"黄奔文","id":"c512443c-41cd-4385-b83b-621de48af753","originalAuthorName":"黄奔文"}],"doi":"10.3969/j.issn.1001-1277.2008.07.006","fpage":"22","id":"cebd050c-39f8-49e9-b9f4-fdad7f0990da","issue":"7","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"533438e3-7d7b-4afb-93f2-2630aae27edb","keyword":"采空区","originalKeyword":"采空区"},{"id":"cbdcb6a9-2ad1-46a5-a405-7b02832e916d","keyword":"有限元","originalKeyword":"有限元"},{"id":"e97702a6-1378-451d-9d66-9f05d8519285","keyword":"稳定性","originalKeyword":"稳定性"},{"id":"e17844a5-78ac-49c9-a23b-ebcbe2c07673","keyword":"数值模拟","originalKeyword":"数值模拟"},{"id":"56a695f9-cae4-4b9a-b265-b83be22e4618","keyword":"紫金山金铜矿","originalKeyword":"紫金山金铜矿"}],"language":"zh","publisherId":"huangj200807006","title":"ANSYS数值计算在紫金山金铜矿矿柱稳定性分析中的应用","volume":"29","year":"2008"},{"abstractinfo":"倾斜、厚矿体应用爆力运矿采矿法回采,可以很好地解决矿房内的运矿问题.文中详述了中深孔爆力运矿采矿法回采工艺及应用技术要求,应用实践表明,该采矿法采准比小、成本低、工艺简单、便于管理.","authors":[{"authorName":"李景利","id":"6a934420-57fb-4e0d-b1fe-941bbd002707","originalAuthorName":"李景利"}],"doi":"10.3969/j.issn.1001-1277.2007.08.008","fpage":"28","id":"2b2db1e8-b9bd-42e5-8bfe-8e62c94766f2","issue":"8","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"35f6eade-a720-484c-8266-dfe8a0ca7663","keyword":"倾斜厚矿体","originalKeyword":"倾斜厚矿体"},{"id":"6a84044a-f32f-438b-9be3-c84c24aeff8e","keyword":"爆力运矿","originalKeyword":"爆力运矿"},{"id":"20623978-005a-4fa5-9dc8-204bbcee5d07","keyword":"乌拉嘎金矿","originalKeyword":"乌拉嘎金矿"}],"language":"zh","publisherId":"huangj200708008","title":"中深孔爆力运矿采矿法在乌拉嘎金矿的应用","volume":"28","year":"2007"},{"abstractinfo":"基于中国科学院近代物理研究所正在研制的兰州重离子治疗专用装置(HITFiL)的参数和指标,对从回旋加速器到同步加速器之间中能传输段的纵向束流匹配过程进行了模拟分析。根据主加速器的注入要求,在束运线上采用了散束器以降低束流动量分散,从理论上分析了中能传输段末端可能实现的最小动量分散和达到最小动量分散的条件,讨论了散束效果与初始动量分散、束团相宽和漂移长度的关系。并利用MathCAD程序对束团在束运线上的纵向运动进行了跟踪模拟,使用PBO-Lab程序进行了验算,得到了当散束器射频电压为102kV时,末端动量分散为最小值2.764×10-4。进一步提出了中能传输段的基本参数,也为下一步的优化设计提供了基础。","authors":[{"authorName":"谢修璀","id":"6c639d00-c5af-4e55-9eb4-b316217e086f","originalAuthorName":"谢修璀"},{"authorName":"宋明涛","id":"4bed1e29-fca1-44da-98c6-3c9da61aa129","originalAuthorName":"宋明涛"},{"authorName":"郝焕锋","id":"f3b4fba0-227f-4ede-b7f4-920f0157b1e8","originalAuthorName":"郝焕锋"},{"authorName":"王贤武","id":"46e5ed29-dfeb-4dfc-aac0-421cae49fd37","originalAuthorName":"王贤武"}],"doi":"","fpage":"62","id":"a5600d80-23aa-4304-aab3-ea914e84d31b","issue":"1","journal":{"abbrevTitle":"YZHWLPL","coverImgSrc":"journal/img/cover/YZHWLPL.jpg","id":"78","issnPpub":"1007-4627","publisherId":"YZHWLPL","title":"原子核物理评论 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