登录

  • 登录
  • 忘记密码?点击找回

注册

  • 获取手机验证码 60
  • 注册

找回密码

  • 获取手机验证码60
  • 找回
毕业论文网 > 任务书 > 材料类 > 无机非金属材料工程 > 正文

热解钻屑掺量对油井水泥石力学性能的影响任务书

 2020-06-10 10:06  

1. 毕业设计(论文)的内容和要求

(1) 先对热解钻屑进行特征分析,包括含油量,化学组成,物相组成,粒径分布以及主要污染指标等,以掌握油基钻屑的基本特性。

(2)用热解钻屑部分取代超细水泥,在水固比为0.44时,根据水泥浆体的悬浮稳定性、凝结时间、流动度、密度和水泥石的力学性能(抗压强度、抗冲等)初步确定热解钻屑的最优掺量。

(3)在热解钻屑初步确定的最优掺量下,根据水泥浆体的悬浮稳定性、凝结时间、流动度、密度和水泥石的力学性能(抗压强度、抗冲等)来确定合适的水固比和热解钻屑的最终掺量。

剩余内容已隐藏,您需要先支付后才能查看该篇文章全部内容!

2. 参考文献


[1] 董大忠,王玉满,李新景,等.中国页岩气勘探开发新突破及发展前景思考.天然气工业[J],2016,36(1):19-32.
[2] 孟永涛.页岩气水平井油基泥浆体系的研究及应用[D].荆州:长江大学硕士学位论文,2013.
[3] Mcintyre CP, Harvey PM, Ferguson SH, et al. Determining the extent of biodegradation of fuels using the diastereomers of acyclic isoprenoids[J]. Environscitechnol, 2007,41(7): 2452-8.
[4] Mrayyan B, MN B. Biodegradation of total organic carbons (TOC) in Jordanian petroleum sludge[J]. Journal of Hazardous Materials, 2005,120(1-3): 127#8211;34.
[5] Sauman M,Dewandono A,Hasan R.Clean up waste of drilling and production operation in the VICO Field,East Kalimantan,using separation and bioremediation technology[J].SPE88484, SPE Asia Pacific Oil and Gas Conference and Exhibition, 18-20 October 2004, Perth, Australia.
[6] Chaineau CH, Vidalie JFo, Hamzah US,et al. Bioremediation of Oil-Based Drill Cuttings under Tropical Conditions[J].SPE81562,SPE Middle East Oil Show, 9-12 June 2003, Bahrain.
[7] G. Antle,P. Gover , J.O. Pruett II . Integrated Waste Management: Successful Implementations of Thermal Phase Separation Technology for Oil- and Synthetic-Based Cuttings and Drilling Fluid Waste[J].SPE80595,SPE/EPA/DOE Exploration and Production Environmental Conference, 10-12 March 2003, San Antonio, Texas.
[8] 李舟军. 微波法处理油基钻屑技术[J].石油钻探技术,2012,40(2):54-54.
[9] M.Charles ,S. Sayle, N.W. Phillips , et al. Offshore Drill Cuttings Treatment Technology Evaluation[J].SPE126333,SPE International Conference on Health, Safety and Environment in Oil and Gas Exploration and Production, 12-14 April 2010, Rio de Janeiro, Brazil.
[10] R.L. Stephenson. Thermal Desorption of Oil from Oil-Based Drilling Fluids Cuttings: Processe and Technologies [J]. SPE88486, SPE Asia Pacific Oil and Gas Conference and Exhibition, 18-20 October 2004, Perth, Australia .
[11] A. J. Murray, | M. Kapila ,| G. Ferrari, et al. Friction-Based Thermal Desorption Technology: Kashagan Development Project Meets Environmental Compliance in Drill-Cuttings Treatment and Disposal[J].SPE116169,SPE Annual Technical Conference and Exhibition, 21-24 September 2008, Denver, Colorado, USA.
[12] 李学庆,杨金荣,尹志亮,等.油基钻井液含油钻屑无害化处理工艺技术[J].钻井液与完井液,2013,30(04):81-83.
[13] ALMUDHHI S. M. Environmental impact of disposal of oil-based mud waste in Kuwait [J] .Petroleum Science amp; Technology,2016,34(1):91-96.[14] ALAVI N, MESDAGHINIA A, NADDAFI K, et al. Biodegradation of Petroleum Hydrocarbons in a Soil Polluted Sample by Oil-Based Drilling Cuttings[J]. Soil amp; Sediment Contamination, 2014,23(5): 586-597.
[15] MKPAORO M. I. F, OKPOKWASILI G. C, JOEL O. F.A review of drill-cuttings treatment and disposal methods in nigeria-the gaps and way forward[C].Conference paper of the SPE Nigeria Annual International Conference and Exhibition on Treatment and Disposal Methods for the Drill-Cuttings , Lagos, Nigeria, 2015:1-9.[16] 何焕杰,张淑侠,王爱华,等.气田深井聚磺钻井液废液复合固化处理技术研究[J].环境工程学报,2010,4(11):2489-2493.
[17] KARAMALIDIS A. K,VOUDRIAS E. A. Cement-based stabilization/solidification of oil refinery sludge: Leaching behavior of alkanes and PAHs[J]. Journal of Hazardous Materials,2007,148(1):122-135.
[18] 何小红.长春地区柴油污染土性质及水泥固化效果研究[D].长春:吉林大学硕士学位论文,2015.[19] 李早元,柳洪华,郭小阳,等.油基钻井液组分对水泥浆性能的影响及其机理[J].天然气业,2016,36(03):63-68.[20] LI zaoyuan,LIU honghua, GUO xiaoyang,et al.Contamination of cement slurries with oil based mud and its components in cementing operations[J]. Natural Gas Science and Engineering,2015,29:160-168.
[21]徐亦冬, 张利娟, 陆云龙. 粉煤灰、矿渣及硅灰对水泥胶砂流动性及早期强度的影响[J]. 混凝土, 2005, (9): 39-41.

3. 毕业设计(论文)进程安排

2016.12-2017.1 阅读文献,完成文献综述和开题报告
2017.1-2017.3 对掺有热解钻屑的油井水泥石进行力学性能测试, 分析钻屑掺量对其力学性能的影响。


2017.3-2017.4 优选出与体系配伍性良好的外加剂,并确定外加剂的掺量,优化出基本配方。


2017.4-2017.6 完成毕业论文的书写。

剩余内容已隐藏,您需要先支付 10元 才能查看该篇文章全部内容!立即支付

企业微信

Copyright © 2010-2022 毕业论文网 站点地图