裂化油 的英文怎麼說

中文拼音 [lièhuàyóu]
裂化油 英文
cracked oil
  • : 裂動詞[方言] (東西的兩部分向兩旁分開) open
  • : Ⅰ名詞1 (脂肪; 油脂) oil; fat; grease 2 (姓氏) a surname Ⅱ動詞1 (用桐油、油漆等塗抹) apply t...
  1. For this purpos, from the point of the log geology, aimed at the actuality of the current fractured reservoir log geology interpretation and evaluation, based on synthetical analysis of the current domestic and foreign fruit of fractal dimension investigation of reservoir fracture, using the method and technique of fractal dimension, through the further discussion of the fractal dimension characteristics of m index and n index in the log interpretation archie model in a sample way and through the theoretic reasoning to the fractal dimension dfa and m index of fractured reservoir interval ' s log curve, according to the geophysical signification of the fractal dimension dfa of fractured reservoir interval ' s log curve shape : the more complicated the change of the curve shape is, the larger the its dfa value is, then the more complicated space structure of fracture and pore, then the higher value of m index of space structure of fracture and pore, and so on, the text propounds an improved method, based on box dimension, of covering log curve with scale grid, and by programming computes the dfa and its m index value of fractured reservoir interval ' s log curve, for instance, ac and rt curve, ect, then further puts this technique into application investigation, and makes analysis of application effects in the reservoirs located in l area of qx oil field from three aspects : 1. the dfa and its m index value of fractured reservoir interval ' s log curve, for instance, ac and rt curve, ect, which are derived from computing, is used to identify reservoir type by crossplotting m index with the product df _ acrt of fractal dimension of acoustical wave log curve and restivity log curve and by experiential discriminance plate of reservoir type in l area of qx oil field

    因此,對該區縫性儲集層的類型識別、孔滲特徵的測井地質解釋以及儲層縫的發育和分佈規律進行深入的研究便成為本文研究的出發點。為此,本文從測井地質的角度,針對當前縫性儲層測井地質解釋與評價的現狀,在綜合分析當前國內外儲層縫的分形分維研究成果的基礎上,利用分形分維方法和技術,通過對archie測井解釋模型中的m指數、 n指數的分形分維特性的深入淺出的論述以及縫性儲層段測井曲線分維d _ ( fa )與m指數的理論推導,根據縫性儲層測井曲線形態分維值的地球物理意義? ?曲線變越復雜,則其分維值d _ ( fa )越大、縫孔隙空間結構越復雜、縫孔隙空間結構指數m值越高等特徵,提出了改進的基於盒維數的測井曲線網格覆蓋法,編程計算了縫性儲層段常規測井曲線(如聲波和電阻率曲線)上分形分維值及其m指數值,進而從以下三個方面對qx田l區塊的藏進行應用研究,效果十分理想: 1將計算得到的可變的m指數與聲波和電阻率分維之積df _ acrt進行交繪,採用儲層分維值分類技術統計分析這些參數變的規律,並結合qx田l區塊儲層類型經驗判別圖版,從而實現qx田l區塊下白堊統的縫性儲層的類型識別。
  2. Study on carboxylic lanthanum as gasoline antiknocks

    氫轉移反應與催質量
  3. Study on hydrocracking processing of daqing distillate oil

    大慶餾分加氫的研究
  4. Measures of increasing the residue blending proportion of feed stock for hoc unit

    提高重裝置進料摻渣率的措施
  5. The company takes advantage of advanced dcs control system, high efficient float valve tray technology, high efficient energy - saving exchange techniques, fcc catalytic cracking double riser, two - generator regeneration process, polypropylene with loop reactor process and refining and blending process of high - number gasoline, etc. to ensure providing the users with high - tech qualified products

    公司採用先進的dcs控制系統,高效的浮閥塔盤技術,高效節能交換技術, fcc催雙提升管、兩器再生工藝,環管聚丙烯工藝,高排號汽精製調和工藝等,確保高科技合格產品送至用戶手中。
  6. Abstract : large time delay exists in complicated practical processes. for example, in fccu ( fluidized catalytic cracker unit ) reactor - regenerator, the feed is preheated through heat exchanging from fractional column slurry, thus results in large time delay. a predictive control system is designed for such processes, where the kernal algorithm is dynamic matrix control. application results show that the control behavior is improved than original pid control

    文摘:實際的復雜工業過程,往往具有大的時滯,例如:煉廠催裝置的反應再生系統,其原料預熱通過漿換熱實現,因此時滯特別大.本文針對這一類大的時滯過程,設計了以動態矩陣控制為核心演算法的預測控制系統,運行實踐表明:這一控制方案比原pid控制在控制質量上有較大提高
  7. Study on conversion of coker gas oil by two - stage riser fluid catalytic cracking

    兩段提升管催研究
  8. Catalytic gas oil

    瓦斯
  9. Pillared interlayed clay for desulfurization of fluidized catalytic gasoline

    交聯粘土用於催吸附脫硫
  10. Application of two - stage riser catalytic cracking technology in petrochemical factory of yumen oilfield

    兩段提升管催技術在玉門煉工總廠的應用
  11. Research of extraction of sulfide in fcc gasoline with alkaline solution

    堿洗法萃取催中硫物的研究
  12. It is shown that the gam and alsphene in the seven catalytic stocks were not very high except in residual oil ; the saturate hydrocarbons in all seven were hig her ; aromatic contents were lower except in slurry oil and recycle oil, therefore, t he s even catalytic stocks except slurry oil and recycle oil are all good feedings of catalytic cracking unit

    分析測定結果表明,這7種催原料除常渣外,膠質瀝青質含量均不高;飽和烴含量均較高;芳烴含量除漿、回煉外,其餘原料含量均較低,所以除漿、回煉外,均是作催的良好原料。
  13. It is installed with various production equipment for the atmospheric distillation, catalytic cracking of heavy oil, delayed cocking, hydrogenated white oil, anti - corrosion additives, alkane - purpose chemical reagent and special oils

    中國石集團杭州煉廠現有常減壓蒸餾、重、延遲焦、加氫白、防銹添加劑、烷烴學試劑和特種品等生產裝置。
  14. Abstract : the authers has studied the phase cha racteristics and phase equilibri um of sda ( solvent - deasphalting ) of dagang residue - ic4 and dagang residue m ixed w ith some ccdo ( catalytic cracking decant oil ) - ic4 system under subcritical condit ions systematically

    文摘:系統地研究了大港渣-異丁烷體系及混有催澄清的大港渣-異丁烷體系在亞臨界條件下,溶劑脫瀝青過程的相特性及相平衡。
  15. The intermediate pressure exhaust gas boiler in the shop of yantzi petrochemical oil refinery works is needed to recycle the exhaust heat from the dust

    揚子石廠催車間中壓余熱鍋爐,用來回收催再生煙氣的余熱。
  16. The isbl of this hp hydrocracker unit will start at the unit filter feed vessel and conclude at product rundowns from the fractionation and the naphtha minus section

    該高壓加氫裝置的界區從裝置過濾器進料罐開始,直到從分餾與脫石腦段來的產品出料罐為止。
  17. Hydroisomerization property of hydrocracking tail oil

    加氫的加氫異構性能
  18. Suspension bed hydrocracking of atmospheric residue from dagang oil field

    大港常壓渣懸浮床加氫反應
  19. Colloidal properties during slurry - bed hydrocracking reaction of kelamay atmospheric residue

    克拉瑪依常壓渣懸浮床加氫反應膠體性質
  20. Advances in technology for rational utilization of rfcc residue

    裂化油漿綜合利用技術研究進展
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