查询词典 gas well
- 与 gas well 相关的网络例句 [注:此内容来源于网络,仅供参考]
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Its working principle is introduced here: when a gas or powder starts a flame or explosion, the ultraviolet sensor will acquire the signal and sent it to the controller to produce the trigger voltage, and then the explosive suppressor will release a great number of gas promptly spraying dry powder extinguishing agents, which thereby form extinguishing agent smoke and effectively extinguish explosion flame. It is rapid and of strong antiinterference ability, high reliability and can be fixed easily. It is capable of effectively suppressing natural gas explosion in the simulative gas explosion test. It can be applied in CNG stations or other site where has explosive and combustible gas whereby to enhance the overall accident control ability.
当发生气体燃烧、爆炸时,紫外传感器接收火焰信号,传送至控制器,控制器产生触发电压,使抑爆器的产气剂释放出大量气体,驱动快速喷撒出干粉灭火剂,形成足够浓度的灭火剂粉雾体,有效扑灭爆炸火焰,具有动作速度快、抗干扰能力强、可靠性高、安装使用方便等优点,在天然气模拟爆炸试验中能有效抑制天然气爆炸,可用于CNG加气站或其他燃烧爆炸性气体场所,提高其整体防灾抗灾能力。
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And it is concluded that the No.4-2coal seam is a mid-reserve and low-permeable seam, with surrounding rocks having low enclosed system and high permeability. And the coal seam's gas content is low, while its quantity in the roof-sandstone which is the main source of coalface's gas emission is high . The quantitative index used to analyze gas content and gas emission amount are pointed out systematically. And gray association analysis method is adopted to search the main factors affecting coal-bed content and gas emission amount.
系统提出了分析影响煤层瓦斯含量与采面瓦斯涌出量大小的量化因素指标,并将灰色关联分析原理引入煤层瓦斯含量与瓦斯涌出量主控因素的研究中,筛选出了煤层顶板含油指数,顶板砂泥岩比、4-2号煤层顶板以上煤系厚度3个因素指标为影响4-2号煤层瓦斯含量的主控地质因素;煤层埋藏深度,煤层瓦斯含量,煤层顶板含油气砂岩厚度,煤层顶板含油强度及工作面回采进度5个因素为影响综采面瓦斯涌出量的主控因素。
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Wet stack emission will reduce the lifting height of the flue gas, and it's not beneficial to gas diffusion; the momentum of the flue gas should be guaranteed to decrease the plume downwash and to promote gas diffusion; each of the emission index of the wet flue gas can meet the requirements for the environmental protection.
数值计算与分析表明,湿烟囱排放会增强对烟囱的腐蚀性,需采用特殊的防腐处理;湿烟囱直接排放会降低烟气抬升高度,不利于扩散;为减少烟流下洗,增强扩散,应保证烟气的出口动量;湿烟气各项排放指标能满足环保要求。
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Assuming a condition cont-rol reserve calculation,combimatively solve the material balance equation of gas recovery and binomial gas recovery equation for gas well,calculate the production curve of gas well and match it with the actual production curve,finally determine the reserve and productivity parameter,this method doesn't need much pressure build-up data,and can calculate the c...
该方法的推导思路是:假设在某一控制储量条件下,联立求解气藏物质平衡方程式和气井二项式采气方程,计算气井采气曲线并将其与实际的采气曲线相匹配,最后确定储量、产能参数。该方法不需要较长的多次关井复压资料,在气藏受水驱影响较小时,还可计算一口探井或气藏试采早期所反映出的气井控制储量,在气藏生产中得到应用,计算结果较为可靠
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In gas field development,the productivity of gas well occupies a decisive place and takes an important effect,being one of the bases of the gas field development plan design and rational gas well proration.
在气田开发中,气井的产能具有举足轻重的地位和作用,它是气田开发方案设计、气井合理配产的依据之一。
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Sulige Gas Field has low porosity, low permeability, low abundance, strong heterogeneity, complicate geological condition and is not very good at effective sand body continuity and connectivity, and so on. It is observed that gas well productivity of this gas reservoir is low, formation energy supply not enough, single well drainable gas is finite.
苏里格气田具有低孔、低渗、低丰度,非均质性强和有效砂体连续性、连通性差等特征;从已有的试井动态资料可以看出,该类气藏气井产能较低,地层能量供给不足,单井可采气量有限。
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Based on predecessor\'s research results, formation condition of oil-gas reservoirs of S_(2+3) oil layer in westslope region was comprehensively and systematicaly studied, through using comprehensively seismics,logging, well logging, core, analysis assay data and paleontology data and adopting the latest theories andtechniques and methods of structural geology, sequence stratigraphy, sedimentography, petroleum geology,and oil-gas accumulation dynamics, etc. Main controlled factors, periods and models of oil-gasaccumulation and distribution were identified, favorable exploration areas were forecasted, throughdissecting typical oil-gas reservoirs and analyzing oil-gas accumulation mechanism and process.
本文在充分借鉴前人研究成果的基础上,综合利用地震、测井、录井、岩心及分析化验和测试资料,采用构造地质学、层序地层学、沉积学、石油地质学、成藏动力学等多学科的最新理论和方法,对西斜坡区萨二、三油层油气成藏条件进行了全面系统的研究,通过西斜坡区萨二、三油层典型油气藏解剖和油气运聚机理及过程分析,搞清了其油气成藏与分布的主控因素、期次和模式,进而预测有利勘探区带。
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The difference between the calculating results of gas-oil rate considering or neglecting casing gas is compared. It is demonstrated that bigger error will be caused without considering casing gas. When the pressure at the casing shoe is lower than the babble point pressure, there is a certain proportion relation between the easing gas production and the submergence pressure as well as the easing-tubing sectional area ratio.
针对放套管气生产油井,现场测试了多口油井的套管气量,比较了考虑套管气与忽略套管气对气油比计算结果的差异,证明忽略套管气产量会给气油比计算结果带来较大偏差。
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Both the gas velocity profiles and total pressure distributions are well axial symmetric when flue gas pass by the demisters with rotated-stream trays , which the liquid drops are revolved and threw toward wall surface by flue gas to carry out gas-liquid separation .
结果表明:烟气经过折板除雾器,产生了明显的压降,且在拐角区域,湍流耗散强烈,是实现气液分离的关键区域;而烟气经过旋流板除雾器,速度和压强分布具有良好的对称性,液滴被气流旋转抛向壁面实现气液分离。
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In this paper, we studied content as follows: techonlogy of dry desulfurization for gas , ground metric technology for gas well and ascertaining of main technical parameters and technical equipments for ground technical project of gas storage (scale of gas injection, injection pressure, selection of compressor and adsorption of oil steam).
本文研究了以下内容:天然气干法脱硫的工艺技术,采气井地面计量工艺技术,储气库地面工艺方案中主要工艺参数和工艺设备的确定(注气规模、注入压力、压缩机的选择、油蒸汽吸附等)。
- 相关中文对照歌词
- Gas
- Lifes A Gas
- Gas Pedal
- Wind Up Workin' In A Gas Station
- Poor Man's Hydraulics
- Gas And Mud
- Jumpin' Jack Flash / Youngblood
- Banapple Gas
- Jumpin' Jack Flash
- No More Gas
- 推荐网络例句
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Salt is good, but if the salt becomes flat and tasteless, with what do you season it?
14:33 盐本是好的,盐若失了味,可用什么叫它再咸呢?
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He reiterated that the PLA is an army of the people under the leadership of the Communist Party of China.
他重申,人民解放军是在中国共产党领导下的人民军队。
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After five years at the Laue-Langevin Institute in Grenoble, France, Jolie turned his focus to experimental work when, in 1992, he accepted a position at the University of Fribourg in Switzerland.
他在法国格赫诺柏的劳厄–蓝吉分研究所工作了五年之后,1992年转往瑞士夫里堡大学从事实验研究。