首页> 外文会议>Biennial International Pipeline Conference >ENHANCEMENT OF EFFICIENCY AND ENVIRONMENTAL FRIENDLINESS OF DRIVING GAS TURBINES BY INTEGRATING OF EXISTING TURBOMACHINE AND HIGH TEMPERATURE CERAMIC OVERSTRUCTURE
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ENHANCEMENT OF EFFICIENCY AND ENVIRONMENTAL FRIENDLINESS OF DRIVING GAS TURBINES BY INTEGRATING OF EXISTING TURBOMACHINE AND HIGH TEMPERATURE CERAMIC OVERSTRUCTURE

机译:通过整合现有的涡轮机和高温陶瓷过度结构来提高驾驶燃气轮机的效率和环境友好性

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Gas turbine engines have been widely applied to pipeline systems to drive pumping equipment (gas compressors, oil pumps, etc) and electric generators. Thus, there are over 4 000 units involved into the gas industry operation in Russia. Nearly 90% of machines of around 60 models are running as gas pumping units. E.g. eight types of gas turbine engines of power ranging 1 500 to 4 300 KW are operated at the electric stations to supply electric power for gas pipeline's own needs (ONS). The bulk (over 30%) of the standard units were designed during the 60s of the past century and, therefore, their efficiency is rather low (23-28%) with the running time mounting to 60 000 - 80 000 hours. A good number of the existing units do not meet the international norms in terms of admissible toxic emissions (NO{sub}x, CO, etc). At the same time, the state of the basic hardware (casing, rotors, bearings, combustors, heat exchangers, etc) is, in fact, not bad, i.e. all these devices and systems could operate for, at least, 100 thousand hours more. This is an industrially well matured and thoroughly mastered, reparable and relatively inexpensive equipment. Therefore, it is of a real practical interest to implement an upgrade of the "old" machines which would allow provision of both using the existing hardware under standard operating conditions and their efficiency increasing (by 6-10% abs) and the NO{sub}x emissions reduction(up to 12.5-37.5 ppm) and CO emissions (up to 50 ppm). The like upgrade could be put into effect on the basis of integration of the existing turbomachines of gas pumping units or ONS and the ceramic overstructure - a high pressure unit. The Research -Engineering "Ceramic Heat Engines" Center (NIZ KTD) jointly with the JSC "Proletarsky Works" (St.Petersburg) has developed an ONS gas turbine drive on the base of the 1.5 MW gas turbine engine with a high temperature ceramic overstructure made as a high pressure turbocompressor with a lox-toxic combustor installed between its compressor and turbine. As a result of such modification, a pilot GTE was produced with the initial gas temperature of 1050°C instead of 827°C but of the same power and with the efficiency of 28% instead of 22%, the NO{sub}x emissions being 12.5 ppm instead of 50 ppm. The main design modifications of the base-line engine first and foremost were linked with the standard compressor (4 last stages are envisaged to be removed) and the combustor. The independent high-pressure unit, at the same time, must be designed and manufactured anew. Given an effective small-size ceramic airheater is applied, you can increase its initial gas temperature (up to 1350°C with the GTE efficiency increased up to 42-47%.
机译:燃气涡轮发动机已被广泛地应用到管道系统,以驱动泵送设备(气体压缩机,油泵等)和电动发电机。因此,也有涉及到俄罗斯天然气工业运行超过4万台。大约60款机器的近90%正在运行的气体抽油机。例如。八种类型的功率为1至500 4 300 KW的燃气涡轮发动机的在所述电动站操作以用于气体管道自身的需要供给电力(ONS)。标准单位的体积(超过30%)的过去的世纪60年代期间,被设计的,因此,它们的效率是相当低的(23-28%)与所述运行时间安装到60 000 - 80 000小时。相当数量的现有单元的不符合国际准则在受理有毒排放物(NO {子}的x,CO等)的条款。同时,基本硬件的状态(机壳,转子,轴承,燃烧室,热交换器等)时,其实不坏,即所有这些设备和系统可以用于操作,至少,十万小时更多。这是一个良好的工业和成熟掌握透,可修复和相对便宜的设备。因此,它是一个真正的现实利益为贯彻落实“老”的机器,这将允许提供两种使用标准的工作条件和工作效率提高(6-10%ABS)在现有硬件的升级和NO {子} x排放减少(高达12.5-37.5 PPM)和CO排放(最高至50ppm)。类似升级可能付诸实施的气体抽油机或ONS和陶瓷overstructure现有的涡轮机整合的基础上 - 高压单元。研究 - 工程“陶瓷热机”中心(NIZ KTD)与JSC“Proletarsky作品”共同(圣彼得堡)已经开发了1.5兆瓦的燃气涡轮发动机的基座上的ONS燃气轮机驱动用高温陶瓷overstructure制成为高压涡轮压缩机,其压缩机和涡轮机之间安装一LOX-有毒燃烧器。作为这种改性的结果,导频GTE用1050℃代替827℃,初始气体温度,但相同的功率,并与28%的而不是22%的效率产生时,NO {子} x排放为12.5ppm的,而不是为50ppm。基线引擎的主要设计修改首先用标准的压缩机(4个最后阶段设想被移除)和燃烧器相连。独立的高压部,同时,必须设计和重新制造。给定一个有效的小尺寸陶瓷空气加热器被施加,则可以提高其初始气体温度(高达1350℃与GTE效率提高到42-47%。

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