首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Design and Development of a Specially Modified Positive Displacement Rotary Screw Pump and Relevant Hydraulic Circuit to Enhance 'Entrained Air Handling' Capability in a Closed Loop Lube Oil System
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Design and Development of a Specially Modified Positive Displacement Rotary Screw Pump and Relevant Hydraulic Circuit to Enhance 'Entrained Air Handling' Capability in a Closed Loop Lube Oil System

机译:改进型正排量旋转螺杆泵和相关液压回路的设计和开发,以增强闭环润滑油系统的“加气​​处理”能力

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Rotary screw type positive displacement (RSPD) pumps are commonly used in oil and gas industry for pumping of mineral lube oil in services where they can be mechanically driven by gears coupled to a train driver. Installation of these pumps is critical and should be designed jointly by vendors and users according to project specific restrictions (i.e., the arrangement of the entire oil circulation system). This paper describes a real case in which restrictions due to lube oil system arrangement have produced low pump suction head and have amplified the influence of air bubbles that remained entrained in oil despite lube oil tank degassing. The investigations have been directed toward the mathematical modeling of the aeration phenomenon coupled with experimental measurements of critical parameters taken on the shop plant. Among corrective actions identified and considered there are reduction of quantity of air entering the lube oil system and revamping of the entire lube oil system with changes in piping, tank and also in pump model together with special modifications of internal path to enhance air handling capabilities. In order to validate pump behavior with reference to resistance to aeration (monitoring noise and vibration) a special simulation setup was jointly developed by end user and manufacturer on a pilot test bench to carry out the various performance tests. The numerical data collected during shop aeration test have confirmed that the pump was able to handle the expected amount of entrained air with noise and vibrations within industrial limits. The pumps tested in the pilot bench were installed at user's site and the effectiveness of the synergic corrective actions listed above was successfully verified. The study concludes that an early estimation of entrained air in the lube oil system is critical for design and development of either the RSPD pump or the entire lube oil circuit of a motor compressor train. When a critical quantity of entrained air is likely to be reached at pump suction (near 10% in volume), pump manufacturers and end users should apply some basic rules related to "design for aeration" of the pump and agree on a nonroutine test to be performed at manufacturer's shop before pump installation at site. This will serve as a reliable prediction of pump air handling capabilities, without which effective operation, reliability and durability of the pump could be jeopardized.
机译:旋转螺杆式正排量(RSPD)泵通常用于石油和天然气工业中,用于在服务中泵送矿物润滑油的场合,在这种情况下,它们可以通过与火车驾驶员连接的齿轮进行机械驱动。这些泵的安装至关重要,应由卖方和用户根据项目的特定限制(即整个油循环系统的布置)共同设计。本文描述了一个真实的案例,其中由于润滑油系统布置的限制而导致泵吸头低,并且放大了尽管润滑油箱脱气仍残留在油中的气泡的影响。这些研究是针对曝气现象的数学建模,以及对车间工厂中关键参数的实验测量。在已确定和考虑的纠正措施中,随着管道,油箱以及泵型号的变化以及内部路径的特殊修改以增强空气处理能力,减少了进入润滑油系统的空气量,并对整个润滑油系统进行了改造。为了根据抗充气性(监视噪音和振动)来验证泵的性能,最终用户和制造商在中试台上共同开发了一种特殊的模拟设置,以进行各种性能测试。在车间曝气测试期间收集的数值数据已证实,该泵能够处理预期数量的夹带空气,且噪声和振动在工业范围内。在先导台上测试的泵已安装在用户现场,并且成功验证了上述协同纠正措施的有效性。该研究得出的结论是,对于RSPD泵或整个电动压缩机组的润滑油回路的设计和开发,润滑油系统中夹带空气的早期估计至关重要。当在泵吸入时可能达到临界量的夹带空气(体积接近10%)时,泵制造商和最终用户应应用一些与泵“充气设计”有关的基本规则,并同意对泵进行非常规测试在现场安装泵之前,应在制造商的工厂进行。这将作为对泵空气处理能力的可靠预测,否则将可能危及泵的有效运行,可靠性和耐用性。

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