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首页> 外文期刊>ASHRAE Transactions >Analyzing the Potential for Condensate Carryover from a Gas Turbine Inlet Cooling Coil
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Analyzing the Potential for Condensate Carryover from a Gas Turbine Inlet Cooling Coil

机译:分析来自燃气轮机进口冷却盘管的冷凝水残留量

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Several installations of coil-based mechanical chilling for gas turbines are now more than 15 years old. Experience has shown that carryover of water droplets into the ductwork and, hence, into the gas turbine bellmouth has not been demonstrated by long-term operational experience. In this paper, we attempt to quantify the methodology for calculating the air and water conditions for a chiller coil installation. For comparison purposes, we provide a similar calculation for an inlet fogging system. We show that the carryover due to the overspray associated with inlet fogging is several orders of magnitude greater than from a chilling coil when installed with a typical drift eliminator. To date, it has not proven feasible (in a practical method) to measure in the field the quantity of water entrainment associated with a cooling coil. We have taken a very conservative approach with this analysis, showing the worst-case assumptions, even though empirical data strongly support otherwise. Our calculations show that a conservative coil design yields a manageable amount of condensate carryover off the back face of the coil, which, in turn, is almost totally mitigated by the use of a drift eliminator. By applying several layers of conservatism to our calculations, we can demonstrate a high estimate of approximately 0.04 gpm (9 liter per hour) of water carryover to the turbine, mostly of very small aerosol droplets.
机译:燃气轮机的几种基于盘管的机械冷却装置现已使用15年以上。经验表明,长期的运行经验尚未证明水滴会进入管道系统,进而进入燃气轮机喇叭口。在本文中,我们试图量化计算冷水机盘管安装的空气和水条件的方法。为了进行比较,我们为进气雾化系统提供了类似的计算。我们显示,与典型的除雾器一起安装时,由于与入口雾化相关的过量喷涂而导致的残留量要比冷却盘管高出几个数量级。迄今为止,在现场测量与冷却盘管相关的水夹带量尚未证明是可行的。我们进行了非常保守的分析,显示了最坏情况的假设,即使经验数据强烈支持其他情况。我们的计算表明,保守的盘管设计会在盘管的背面产生可控量的冷凝水残留物,这反过来又可以通过使用除水器来完全缓解。通过对我们的计算应用几层保守性,我们可以证明大约有0.04加仑/分钟(每小时9升)的水被带入涡轮机,其中大部分是非常小的气溶胶滴。

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