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Buoyancy Effects in Strongly-Pulsed, Turbulent Diffusion Flames

机译:强脉冲湍流扩散火焰中的浮力效应

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摘要

The objective of this experiment is to better understand the combustion behavior of pulsed, turbulent diffusion flames by conducting experiments in microgravity. The fuel jet is fully-modulated (i.e., completely shut off between pulses) by an externally controlled valve system leading to enhanced fuel/air mixing compared to acoustically excited or partially-modulated jets. Experiments are conducted both in laboratories at UW and WPI and in the GRC 2.2s Drop Tower. A single fuel nozzle with diameter d = 2 mm is centered in a combustor 20 20 cm in cross section and 67 cm in height. The gaseous fuel flow (ethylene or a 50/50 ethylene/nitrogen mixture by volume) is fully-modulated by a fast-response solenoid valve with injection times from tau = 4 to tau = 300 ms. The nominal Reynolds number based on the fuel velocity during injection, U(sub jet), is 5,000. A slow oxidizer co-flow properly ventilates the flame and an electrically heated wire loop serves as a continuous ignition source. Diagnostic techniques include video imaging, fine-wire thermocouples and thermopile radiometers, and gas sampling and standard emissions instruments (the last in the laboratory only).
机译:该实验的目的是通过在微重力下进行实验来更好地理解脉冲湍流扩散火焰的燃烧行为。燃料射流由外部控制的阀系统进行完全调制(即在脉冲之间完全关闭),与声激发或部分调制的射流相比,可增强燃料/空气的混合。实验在UW和WPI的实验室以及GRC 2.2s吊塔中进行。直径为d = 2 mm的单个燃油喷嘴在燃烧器中居中,该燃烧器的横截面为20厘米,高度为67厘米。气体燃料流量(乙烯或50/50乙烯/氮气混合物的体积比)通过快速响应电磁阀进行完全​​调节,喷射时间为tau = 4至tau = 300 ms。基于喷射过程中的燃料速度的标称雷诺数U(子射流)为5,000。缓慢的氧化剂并流可适当地使火焰通风,电加热的金属丝回路可作为连续点火源。诊断技术包括视频成像,细线热电偶和热电堆辐射计,气体采样和标准排放仪器(仅在实验室中是最后一种)。

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