首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Absolute measurement of pneumatically conveyed powder using a single long throat venturi
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Absolute measurement of pneumatically conveyed powder using a single long throat venturi

机译:使用单个长喉文丘里管绝对测量气动输送的粉末

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The principle of using a long throated venturi meter to measure the flow rate of two mixed phases is widely published,yet there is no practicable application for accurate measurement in relatively lean particulate conveying.Coal fired power stations would benefit from such a meter.Pulverised coal is conveyed pneumatically through pipes from the mill to the furnace.Control devices that ensure delivery of coal to each burner is equal require an accurate on-line measurement of the coal flowing through each line.Relative comparison of coal flow rate between similar pipelines is possible on-line,but to date no absolute on-line measure has been achieved,and weigh hopper discharge measurement for total coal flow rate is crude.Using a program developed by Azzopardi et al.[B.J.Azzopardi,S.F.C.F Teixeira,C.I.Pulford,A quasi-one-dimensional model for gas/solids flow in Venturis,Powder Technology 102(1999)281-288.]for calculation of the pressure drop in a two phase venturi,a venturi was designed with optimised geometry to give a measurable sensitivity to coal flow rate at the relatively lean conditions encountered in a power station.The venturi was inserted into a pneumatic conveying test rig designed to simulate a coal fired power station.The program predicted the pressure drops measured in the test rig venturi with good agreement.The pressure calibration graphs thus obtained provided a possible means of calculating the air and coal flow rates.Air flow rate was accurate to within 2%.Coal flow rate accuracy was within 20%.Error analysis showed this error to be related to experiment.The program accuracy was shown to be within 7%.This accuracy merits a full scale power station trial.
机译:使用长喉文丘里管流量计来测量两个混合相的流量的原理已广为人知,但在相对稀薄的颗粒物输送中进行精确测量尚无实际应用,煤电厂将受益于这种流量计。气体通过管道从磨机输送到熔炉。确保煤到每个燃烧器的输送量相等的控制装置需要对流经每条管线的煤进行精确的在线测量。可能比较相似管线之间的煤流量在线,但迄今为止尚未实现绝对在线测量,而且称重料斗排放量对总煤流量的测量是粗略的。使用Azzopardi等人开发的程序。[BJAzzopardi,SFCF Teixeira,CIPulford,A Venturis中气体/固体流动的准一维模型,Powder Technology 102(1999)281-288。]为计算两相文氏管中的压降,设计了一个文氏管通过优化几何结构,可在发电厂遇到的相对稀薄条件下对燃煤流量提供可测量的灵敏度。文丘里管被插入到气力输送试验台中,该试验台旨在模拟燃煤发电厂。试验台文丘里管具有良好的一致性。由此获得的压力校准图为计算空气和煤的流量提供了一种可能的方法。空气流量准确度在2%以内,煤流量准确度在20%以内。误差分析表明与实验有关的误差,程序精度显示在7%之内,该精度值得进行大规模的电站试验。

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