How Mechanical Pipe Organ Actions Work Against Transient Control

How Mechanical Pipe Organ Actions Work Against Transient Control
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机械管风琴动作如何对抗瞬态控制

DOI:
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发表时间:
2012
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影响因子:
--
通讯作者:
Alan Woolley
Alan Woolley
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作者:
Alan Woolley

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本文总结了以前发表和介绍的工作,并得到了其他材料的支持。通过吹奏管风琴管可以清楚地证明,它的瞬变是可以变化的,尽管这种效果通常不被认为是音乐性的。几十年来,人们一直在争论机械管风琴的动作是否允许演奏者通过移动琴键的方式来改变瞬变。不同的意见从短暂的控制是根本的器官发挥,它是不可能的。这项工作表明,机械器官的动作的物理特性的工作对瞬态控制,这是证实了键和托盘运动和压力变化的测量,而风琴演奏。它还研究了风琴手为了表现力而使用的其他方法。本文还考虑了瞬变如何可能会有所不同,由于其他特点的器官,是外部球员的直接控制,但可能会导致他们相信,变化是由于他们的关键动作的差异。
This paper summarises work published and presented previously, supported by additional material. It can be clearly demonstrated by blowing an organ pipe that its transient can be varied, although the effect is not generally considered musical. It has been debated for several decades whether mechanical pipe organ actions allow the player to vary the transient by the way in which the key is moved. Opinions vary from transient control being fundamental to organ playing to it not being possible. This work shows that the physical characteristics of mechanical organ actions work against transient control and this is corroborated by measurements of key and pallet movements and pressure changes whilst organists are playing. It also looks at what other methods organists are using in order to play expressively. The paper also considers how transients might vary due to other characteristics of organs that are outside players direct control but might lead them to believe that variations are due to differences in their key movements.
机械管风琴动作以及为什么通过节奏变化而不是瞬时控制来实现表达
DOI: --
发表时间: 2010
期刊: --
影响因子: --
作者:
Woolley, A
通讯作者: Woolley, A