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英国工程师约翰·斯米顿的实验方法:优化、假设检验和探索性实验。

English engineer John Smeaton's experimental method(s): Optimisation, hypothesis testing and exploratory experimentation.

机构信息

Centre for Logic and Philosophy of Science, Vrije Universiteit Brussel, Pleinlaan 2, Room 5B425, B-1050, Brussels, Belgium.

出版信息

Stud Hist Philos Sci. 2021 Oct;89:283-294. doi: 10.1016/j.shpsa.2021.07.004. Epub 2021 Sep 20.

Abstract

In this paper I provide a detailed account of eighteenth-century engineer John Smeaton's experimental methods, with the aim of bringing our understanding of his work into line with recent research in the history and philosophy of science. Starting from his use of the technique of parameter variation, I identify three distinct methodological aims in the research he carried out on waterwheels, windmills and hydraulic mortars. These aims are: optimisation, hypothesis testing and maxim generation. The main claim of this paper is that Smeaton did more than merely improve engineering methods by systematising earlier artisanal approaches, which is the classic view of Smeaton's method developed by historians of technology in the 1990s. I argue instead that his approach bridged the divide between science and technology, by integrating both hypothesis testing and exploratory experimentation. This is borne out, in particular, by the way that Smeaton emphasised the exploratory side of the work he published in the Philosophical Transactions, in contrast to his account of the construction of the Eddystone lighthouse, which was aimed at a broader, non-specialist public. I contribute to recent research on exploratory experimentation by showing - in line with other work on this topic - that exploratory experimentation is not incompatible with hypothesis testing. This new perspective on Smeaton's method will hopefully lead to further research and new insights into the relation between science and technology at the start of the Industrial Revolution.

摘要

本文详细介绍了 18 世纪工程师约翰·斯米顿的实验方法,旨在使我们对他的工作的理解与科学史和科学哲学的最新研究保持一致。从他对参数变化技术的使用出发,我确定了他在水车、风车和水力 mortar 的研究中存在三种不同的方法论目标。这些目标是:优化、假设检验和最大化生成。本文的主要论点是,斯米顿不仅通过系统地采用早期的手工艺方法来改进工程方法,这是 20 世纪 90 年代技术史学家对斯米顿方法的经典看法。相反,我认为他的方法弥合了科学和技术之间的鸿沟,将假设检验和探索性实验结合在一起。这一点尤其体现在斯米顿在《哲学汇刊》中发表的工作强调探索性方面,而与他对埃迪斯通灯塔建设的描述形成鲜明对比,后者的目的是针对更广泛的非专业公众。我通过展示——与该主题的其他工作一致——探索性实验与假设检验并不矛盾,为探索性实验的最新研究做出了贡献。这种对斯米顿方法的新视角有望为工业革命初期科学与技术之间的关系带来进一步的研究和新的见解。

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