Advances in Historical Studies

Advances in Historical Studies

ISSN Print: 2327-0438
ISSN Online: 2327-0446
www.scirp.org/journal/ahs
E-mail: ahs@scirp.org
"Over and Undershot Waterwheels in the 18th Century. Science-Technology Controversy"
written by Danilo Capecchi,
published by Advances in Historical Studies, Vol.2 No.3, 2013
has been cited by the following article(s):
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[3] Epistemology and Natural Philosophy in the 18th Century
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[4] The Emergence of the Science of Engineering
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[5] Sustainability assessment of hydropower water wheels with downstream migrating fish and blade strike modelling
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[6] Performance of Undershot Water Wheel as Mini Hydro Power Plant For Agricultural Road
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[7] Improvement of Performance of Undershot Cross-Flow Water Turbines Based on Shock Loss Reduction
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[8] 하사식 물레방아 수차 형상을 적용한 상수도관 마이크로 소수력발전용 터빈 설계에 관한 수치해석적 연구
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[9] Effect of flow rate on performance and flow field of an undershot cross-flow water turbine
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[10] Loss analysis of gravitation vortex type water turbine and influence of flow rate on the turbine's performance
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[11] Embedded research in energy innovation: An examination of cases and theories of knowledge creation for power generation and lighting technologies
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[12] Performance of Undershot Waterwheel Curved Blade of the Laboratory Scale
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[13] Design and Study of Hydroelectric Power Plant by Using Overshot and Undershot Waterwheels
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[14] Design and analysis of hydroelectric generation using waterwheel
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[15] A LABORATORY SCALE CURVE BLADED UNDERSHOT WATER WHEEL CHARACTERISTIC AS AN IRRIGATION POWER
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[16] A study on flow fields and performance of water wheel turbine using experimental and numerical analyses
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[17] A Study of the Flow Field of an Axial Flow Hydraulic Turbine with a Collection Device in an Open Channel
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[18] Early Analysis of Jumping Water Effect on Breastshot Waterwheel for Microhydro Power Plant
Journal of Physics: Conference Series, 2018
[19] Stream water wheels as renewable energy supply in flowing water: Theoretical considerations, performance assessment and design recommendations
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[20] Gravity water wheels as a micro hydropower energy source: A review based on historic data, design methods, efficiencies and modern optimizations
Renewable and Sustainable Energy Reviews, 2018
[21] Performance Characteristics and Flow Field of Axial Flow Hydraulic Turbine in Shallow Open Channel
International Journal of Fluid Machinery and Systems, 2018
[22] Energy for Sustainable Development
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[23] The millers' tales: sustainability, the arts and the watermill
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[24] Investigation and optimization of the performance of gravity water wheels
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[25] Performance characteristics of axial flow hydraulic turbine with a collection device in free surface flow field
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[26] Study on Performance Improvement of an Axial Flow Hydraulic Turbine with a Collection Device
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[27] Hydraulic Behavior and Performance of Breastshot Water Wheels for Different Numbers of Blades
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[28] A Parametric Study about Blade Shapes and Blade Numbers of Water Wheel Type Tidal Turbine by Numerical Method
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[29] A Parametric Study about Blade Shapes and Blade Numbers of
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[30] Performance characteristics, power losses and mechanical power estimation for a breastshot water wheel
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[31] Unsteady flow analysis of an axial flow hydraulic turbine with collection devices comprising a different number of blades
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[32] Output power and power losses estimation for an overshot water wheel
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[33] EFFICIENCY OF TRADITIONAL WATER WHEELS
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[34] A CFD Study on Design Iterations of the Hydrobox Energy Converter
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[35] Study on an Axial Flow Hydraulic Turbine with Collection Device
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[36] Geological and geotechnical characteristics of hydroelectric power stations in the tourist stream valleys, N-Iraq
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