International Journal of Rotating Machinery

Scope & Guideline

Pioneering Insights in Rotating Machinery Design

Introduction

Welcome to the International Journal of Rotating Machinery information hub, where our guidelines provide a wealth of knowledge about the journal’s focus and academic contributions. This page includes an extensive look at the aims and scope of International Journal of Rotating Machinery, highlighting trending and emerging areas of study. We also examine declining topics to offer insight into academic interest shifts. Our curated list of highly cited topics and recent publications is part of our effort to guide scholars, using these guidelines to stay ahead in their research endeavors.
LanguageEnglish
ISSN1023-621x
PublisherHINDAWI LTD
Support Open AccessYes
CountryUnited States
TypeJournal
Convergefrom 1994 to 2002, 2004, from 2006 to 2024
AbbreviationINT J ROTATING MACH / Int. J. Rotating Mach.
Frequency1 issue/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressADAM HOUSE, 3RD FLR, 1 FITZROY SQ, LONDON W1T 5HF, ENGLAND

Aims and Scopes

The 'International Journal of Rotating Machinery' serves as a key platform for advancing knowledge in the field of rotating machinery. The journal focuses on theoretical, computational, and experimental studies aimed at enhancing the design, performance, and reliability of rotating mechanical systems.
  1. Rotating Machinery Dynamics:
    Research related to the dynamic behavior of rotating machinery, including vibration analysis, fault detection, and control mechanisms.
  2. Thermal and Fluid Dynamics:
    Studies addressing heat transfer, fluid flow, and cooling techniques in rotating components, essential for efficiency and performance.
  3. Material Behavior and Failure Analysis:
    Investigations into material properties, contact fatigue, and failure mechanisms in rotating machinery, focusing on enhancing durability and reliability.
  4. Control Systems and Optimization Techniques:
    Development of advanced control strategies and optimization methods to improve the operation and efficiency of rotating machinery.
  5. Experimental and Numerical Methods:
    Utilization of both experimental setups and numerical simulations to validate theories and enhance understanding of rotating machinery performance.
Recent publications indicate a shift towards innovative and interdisciplinary approaches within the journal, highlighting emerging themes that reflect current technological advancements and research interests.
  1. Advanced Fault Diagnosis Techniques:
    There is a growing emphasis on sophisticated methods for diagnosing faults in rotating machinery, utilizing machine learning and signal processing techniques.
  2. Sustainable and Energy-Efficient Designs:
    Research focusing on energy conservation and efficiency in rotating machinery is trending, driven by global sustainability goals and the need for cost-effective solutions.
  3. Integration of Smart Technologies:
    Emerging trends include the integration of IoT and smart technologies in rotating machinery, enhancing monitoring, control, and predictive maintenance capabilities.
  4. Complex Fluid Dynamics:
    Recent studies are increasingly exploring complex fluid dynamics, particularly in relation to lubrication and cooling mechanisms in high-performance machinery.

Declining or Waning

While the journal has consistently covered a wide range of topics, certain themes appear to be losing prominence as newer areas of research gain traction.
  1. Traditional Mechanical Design:
    Research focused solely on conventional mechanical design principles is declining, as the field shifts towards integration with advanced materials and technologies.
  2. Static Analysis of Rotating Components:
    The focus on static analysis methods is waning, with a greater emphasis now placed on dynamic and transient behavior analysis due to the increasing complexity of machinery.
  3. Basic Lubrication Studies:
    Basic studies on lubrication are becoming less frequent as more sophisticated approaches, such as hydrodynamic and elastohydrodynamic lubrication, are prioritized.

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