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progress-in-aerospace-sciences

Use when targeting Progress in Aerospace Sciences or deciding whether an aerospace review article fits this venue. Encodes the journal's fit as a re…

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技能内容

Progress in Aerospace Sciences (progress-in-aerospace-sciences)

Journal positioning

Progress in Aerospace Sciences is a leading archival review journal spanning

aerospace science and engineering — aerodynamics, propulsion, structures, flight

dynamics and control, and space systems. It publishes authoritative, comprehensive

survey articles that synthesize the state of a field, organize what is known, and

chart open problems; many articles are scoped or invited. The defining expectation is

a scholarly review, not a primary-research result: the contribution is critical

synthesis and perspective, not a new experiment, simulation, or theorem. A standard

original-research manuscript — even an excellent one — is a poor fit and belongs in a

primary-research aerospace journal. This skill is a **fit / venue-selection /

re-framing** tool. It does not replace the journal's current official author

guidelines. Before submitting, re-check the live Progress in Aerospace Sciences Guide

for Authors.

When to trigger

  • The author names Progress in Aerospace Sciences for a review or survey of an

aerospace topic and wants a fit/framing check.

  • A manuscript must be re-framed as a comprehensive, critical review rather than a

primary-research report.

  • The author is deciding whether their planned article is a review fit here versus a

primary-research aerospace venue, and whether to seek a pre-submission scope/invite.

  • The author needs the journal's review-synthesis bar and desk-reject heuristics.

Scope & topic fit

  • Aerodynamics and fluid dynamics in aerospace: high-speed/hypersonic flows, flow

control, aeroacoustics — reviewed comprehensively across the literature.

  • Propulsion and energy: air-breathing and rocket propulsion, combustion, and emerging

propulsion concepts, synthesized critically.

  • Aerospace structures and materials: structural mechanics, fatigue, composites in

airframes, and structural health monitoring as a reviewed field.

  • Flight dynamics, guidance, navigation, and control: vehicle dynamics and autonomy

surveyed across methods and applications.

  • Space systems and astronautics: spacecraft systems, orbital mechanics, re-entry, and

mission/technology trends.

  • Cross-cutting and emerging aerospace topics (e.g., electrification, advanced air

mobility, design methods) where a synthesizing review is timely.

Method & evidence bar

  • The central object is a comprehensive, critical review that organizes a field —

not original experiments, simulations, or proofs presented as the contribution.

  • Coverage must be broad and current: the survey should represent the literature

fairly, including competing approaches, and identify consensus and open questions.

  • Synthesis must add value beyond a reference list: taxonomy, comparative analysis,

unifying framework, and a forward-looking perspective.

  • Any figures, tables, or data are organizing devices (comparisons, roadmaps,

classifications) drawn from the surveyed literature, properly attributed.

  • Scope must be well-bounded and justified; an over-broad or shallow survey, or a

narrow one masquerading as comprehensive, is a weak fit.

  • Citations must be accurate and representative; the review's authority rests on

balanced, complete coverage.

Structure & house style

  • Long-form review structure: framing introduction, thematically organized sections,

comparative synthesis, open challenges, and outlook — re-check article types and any

invitation/proposal process on the live guide.

  • The introduction states the scope, why a review is timely, and what the survey

contributes beyond existing reviews.

  • Tables and schematic figures that compare methods, summarize trends, and map the

field are central; original-data plots are generally not the point.

  • Sectioning should let a reader navigate the field; depth and balance across

subtopics matter more than novelty of any single result.

  • A substantial, well-curated reference list is expected; supplementary material, if

any, supports the survey rather than presenting new findings.

Official-submission checklist

  • Before giving submission-ready advice, read ../../resources/source-basis.md and

../../resources/official-source-map.md; start from the Elsevier anchors, then

cite the current Progress in Aerospace Sciences Guide for Authors page you checked.

  • Search the live site for "Progress in Aerospace Sciences guide for authors" and

follow the current Elsevier/Editorial Manager version.

  • Re-check whether a pre-submission proposal or editor invitation is expected, and the

accepted article types (review/survey).

  • Re-check length, figure/table, and reference expectations for a long-form review.
  • Confirm permissions for any reproduced figures and the data/citation-accuracy

expectations.

  • Re-check competing-interests, funding, author-contribution (CRediT), and AI-use

disclosure requirements.

  • If the live official instructions conflict with this skill, the official

instructions win.

Pre-submission self-check

  • [ ] The manuscript is a comprehensive, critical review — not primary research presented as a survey.
  • [ ] Scope is well-bounded, justified, and timely relative to existing reviews.
  • [ ] Coverage is broad, current, and balanced across competing approaches.
  • [ ] The synthesis adds a taxonomy, comparison, or framework beyond a reference list, with a forward outlook.
  • [ ] Tables/figures organize and compare the literature and are properly attributed.
  • [ ] Any pre-submission proposal/invitation expectation and the review article type have been checked on the live guide.

Common desk-reject triggers

  • A primary-research manuscript (new experiment, simulation, or theorem) submitted as if it were a review.
  • A narrow or shallow survey that does not comprehensively cover the field.
  • A reference-list-style review with no synthesis, taxonomy, or critical perspective.
  • Unbalanced coverage that omits competing approaches or recent literature.
  • Scope creep or an ill-defined topic that cannot be reviewed authoritatively.
  • Submitting without checking whether a proposal/invitation is expected for the topic.

Re-routing decision

  • Primary aerospace fluid-dynamics research with new physics → journal-of-fluid-mechanics.
  • Primary aerospace-structures/materials research (composites) → composites-part-b-engineering.
  • Primary flight-control theory with provable guarantees → ieee-transactions-on-automatic-control.
  • Primary metallurgy/materials research for aerospace alloys → acta-materialia.
  • Highest-impact broad-audience review or perspective → a flagship multidisciplinary review/perspective venue (e.g., science-advances for primary advances).

Output format

[Fit] High / Medium / Low (one-line reason)
[Target] Progress in Aerospace Sciences
[Topic tags] <2–3 closest aerospace subtopics>
[Review scope] <the bounded field surveyed and why it is timely, in one line>
[Synthesis value] <taxonomy / comparison / framework / outlook the review adds>
[Top risk] <the single most likely reason for rejection — usually "this is primary research">
[Official items to re-check] <proposal/invitation / article type / length / permissions / disclosures>
[Re-route suggestion] <if it is primary research, a better-matched venue>

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原文件路径Engineering-Technology-Journal-Skills/skills/progress-in-aerospace-sciences/SKILL.md

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