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  <front>
    <journal-meta>
      <journal-id journal-id-type="publisher-id">58</journal-id>
      <journal-title-group>
        <journal-title>施工技术研究</journal-title>
        <abbrev-journal-title>Research on Construction Technology</abbrev-journal-title>
      </journal-title-group>
      <issn>ISSN: 3104-8129 EISSN: 3104-8137</issn>
      <publisher>
        <publisher-name>睿核出版社有限公司</publisher-name>
      </publisher>
    </journal-meta>
    <article-meta>
      <article-id pub-id-type="doi">10.65700/RHSGJSYJ01-2611-8129-0525</article-id>
      <article-id pub-id-type="publisher-id">17307</article-id>
      <title-group>
        <article-title>Optimization of Temporary Traffic Sign Spacing in Work Zones on Two-Lane Mountain Highways： A Sight-Recognition and Information-Load Dual-Constraint Approach</article-title>
      </title-group>
      <contrib-group>
        <contrib contrib-type="author">
          <string-name>Lei Chen</string-name>
        </contrib>
      </contrib-group>
      <pub-date pub-type="epub">
        <year>2026</year>
        <month>3</month>
      </pub-date>
      <issue>3</issue>
      <abstract>
        <p>On mountain highways, maintenance is typically carried out under "traffic-open-during-construction" conditions. How temporary signs are
spaced in these work zones directly shapes what information reaches drivers and when. Existing design standards specify a minimum spacing but treat the
entire work zone as a single segment, ignoring the different roles of warning, transition, and activity areas. We develop a spacing framework with two
constraints: sight recognition distance sets the floor, and information load per unit segment sets the ceiling. From this we propose phased gradient spacing.
The advance warning zone uses 1.2–1.5× sight recognition distance to give drivers enough time; the transition zone tightens to 0.8–1.0× to
strengthen risk signals; and the activity zone keeps spacing at or above the sight distance so critical signs (stop, speed limit) are not missed. We calculated
spacing for a two-lane mountain highway at 40 km/h under three common maintenance scenarios—curve-section pavement repair, straight-segment
guardrail work, and bridge–tunnel transition construction. The recommended range is 20–30 m. For bridge–tunnel transitions, light–dark adaptation
cuts effective sight distance, so we recommend tighter spacing and Class IV (or better) retroreflective sheeting. No new data collection is needed;
practitioners can use the method with existing traffic management plans.</p>
      </abstract>
    </article-meta>
  </front>
</article>
