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To examine this effect, we use a high‐resolution atmospheric general circulation model with 28 km and 14 km horizontal meshes. We show that a vertical grid spacing of 400 m or less is necessary to resolve the bulk structure of cirrus clouds. As one reduces the vertical grid spacing below about 1000 m, the visible cirrus cloud fraction decreases, the cloud thins (optically and geometrically), the cloud top height lowers, and consequently, the outgoing longwave radiation increases. These effects are stronger over the tropics. When using a vertical grid spacing of 400 m or less, the vertical profiles of effective radii and ice water content converge toward measurements (CloudSat satellite and Cloud‐Aerosol Lidar and Infrared Pathfinder Satellite Observation).</jats:p>"}]}],"creator":[{"@id":"https://cir.nii.ac.jp/crid/1420564276176432896","@type":"Researcher","personIdentifier":[{"@type":"KAKEN_RESEARCHERS","@value":"60599968"},{"@type":"NRID","@value":"1000060599968"},{"@type":"NRID","@value":"9000412099072"},{"@type":"NRID","@value":"9000410513236"},{"@type":"NRID","@value":"9000290819259"},{"@type":"RESEARCHMAP","@value":"https://researchmap.jp/cloud"}],"foaf:name":[{"@value":"Tatsuya Seiki"}],"jpcoar:affiliationName":[{"@value":"Japan Agency for Marine‐Earth Science and Technology  Yokohama Japan"}]},{"@id":"https://cir.nii.ac.jp/crid/1380004229803794305","@type":"Researcher","foaf:name":[{"@value":"Chihiro Kodama"}],"jpcoar:affiliationName":[{"@value":"Japan Agency for Marine‐Earth Science and 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