We have measured winds using cloud motion in consecutive Mars Global Surveyor (MGS) Mars Orbiter Camera (MOC) wide-angle global map swaths taken during the first mapping year (L s 135°–360°–111°). We present a total of ∼11,200 wind vectors collected in the north polar region during L_s 135°–195° (late summer/early fall) and L_s 20°–55° (mid spring) and in the south polar region during L_s 337°–10° (late summer/early fall). For cases with good coverage, we also present the derived mean zonal and meridional winds and the associated eddies. The speed of the zonal winds in 60°N–70°N increases at ∼0.6 m/s/°L_s in late northern summer, and that in 60°S–70°S increases at a rate of ∼0.7 m/s/°L_s in late southern summer. The latitudinal distribution of zonal wind within 50°N–75°N from mid northern summer to early northern fall indicates that winds at higher latitudes are generally weaker than those at lower latitudes, but the rate of increase with time is faster at higher latitudes. There is a cyclonic gyre in the 90°W–0°–30°E sector in the north polar region. There are large-scale waves in the weekly mean meridional wind and in the biweekly mean eddy momentum flux and eddy kinetic energy fields in the north polar region from mid to late summer. The cloud-tracked winds in the north are generally consistent with winds calculated by general circulation model at the water condensation level derived from MGS Thermal Emission Spectrometer (TES) observations but appear stronger than the gradient winds derived from TES assuming no flow at the surface.
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机译:我们在第一年制图年(L s 135°–360°–111°)连续进行的火星全球测量师(MGS)火星轨道相机(MOC)广角全球地图测绘中使用云运动测量了风。在L_s 135°–195°(夏末/初秋)和L_s 20°–55°(春季中)期间,在北极地区总共收集到约11,200个风向–10°(夏末/初秋)。对于具有良好覆盖率的情况,我们还介绍了派生的平均纬向风和子午风以及相关的涡流。在北夏末,纬向风在60°N–70°N的速度以〜0.6 m / s /°L_s的速度增加,而在60°S–70°S的纬向风的速度以〜0.7 m / s / s的速度增加南部夏季末°L_s。从北夏中旬到北秋初在50°N–75°N以内的纬向风的纬度分布表明,高纬度的风通常弱于低纬度的风,但高纬度的随时间的增长速度更快。北极地区在90°W-0°-30E范围内有一个旋风回旋。夏季中旬至夏末,每周平均子午风和每两周平均涡流动量通量和涡动能场均出现大波浪。北部的云迹风通常与通用循环模型在MGS热发射光谱仪(TES)观测值得出的水凝结水平上计算出的风一致,但假定比表面上无流量,则看起来比由TES得出的梯度风更强。
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