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  • 1
    Publication Date: 2024-04-20
    Description: A NIR camera allows a measurement of the reflectance of the snow profile wall to identify layers of snow grains with different specific surface area (SSA) with a spatial resolution of about 1 mm. The processing of the images of RGB-cameras must consider the sensitivity of the different color pixels. The setup of the reference targets, the flat surface and the diffuse illumination is important to get high-quality images. A geometrically corrected NIR-photo gives an objective measure of the snow stratigraphy and is observer independent. This efficient measurement has been adapted for use in polar night and day by blocking out external sunlight and packaging the camera and the illuminating infrared lights into a wooden box. The width and height of the inside of the box was 500 x 675 mm. A blanket was used to prevent any light seeping through. Inside the box, lambertian reflectance targets were mounted to account for any irregular light conditions. For MOSAiC, we used lights with two different wavelengths, 850 nm and 940 nm. We used the NIR camera in excavated snowpit walls to record the vertical and horizontal spatial variability of the SSA and snow stratigraphy. If the snowpit was higher than the NIR box, then measurement was repeated for different heights, using a ruler as a reference. NIR was also used to take images of the surface to account for small-scale spatial variability of the SSA of the snow/SSL surface. For each set of images, a dark image (without any lamps, recorded in this dataset as 0 nm) was taken, followed by images with each of the two lamps (using external light switches), to account for potential light leaks. The MAPIR camera (Survey3N Camera - Near Infrared (NIR) - MAPIR CAMERA) was built into the box and triggered by an external button. Please direct inquiries to; David Wagner (PS122/1), Martin Schneebeli (PS122/2), Amy Macfarlane (PS122/3 and PS122/4), Ruzica Dadic (PS122/5).
    Keywords: Arctic Ocean; Arctic Research Icebreaker Consortium: A strategy for meeting the needs for marine-based research in the Arctic; ARICE; Camera, Near-InfraRed; Comment; DATE/TIME; Event label; Image; Image (File Size); Latitude of event; Location; Longitude of event; MOSAiC; MOSAiC20192020; Multidisciplinary drifting Observatory for the Study of Arctic Climate; Polarstern; PS122/1; PS122/1_10-5; PS122/1_10-70; PS122/1_10-71; PS122/1_10-72; PS122/1_11-23; PS122/1_4-10; PS122/1_5-35; PS122/1_5-5; PS122/1_6-30; PS122/1_6-5; PS122/1_6-6; PS122/1_6-75; PS122/1_7-129; PS122/1_7-32; PS122/1_7-33; PS122/1_7-34; PS122/1_7-35; PS122/1_7-36; PS122/1_7-37; PS122/1_7-38; PS122/1_7-87; PS122/1_7-88; PS122/1_8-27; PS122/1_8-28; PS122/1_8-29; PS122/1_8-30; PS122/1_8-31; PS122/1_8-32; PS122/1_8-78; PS122/1_8-79; PS122/1_9-23; PS122/1_9-25; PS122/2; PS122/2_17-109; PS122/2_17-16; PS122/2_18-17; PS122/2_18-66; PS122/2_19-144; PS122/2_19-28; PS122/2_19-9; PS122/2_19-92; PS122/2_20-36; PS122/2_20-4; PS122/2_20-80; PS122/2_20-83; PS122/2_21-52; PS122/2_21-53; PS122/2_21-96; PS122/2_22-43; PS122/2_22-46; PS122/2_22-5; PS122/2_22-6; PS122/2_22-61; PS122/2_22-73; PS122/2_23-105; PS122/2_23-2; PS122/2_23-34; PS122/2_23-73; PS122/2_23-74; PS122/2_23-9; PS122/2_24-14; PS122/2_24-15; PS122/2_24-35; PS122/2_24-81; PS122/2_24-86; PS122/2_25-22; PS122/2_25-23; PS122/2_25-80; PS122/2_25-81; PS122/3; PS122/3_29-28; PS122/3_29-29; PS122/3_29-43; PS122/3_29-9; PS122/3_30-17; PS122/3_30-25; PS122/3_30-61; PS122/3_31-79; PS122/3_32-59; PS122/3_32-88; PS122/3_32-92; PS122/3_33-41; PS122/3_33-65; PS122/3_34-34; PS122/3_36-102; PS122/3_36-103; PS122/3_36-106; PS122/3_36-107; PS122/3_36-138; PS122/3_36-14; PS122/3_36-35; PS122/3_36-99; PS122/3_37-132; PS122/3_37-22; PS122/3_37-39; PS122/3_37-41; PS122/3_37-57; PS122/3_37-58; PS122/3_38-141; PS122/3_39-46; PS122/3_39-87; PS122/3_39-88; PS122/3_39-91; PS122/4; PS122/4_44-155; PS122/4_44-157; PS122/4_44-216; PS122/4_45-16; PS122/4_45-18; PS122/4_45-63; PS122/4_46-105; PS122/4_46-106; PS122/4_46-107; PS122/4_46-108; PS122/4_46-109; PS122/4_46-110; PS122/4_46-111; PS122/4_46-112; PS122/4_46-135; PS122/4_46-30; PS122/4_46-31; PS122/4_46-32; PS122/4_47-23; PS122/4_47-61; PS122/4_47-66; PS122/4_47-76; PS122/4_47-77; PS122/4_47-97; PS122/4_48-100; PS122/4_48-142; PS122/4_48-143; PS122/4_48-144; PS122/4_48-145; PS122/4_48-146; PS122/4_48-147; PS122/4_48-148; PS122/4_48-177; PS122/4_48-40; PS122/4_48-41; PS122/4_48-42; PS122/4_48-43; PS122/4_48-44; PS122/4_48-45; PS122/4_48-47; PS122/4_48-58; PS122/4_48-83; PS122/4_48-85; PS122/4_49-15; PS122/4_49-46; PS122/4_49-47; PS122/4_49-48; PS122/4_49-7; PS122/4_49-8; PS122/5; PS122/5_59-193; PS122/5_59-204; PS122/5_59-206; PS122/5_59-222; PS122/5_59-235; PS122/5_59-250; PS122/5_59-267; PS122/5_59-292; PS122/5_59-303; PS122/5_59-313; PS122/5_59-350; PS122/5_59-352; PS122/5_59-368; PS122/5_60-10; PS122/5_60-117; PS122/5_60-118; PS122/5_60-119; PS122/5_60-120; PS122/5_60-128; PS122/5_60-142; PS122/5_60-168; PS122/5_60-2; PS122/5_60-24; PS122/5_60-25; PS122/5_60-26; PS122/5_60-43; PS122/5_60-76; PS122/5_60-77; PS122/5_60-78; PS122/5_60-91; PS122/5_61-104; PS122/5_61-132; PS122/5_61-162; PS122/5_61-167; PS122/5_61-198; PS122/5_61-2; PS122/5_61-236; PS122/5_61-4; PS122/5_61-97; PS122/5_62-10; PS122/5_62-102; PS122/5_62-119; PS122/5_62-124; PS122/5_62-126; PS122/5_62-139; PS122/5_62-140; PS122/5_62-147; PS122/5_62-163; PS122/5_62-28; PS122/5_62-39; PS122/5_62-44; PS122/5_62-46; PS122/5_62-69; PS122/5_62-89; PS122/5_62-99; PS122/5_63-262; PS122/5_63-263; PS122/5_63-95; PS122/5_63-96; PS122/5_63-97; PS122/5_63-98; SNOWPIT; Snow pit; Video; Video (File Size); Wavelength
    Type: Dataset
    Format: text/tab-separated-values, 17044 data points
    Location Call Number Expected Availability
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