FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE

Modeling air humidity in the mangrove ecosystem using Fourier functions shows a cycle of temporal fluctuations. The cycle is influenced by the intensity of the sun. Graphical modeling of air humidity shows similarities for position 1 and position 3. Starting at 19.00 air humidity is 72% and continue...

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Main Author: Mario Nikolaus Dalengkade
Format: Article
Language:English
Published: Universitas Pattimura 2020-06-01
Series:Barekeng
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Online Access:https://ojs3.unpatti.ac.id/index.php/barekeng/article/view/1181
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author Mario Nikolaus Dalengkade
author_facet Mario Nikolaus Dalengkade
author_sort Mario Nikolaus Dalengkade
collection DOAJ
description Modeling air humidity in the mangrove ecosystem using Fourier functions shows a cycle of temporal fluctuations. The cycle is influenced by the intensity of the sun. Graphical modeling of air humidity shows similarities for position 1 and position 3. Starting at 19.00 air humidity is 72% and continues to rise reaching 85.5% at exactly 04.00. Then it declined again by 59.2% at 12.00. Unlike the 9th position starting at 19.00 the value of air humidity is 71.5% and continues to rise reaching 82.5% at exactly 4:00 a.m., and decreases again to reach 65% at 12.00. The difference in the value of air humidity is because position 1 and position 3 are located outside and the edge of the mangrove forest where no or lack of mangrove canopy cover causes the evaporation process to occur very quickly. While position 9 is located in the mangrove forest where the mangrove canopy cover plays an important role in controlling the evaporation process and reducing the intensity of the sun. Besides that cross-choreal testing produces a time‒lag that varies for each position measuring air humidity based on the depth and edge of the mangrove ecosystem.
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spelling doaj-art-3d6bc2b78d754740a89e52a93f51a37f2025-08-20T03:37:37ZengUniversitas PattimuraBarekeng1978-72272615-30172020-06-0114215916610.30598/barekengvol14iss2pp159-1661181FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVEMario Nikolaus Dalengkade0Universitas HalmaheraModeling air humidity in the mangrove ecosystem using Fourier functions shows a cycle of temporal fluctuations. The cycle is influenced by the intensity of the sun. Graphical modeling of air humidity shows similarities for position 1 and position 3. Starting at 19.00 air humidity is 72% and continues to rise reaching 85.5% at exactly 04.00. Then it declined again by 59.2% at 12.00. Unlike the 9th position starting at 19.00 the value of air humidity is 71.5% and continues to rise reaching 82.5% at exactly 4:00 a.m., and decreases again to reach 65% at 12.00. The difference in the value of air humidity is because position 1 and position 3 are located outside and the edge of the mangrove forest where no or lack of mangrove canopy cover causes the evaporation process to occur very quickly. While position 9 is located in the mangrove forest where the mangrove canopy cover plays an important role in controlling the evaporation process and reducing the intensity of the sun. Besides that cross-choreal testing produces a time‒lag that varies for each position measuring air humidity based on the depth and edge of the mangrove ecosystem.https://ojs3.unpatti.ac.id/index.php/barekeng/article/view/1181kelembaban udarafungsi fouriermangrovetime‒lag
spellingShingle Mario Nikolaus Dalengkade
FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE
Barekeng
kelembaban udara
fungsi fourier
mangrove
time‒lag
title FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE
title_full FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE
title_fullStr FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE
title_full_unstemmed FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE
title_short FLUKTUASI TEMPORAL KELEMBABAN UDARA DI DALAM DAN LUAR EKOSISTEM MANGROVE
title_sort fluktuasi temporal kelembaban udara di dalam dan luar ekosistem mangrove
topic kelembaban udara
fungsi fourier
mangrove
time‒lag
url https://ojs3.unpatti.ac.id/index.php/barekeng/article/view/1181
work_keys_str_mv AT marionikolausdalengkade fluktuasitemporalkelembabanudaradidalamdanluarekosistemmangrove