LAND USE POLICY AREA (LUPA) CONCEPT MODEL

The paper presents a Land Use Policy Area (LUPA) Concept Model adding the three basic elements: (i) ecosystem-based land use regarded as the intersection of the ecosystem and land use elements, (ii) subwatershed-based land use as the intersection of the subwatershed and land use elements, and (iii)...

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Autores principales: A. M. R. Abante, C. G. R. Abante, A. M. Mascariñas, C. J. V. Cortez, M. A. B. Guiriba, E. C. Alfane, P. N. Rojas, R. S. Dioneda, D. Mirabete, J. N. Bartolome, A. J. M. Maceres, R. Garcia, R. E. Bautista, E. T. M. Livica, N. L. Ibo, V. Orozco, C. D. A. Bausing
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Publicado: Copernicus Publications 2021
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spelling oai:doaj.org-article:7ed9a38474494eec957231d5ef7faec02021-11-18T23:56:29ZLAND USE POLICY AREA (LUPA) CONCEPT MODEL10.5194/isprs-archives-XLVI-4-W6-2021-11-20211682-17502194-9034https://doaj.org/article/7ed9a38474494eec957231d5ef7faec02021-11-01T00:00:00Zhttps://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLVI-4-W6-2021/11/2021/isprs-archives-XLVI-4-W6-2021-11-2021.pdfhttps://doaj.org/toc/1682-1750https://doaj.org/toc/2194-9034The paper presents a Land Use Policy Area (LUPA) Concept Model adding the three basic elements: (i) ecosystem-based land use regarded as the intersection of the ecosystem and land use elements, (ii) subwatershed-based land use as the intersection of the subwatershed and land use elements, and (iii) integrated environmental management is the intersection of the subwatershed and ecosystem elements regarded as the Integrated Ecosystem Development Planning Unit (IE-DPU). The basic (spatial) elements are mathematically expressed as the paired sets of the three main variables, namely: ecosystem (dependent), watershed (dependent) and land use (independent) variables. The challenging work in this study was the development of a geospatial information model for use in policy areas LUPA applying these variables. There are four steps applied to answer the research objective, these are: ecological zone assessment, ridge-to-reef watershed delineation, land and water use heads-up mapping, ecosystem-based land use overlay analysis, watershed-based land use overlay analysis, integrated environmental management overlay analysis, and LUPA overlay analysis. The concept model analysis steers the geospatial information modeling for LUPA which carried the intersections of the paired variables: ecosystem-based land use, subwatershed-based land use and integrated environmental management as variating inputs to process by extracting the science-based information (overlay output) which practically highlighted the LUPA classification: (i) Protection with 49.1% or 3858.2 Ha of mangrove forest reserve and water use, (ii) Production areas with 46.5% or 3631.7 Ha mostly agricultural and aquacultural areas, (iii) Settlement with 2.7% or 209.2 Ha of urban and urban uses, and (iv) Infrastructure with 1.5% or 116.7 Ha of development. The authors concluded that land use policy areas will relatively change as land use changes which is also seen reliant on the impacts of climate change.A. M. R. AbanteC. G. R. AbanteA. M. MascariñasC. J. V. CortezM. A. B. GuiribaE. C. AlfaneP. N. RojasR. S. DionedaD. MirabeteJ. N. BartolomeA. J. M. MaceresR. GarciaR. E. BautistaE. T. M. LivicaN. L. IboV. OrozcoC. D. A. BausingCopernicus PublicationsarticleTechnologyTEngineering (General). Civil engineering (General)TA1-2040Applied optics. PhotonicsTA1501-1820ENThe International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XLVI-4-W6-2021, Pp 11-18 (2021)
institution DOAJ
collection DOAJ
language EN
topic Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
Applied optics. Photonics
TA1501-1820
spellingShingle Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
Applied optics. Photonics
TA1501-1820
A. M. R. Abante
C. G. R. Abante
A. M. Mascariñas
C. J. V. Cortez
M. A. B. Guiriba
E. C. Alfane
P. N. Rojas
R. S. Dioneda
D. Mirabete
J. N. Bartolome
A. J. M. Maceres
R. Garcia
R. E. Bautista
E. T. M. Livica
N. L. Ibo
V. Orozco
C. D. A. Bausing
LAND USE POLICY AREA (LUPA) CONCEPT MODEL
description The paper presents a Land Use Policy Area (LUPA) Concept Model adding the three basic elements: (i) ecosystem-based land use regarded as the intersection of the ecosystem and land use elements, (ii) subwatershed-based land use as the intersection of the subwatershed and land use elements, and (iii) integrated environmental management is the intersection of the subwatershed and ecosystem elements regarded as the Integrated Ecosystem Development Planning Unit (IE-DPU). The basic (spatial) elements are mathematically expressed as the paired sets of the three main variables, namely: ecosystem (dependent), watershed (dependent) and land use (independent) variables. The challenging work in this study was the development of a geospatial information model for use in policy areas LUPA applying these variables. There are four steps applied to answer the research objective, these are: ecological zone assessment, ridge-to-reef watershed delineation, land and water use heads-up mapping, ecosystem-based land use overlay analysis, watershed-based land use overlay analysis, integrated environmental management overlay analysis, and LUPA overlay analysis. The concept model analysis steers the geospatial information modeling for LUPA which carried the intersections of the paired variables: ecosystem-based land use, subwatershed-based land use and integrated environmental management as variating inputs to process by extracting the science-based information (overlay output) which practically highlighted the LUPA classification: (i) Protection with 49.1% or 3858.2 Ha of mangrove forest reserve and water use, (ii) Production areas with 46.5% or 3631.7 Ha mostly agricultural and aquacultural areas, (iii) Settlement with 2.7% or 209.2 Ha of urban and urban uses, and (iv) Infrastructure with 1.5% or 116.7 Ha of development. The authors concluded that land use policy areas will relatively change as land use changes which is also seen reliant on the impacts of climate change.
format article
author A. M. R. Abante
C. G. R. Abante
A. M. Mascariñas
C. J. V. Cortez
M. A. B. Guiriba
E. C. Alfane
P. N. Rojas
R. S. Dioneda
D. Mirabete
J. N. Bartolome
A. J. M. Maceres
R. Garcia
R. E. Bautista
E. T. M. Livica
N. L. Ibo
V. Orozco
C. D. A. Bausing
author_facet A. M. R. Abante
C. G. R. Abante
A. M. Mascariñas
C. J. V. Cortez
M. A. B. Guiriba
E. C. Alfane
P. N. Rojas
R. S. Dioneda
D. Mirabete
J. N. Bartolome
A. J. M. Maceres
R. Garcia
R. E. Bautista
E. T. M. Livica
N. L. Ibo
V. Orozco
C. D. A. Bausing
author_sort A. M. R. Abante
title LAND USE POLICY AREA (LUPA) CONCEPT MODEL
title_short LAND USE POLICY AREA (LUPA) CONCEPT MODEL
title_full LAND USE POLICY AREA (LUPA) CONCEPT MODEL
title_fullStr LAND USE POLICY AREA (LUPA) CONCEPT MODEL
title_full_unstemmed LAND USE POLICY AREA (LUPA) CONCEPT MODEL
title_sort land use policy area (lupa) concept model
publisher Copernicus Publications
publishDate 2021
url https://doaj.org/article/7ed9a38474494eec957231d5ef7faec0
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