scholarly journals Analisis Keruangan Kesesuaian Lahan untuk Permukiman di Kabupaten Bandung dan Bandung Barat

2012 ◽  
Vol 26 (2) ◽  
pp. 190 ◽  
Author(s):  
Rina Marina Masri

The objectives of research are: to evaluate land suitability for housing based on soil characteristics; and to propose policy on the sustainable housing development in Bandung and West Land Bandung District. The method used in the spatial analysis is descriptive method based on several i.e. on data description of a case, circumstances, attitudes, relationships or a system of thought that became the object of research. The result of research as follows: 41.76% at fine zone residential lands, 44.81% at moderate zone residential good lands. Result of analysis give alternatives policies as set up the standardization the building coverage ratio, limited the conservation area to residential lands and others, increasing the conservation funding for decreasing natural accident disaster as flood, landslides etc.

Author(s):  
Nurul Qamila ◽  
Agel Vidian Krama

Dengue hemorrhagic fever (DHF) is a contagious disease caused by the dengue virus and is transmitted by the mosquito Aedes aegypti (Aa.aegypti). The population is still a public health problem that increases the number of sufferers and also widespread, with population and education. This study aims to reveal the spatial pattern and distribution of Dengue Hemorrhagic Fever (DHF) with the spatial pattern and the spread of Dengue Hemorrhagic Fever (DHF) can result in different locations of these allegations. From the map that can be used for the prevention of Dengue Hemorrhagic Fever (DBD) in Bandar Lampung City. This study aims to reveal the spatial pattern and distribution of Dengue Hemorrhagic Fever (DHF) with the descriptive method and spatial pattern of Dengue Hemorrhagic Fever (DHF) can result in different locations of these allegations. From the map that can be used for the prevention of Dengue Hemorrhagic Fever (DBD) in Bandar Lampung City. Keywords: DHF, Spatial Analysis


2019 ◽  
Vol 3 (1) ◽  
pp. 27
Author(s):  
Ayman K. Abdelgadir ◽  
Omer A. Abu Elzein ◽  
Faris Hameed

Sustainable development and sustainable housing indicators are a response to the trend of adopting sustainable development objectives, adopted by most countries, especially developed and less developed countries. It is difficult to implement indicators developed for a developing country context in other contexts with different social, economic and environmental conditions. Social sustainability is the most important priority regarding evaluating the housing development projects in the developed and less developed countries. Economic conditions is linked in many aspects to the social sustainability indicators. Environmental indicators are important, but the less developed countries in general has a very low environmental foot prints, this is because the industry sector is usually week comparing to the developed countries. This paper reviews the sustainable housing indicators, with a focus on United Nations reports and indicators developed for contexts similar to study area, without ignoring the most reputable indicators developed for developing countries context. The research came with a set of indicators reflects the social priorities of the new housing development in Sudan. A questionnaire participants decided the relative important of each indicator and also the importance of the parameters of each indicator. Developing a set of social priorities for Sudan will give extra efficiency in promoting and assessing sustainability in the study area. Description of the questionnaire results which reflects the national social sustainable housing development priorities are discussed. The researches came with a set of recommendations to enhance the social aspects for new housing development projects in Sudan. Using this set of priorities and recommendations will give extra efficiency in promoting and assessing sustainability in the study area.


2018 ◽  
Vol 10 (10) ◽  
pp. 3469 ◽  
Author(s):  
Trivess Moore ◽  
Andréanne Doyon

There is a need to deliver more environmentally and socially sustainable housing if we are to achieve a transition to a low carbon future. There are examples of innovative and sustainable housing emerging around the world which challenge the deeper structures of the existing housing regime. This paper uses the analysis of socio-technical dimensions of eco-housing presented by Smith to explore the development of an emerging sustainable housing model known as Nightingale Housing in Australia within a sustainability transitions framing. While there were several similarities to Smith’s analysis (e.g., establishment of guiding principles, learning by doing), there were also some key differences, including the scaling up of sustainable housing while using tried and tested design principles, materials and technologies, and creating changes to user relations, policy, and culture. Smith’s dimensions remain a good framework for understanding sustainable housing development, but they must be located within a scaling up sustainable housing agenda. What is required now is to develop a better understanding of the processes and opportunities that such housing models offer policy makers, housing researchers, and building industry stakeholders to achieve a broader scale uptake of sustainable housing both in Australia and globally.


2008 ◽  
Vol 54 (No. 12) ◽  
pp. 554-565 ◽  
Author(s):  
M. Pietrzykowski

The aim of the study was to assess terrestrial ecosystem development (mainly vegetation and soil characteristics) in the area of a sand mine cast (located in southern Poland) that has been either reclaimed or left for natural succession. A total of 20 sites in a chronosequence of 5, 17, 20 and 25 years were set up in two site categories: reclaimed and non-reclaimed sites. Selected properties of initial soils and features of vegetation were measured and they included carbon accumulation in soil; biomass and diversity of communities were also estimated. Next, based on carbon accumulation, the energy trapped in ecosystem components was estimated. Although the results of plant community investigation did not show the same distinct differences between site categories, the case study suggests that reclamation significantly accelerates ecosystem development. In comparison with spontaneous succession, the complete forest reclamation was found to increase the amount of carbon accumulation, thickness of humus horizon, and energy trapped in soil organic carbon and plant biomass in the developing ecosystem 2–3 times and nitrogen accumulation 5 times.


2008 ◽  
Vol 100 (5) ◽  
pp. 104-111 ◽  
Author(s):  
Michelle L. Maddaus ◽  
William O. Maddaus ◽  
Marshall Torre ◽  
Richard Harris

2020 ◽  
Author(s):  
Chengzhong Pan ◽  
Lan Ma

<p>The aim of this study was to investigate how the spatial distribution of grass influenced run-off and erosion from a hillslope with loess and cinnamon soils in the rocky area of Northern China. We set up a trial to test the two soils with different treatments, including bare soil (BS), grass strips on the upper (UGS) and lower (DGS) parts of the slope, grass cover over the entire slope (GS), and a grass carpet on the lower part of the slope (GC), under simulated rainfall conditions. The results showed that the run-off coefficients for the loess and cinnamon soils decreased by between 4% and 20% and by between 2% and 37%, respectively, when covered with grass. Grass spatial distribution had little effect on the run-off, but more effect on erosion than vegetation coverage degree. The most effective location of grass cover for decreasing hillslope erosion was at the foot, and the high efficiency was mainly due to controlling of rill formation and sediment deposition. The soil loss from GS, DGS, and GC on the loess and cinnamon soils was between 77% and 93% less and 55% and 80% less, respectively, compared with the loss from BS. However, the soil characteristics had little effect on soil erosion for well-vegetated slopes. The results highlight the importance of vegetation re-establishment at the foot of hillslope in controlling soil erosion.</p>


Sign in / Sign up

Export Citation Format

Share Document