城市公园设计中的生物能源整合

Yenny Novianti, Sisca Olivia, Erna Muliana
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摘要

生物能源是一种可自然更新的可再生能源,对城市环境的空气质量有良好的环境影响。城市公园具有将生物能源融入城市环境的潜力。设计环境友好型城市公园,使其能够生产生物能源,从而使公共空间既成为开放的休闲空间,又成为绿色能源的来源。洛克苏马韦市的空气条件存在二氧化碳污染和空气温度过高的问题。我们的目标是通过对植物和树木的应用,在园林中实现生物能源。气候变化的特点是极端降雨和极端温度。此外,臭氧层消耗是全球变暖的影响,而气温过高是一个全球性问题。从本质上讲,气候变化发生在所有城市。除此以外,城市的快速发展是市中心活动和密度的影响因素,这引发了全球警报的增加,并对热舒适度产生了影响。在城市地区的室外空间很难找到良好的空气质量和热条件。公共空间作为绿色开放空间、绿色能源和可再生能源的来源,可以增加吸收面积。然而,能够减少全球变暖的环境友好型绿色开放空间的存在无法与生物能源相结合,而生物能源还不太为人所知,应用效果也尚未达到最佳,因此这是本研究的基本基本现象。本研究旨在确定热质量(二氧化碳、温度和风速);确定软景观元素,即 RTH 中的植物,并通过与 RTH 中的生物能源方法相结合,为减少全球变暖(尤其是二氧化碳)做出贡献。这类研究采用定量方法进行描述。研究结果表明,二氧化碳含量已超过临界值,导致空气污染和气温升高。这种情况对城市环境气候的生存产生了非常不利的影响。植物元素作为软帽元素的存在尚未实现,因此需要某些植物作为生产生物能源应用的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrasi Bioenergi dalam Desain Taman Kota
Bioenergy is a renewable energy source that can be renewed naturally and has a good environmental impact on air quality in urban environments. Urban parks have the potential to integrate bioenergy into an urban context. Design environmentally friendly city parks to be able to produce bioenergy, so that public spaces can double as both open recreation spaces and sources of green energy. The air condition in Lhokseumawe City experiences CO2 pollution and high air temperatures. The aim is to implement bioenergy in gardens through application to plants and trees. Climate change is characterized by extreme rainfall and temperatures. Apart from that, the depletion of the ozone layer is the impact of global warming which is indicated by high air temperatures a global issue. In essence, climate change occurs in all cities. Apart from that, rapid urban development is the influence of the activity and density of the city center which triggers an increase in global warnings and has an impact on thermal comfort. good air quality and thermal conditions in outdoor spaces in urban areas are difficult to find. The presence of public space plays a role as a green open space and a source of green energy and renewable energy and can increase absorption areas. However, the existence of environmentally friendly green open spaces that are capable of reducing global warming cannot be integrated with bioenergy, which is still less familiar and not yet optimal for application, so it is the basic fundamental phenomenon in this research. This research aims to identify thermal quality (CO2, temperature, and wind speed); identify softcape elements, namely plants in RTH, and contribute through integration with the bioenergy approach in RTH as a solution to reduce global warming, especially CO2. This type of research is descriptive using a quantitative approach. The research results show that CO2 levels have exceeded the threshold, resulting in air pollution with high air temperatures. This condition has a very negative impact on the survival of an urban environmental climate. The presence of plant elements as softcap elements has yet to be fulfilled, so certain plants are needed as a solution in producing bioenergy applications.
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