首页> 外文会议>Science and Information Conference >Object oriented eco-simulator system as predictor exploratory system to track impact of human induced activities on environmental resource: A case study: Evaluation of unsuitable ground water consumption of petrochemical and power factory of Shazand on ecological status of Markazi province
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Object oriented eco-simulator system as predictor exploratory system to track impact of human induced activities on environmental resource: A case study: Evaluation of unsuitable ground water consumption of petrochemical and power factory of Shazand on ecological status of Markazi province

机译:面向对象的生态模拟器系统作为预测和探索系统,以追踪人为活动对环境资源的影响:案例研究:Shazand的石化和电厂的地下水消耗不当对Markazi省的生态状况进行评估

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Environment system studies regardless of main reasons are very difficult whereas they have been constructed from natural ecosystems, manmade infrastructure, socio-economic virtual objects and also their perplexing inner relations. Furthermore, ecosystems as any other elements, have iterative multi-scale structure which makes it even more sophisticated to study. That's why real compound system studies look breathtaking and also too difficult. Gradual depletion of perched water tables in “Shazand” watershed of “Markazi” province in Iran, which mainly stems from bulky extraction of water resources by huge factories and intensive agriculture e.g., doesn't treated well by policy makers not only due to lack of well-based studies but also via devoid of potent monitoring and prediction simulator system to manifest decision side effects to managers and those whom are responsible to keep the environment system balanced. Although GI functionalities have exhibited wonder abilities to handle spatial problems, they seem weak in processing ecosystem real problems as there is few specified environment modules. While combination of GIS and environment modeling software intensively suffers from integration issue, simulator software are mainly confined due to filed limitation, non-spatial functionalities and spatial ontologies. To present a proper solution which makes up the mentioned deficiencies, first of all, a problem tree was designed to decompose real cybernetic correlations between “Shazand” watershed elements including natural or manmade ones. Then, object oriented concept was deployed to simulate sophisticated real environmental systems and also to simplify programming issues regarding to exact spatial ontology. To complete the solution, a category based on “Category Theorem” was defined to support temporal concepts on the backdrop of real ecosystem phenomena regarding Spatio-temporal modeling concepts and obj- ct oriented foundations. Likewise group of functors were designed via functional language to allay process burden and also programming of object counteractions. Emerging spatial simulator system, supports monitoring issues as well as prediction missions in compound environment systems. It has been also indicated how to use it as an exploratory analyzing system which conduct real analytical system consisted of virtual smart analytical objects.
机译:无论是出于何种主要原因,对环境系统的研究都是非常困难的,而环境系统的研究却是由自然生态系统,人造基础设施,社会经济虚拟物体以及它们之间复杂的内在联系构成的。此外,生态系统与其他任何要素一样,具有迭代的多尺度结构,这使得它的研究更加复杂。这就是为什么真正的复合系统研究看起来令人叹为观止,而且也太困难了。伊朗“ Markazi”省“ Shazand”流域的栖息地下水位逐渐枯竭,这主要是由于大型工厂和集约化农业对水资源的大量开采,例如,决策者不善于处理水资源,不仅是因为缺乏基于良好基础的研究,但也缺乏有效的监视和预测模拟器系统,无法向管理人员和负责保持环境系统平衡的人员显示决策副作用。尽管地理信息系统的功能已经显示出处理空间问题的能力,但是由于几乎没有指定的环境模块,因此它们在处理生态系统实际问题方面似乎很薄弱。尽管GIS和环境建模软件的组合严重受到集成问题的困扰,但由于归档限制,非空间功能和空间本体,模拟器软件主要受到限制。为了提出弥补上述缺陷的适当解决方案,首先,设计了一个问题树来分解“ Shazand”分水岭要素之间的实际控制论相关性,包括自然的或人为的要素。然后,采用面向对象的概念来模拟复杂的真实环境系统,并简化与精确空间本体有关的编程问题。为了完成该解决方案,定义了一个基于“类别定理”的类别,以在涉及时空建模概念和面向对象基础的真实生态系统现象的背景下支持时态概念。同样,函子组是通过功能语言设计的,以减轻过程负担和对象对抗的编程。新兴的空间模拟器系统支持监视问题以及复合环境系统中的预测任务。还指出了如何将其用作探索性分析系统,以进行由虚拟智能分析对象组成的真实分析系统。

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