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The Causal Loop Diagram showed that factors in sub system and inter sub system formed balancing causal feedback loop. Water availability as a system was represented as a simple model in line with the factors in this research, so that the model represents the real world. The method of the research was system dynamics. The purpose of this study is to strengthen water resources management planning in Bekasi Regency. The models are designed, both with and without intervention factors to population behavior toward water. The models are used to predict the relationship until 2025. The objective of this research is to develop a system dynamics model that represents the relationship between population sub system and land conversion sub system with freshwater availability sub system in Bekasi Regency. Based on those findings, it could be suggested that water resources management planning should consider water as a system and integrate supply side management, demand side management, and governance side management. thrifty and sanitation behavior) increase begin 2008, it is predicted that beginning from 2009, the freshwater availability will increase, the water crisis can be suspended, and the freshwater inventory can be reserved. When community's behavior for water (i.e. It is predicted, if the condition does not change, water crisis will happen in 2018. Population numbers increased slowly (growth), while land carrying capacity decreased gradually (decay). The decrease was caused by water pollution rather than the population growth and land conversion increasing. surface water and shallow ground water) decreased substantially (collapse) from 2003 until 2025. Model behavior simulation showed that freshwater availability (i.e.
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