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武汉市区地下水地源热泵系统应用适宜性分区 被引量:8

The Adaptive Partition of Groundwater Source Heat Pump System Application in Wuhan City
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摘要 影响地下水地源热泵系统应用适宜性的主要因素为水文地质条件和对环境的影响程度。文章阐述了武汉市区岩土的工程地质条件、水文地质条件,分析了地下水地源热泵系统应用对环境产生的影响,采用多种方法对武汉市区地下水资源量进行了计算,在此基础上,考虑水文地质条件和对环境的影响程度两个主要因素,将武汉市区地下水地源热泵系统应用划分为适宜区、基本适宜区、适宜性差和不适宜区4个区,并进行了分区评价。 The main influence factor to groundwater source heat pump system application is hydrologic geology condition and the influence to environment.This paper discuss the geology engineering properties and hydrologic geology condition of rock and soil in Wuhan,analyse the influence to environment of groundwater source heat pump system application,estimate groundwater source by several methods.Base on these,according to hydrologic geology condition and influence to environment,the groundwater source heat pump system application area in Wuhan city can be catalogued as perfectly suitable region, ecumenic suitable region, poor adaptive region an t unsuitable region.
出处 《城市勘测》 2009年第5期143-146,共4页 Urban Geotechnical Investigation & Surveying
关键词 城市 地下水 地源热泵系统 适宜性分区 city groundwater heat pump system adaptive partition
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  • 1何满潮,乾增珍,朱家玲.深部地层储能技术与水源热泵联合应用工程实例[J].太阳能学报,2005,26(1):23-27. 被引量:9
  • 2官善友,陈浩.地温空调(水源)地下水开采设计探讨[J].城市勘测,2005(3):56-59. 被引量:3
  • 3高小青.浅谈水源热泵空调系统的优缺点[J].安装,2005(8):30-32. 被引量:8
  • 4Aller L T, Foster S S D. DRASTIC: standardized system for evaluating ground water pollution potential using hydrogeologic settings [M].[s.l.]: Office of Research Development, US EPA, 1985.
  • 5Ray I A, Odell P W. Diversity: a new method for evaluating sensitivity of groundwater to contamination [J]. Environmental Geology, 1993, 22: 344-352.
  • 6James W M. GIS-based groundwater pollution hazard assessment: a critical review of the DRASTIC model [J]. Photogrammetric Engineering & Remote Sensing, 1994, 60(9): 618-627.
  • 7Rosebaum M S, Nowbuth M D. Aquifer vulnerability assessment through the use of GIS technology [A]. In: Marinos K, ed. Engineering geology and the environment [C]. Rotterdam: Balkema, 1997. 1475-1477.
  • 8Evans B M, Myers M L. A GIS-based approach to evaluating regional groundwater pollution potential with DRASTIC [J]. Journal of Soil and Water Conservation, 1999, 3: 242-245.
  • 9Stournaras G, Valadaki K, Plessas S. Geological environmental data processing using GIS in areas proposed for urban development Argolis, Greece [J]. Engineering Geology and the Environment, 1997, (C): 1499-1504.
  • 10Hirata R C A. Groundwater pollution risk and vulnerability map of the state of Sao paulo, Brazil [J]. Water and Science Technology, 1991.

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