山东建筑大学学报
山東建築大學學報
산동건축대학학보
JOURNAL OF SHANDONG JIANZHU UNIVERSITY
2014年
4期
325-330
,共6页
朱昶%何平%张岩%宋月梅
硃昶%何平%張巖%宋月梅
주창%하평%장암%송월매
地热资源%热储层%复合地热%资源利用
地熱資源%熱儲層%複閤地熱%資源利用
지열자원%열저층%복합지열%자원이용
geothermal resource%geothermal reservoir%compound thermal reservoir%resource utilization
地热能是一种新的洁净能源,地热资源的有效利用是解决当今能源耗竭的重要途径和手段。文章通过对曹县城区孔隙、岩溶裂隙型含水热储层及复合热储层赋存的分析,估算了研究区内各热储温度、地热资源总量、可利用地热资源量和地下热水的热流量,评价分析了总能量热物理性参数及地热流体的质量。结果表明:新近纪明化镇地下热水可开采量为303.53万m3/a;奥陶纪热储层地下热水可开采量为176.95万m3/a,开采年限为100 a。最有利用价值的是复合性热储层,热储类型均为层状承压型。其地热资源条件良好,开采潜力较大,地热资源利用价值高,可做进一步的开发和利用。
地熱能是一種新的潔淨能源,地熱資源的有效利用是解決噹今能源耗竭的重要途徑和手段。文章通過對曹縣城區孔隙、巖溶裂隙型含水熱儲層及複閤熱儲層賦存的分析,估算瞭研究區內各熱儲溫度、地熱資源總量、可利用地熱資源量和地下熱水的熱流量,評價分析瞭總能量熱物理性參數及地熱流體的質量。結果錶明:新近紀明化鎮地下熱水可開採量為303.53萬m3/a;奧陶紀熱儲層地下熱水可開採量為176.95萬m3/a,開採年限為100 a。最有利用價值的是複閤性熱儲層,熱儲類型均為層狀承壓型。其地熱資源條件良好,開採潛力較大,地熱資源利用價值高,可做進一步的開髮和利用。
지열능시일충신적길정능원,지열자원적유효이용시해결당금능원모갈적중요도경화수단。문장통과대조현성구공극、암용렬극형함수열저층급복합열저층부존적분석,고산료연구구내각열저온도、지열자원총량、가이용지열자원량화지하열수적열류량,평개분석료총능량열물이성삼수급지열류체적질량。결과표명:신근기명화진지하열수가개채량위303.53만m3/a;오도기열저층지하열수가개채량위176.95만m3/a,개채년한위100 a。최유이용개치적시복합성열저층,열저류형균위층상승압형。기지열자원조건량호,개채잠력교대,지열자원이용개치고,가주진일보적개발화이용。
Geothermal energy is just a kind of new clean energy and its efficient utilization is one of the most effective way to solve today's energy depletion. Through the analysis of the occurance characteristics of aquifier reservoir and compound reservoir with the type of porosity and karst fractured,the paper estimated the temperature of geothermal reservoirs, geothermal resource, available geothermal resource and heat flux of geothermal water,made an evaluation analysis of the total energy and quality of geothermal fluid. The results show that the exploitable geothermal water in Minghuazhen of Neogene is 3035300 m3/a,and in Cambrian-Ordovician the exploitable geothermal water is 1769500 m3/a. Exploitation of period is 100 years. Compound thermal reservoir is the most valuable reservoir,which is layered bearing type. The geothermal resource has larger mining potential and high geothermal resource utilization value,suitable to do further development and utilization.