地球信息科学学报
地毬信息科學學報
지구신식과학학보
GEO-INFORMATION SCIENCE
2013年
4期
527-531
,共5页
气体泄漏扩散模型%地形因子%DEM分辨率%GIS
氣體洩漏擴散模型%地形因子%DEM分辨率%GIS
기체설루확산모형%지형인자%DEM분변솔%GIS
gas leakage and diffusion model%terrain factor%DEM resolution%GIS
突发性毒气泄漏事故的频繁发生对市民的安全造成了极大威胁,有必要对常见毒气泄漏事故发生后的成灾模型进行探讨,以便从理论上指导应急部门实施应急救援行动。本文在研究和分析典型毒气泄漏扩散模型的基础之上,引入地形因子对原有毒气泄漏扩散模型进行改进,使之适应三维地形下的危化品气体扩散模拟,并将模型与GIS集成可视化,分析比较了模型修正前后气体扩散浓度的分布情况。在此基础上,进一步分析了DEM空间分辨率对毒气扩散浓度的分布影响,发现DEM空间分辨率对毒气浓度分布区域有一定影响,并分析了其影响原因。结果表明,加入地形因子的高斯烟羽模型比之前没有考虑地形因子的高斯模型计算要更加精确,更贴近现实状况;同时,DEM分辨率对改进后的高斯烟羽模型的模拟影响较大,选择适当分辨率的DEM能帮助应急部门在短时间内模拟出真实可靠的浓度分布区域,对毒气泄漏事故的应急有一定的实际参考价值和指导意义。
突髮性毒氣洩漏事故的頻繁髮生對市民的安全造成瞭極大威脅,有必要對常見毒氣洩漏事故髮生後的成災模型進行探討,以便從理論上指導應急部門實施應急救援行動。本文在研究和分析典型毒氣洩漏擴散模型的基礎之上,引入地形因子對原有毒氣洩漏擴散模型進行改進,使之適應三維地形下的危化品氣體擴散模擬,併將模型與GIS集成可視化,分析比較瞭模型脩正前後氣體擴散濃度的分佈情況。在此基礎上,進一步分析瞭DEM空間分辨率對毒氣擴散濃度的分佈影響,髮現DEM空間分辨率對毒氣濃度分佈區域有一定影響,併分析瞭其影響原因。結果錶明,加入地形因子的高斯煙羽模型比之前沒有攷慮地形因子的高斯模型計算要更加精確,更貼近現實狀況;同時,DEM分辨率對改進後的高斯煙羽模型的模擬影響較大,選擇適噹分辨率的DEM能幫助應急部門在短時間內模擬齣真實可靠的濃度分佈區域,對毒氣洩漏事故的應急有一定的實際參攷價值和指導意義。
돌발성독기설루사고적빈번발생대시민적안전조성료겁대위협,유필요대상견독기설루사고발생후적성재모형진행탐토,이편종이론상지도응급부문실시응급구원행동。본문재연구화분석전형독기설루확산모형적기출지상,인입지형인자대원유독기설루확산모형진행개진,사지괄응삼유지형하적위화품기체확산모의,병장모형여GIS집성가시화,분석비교료모형수정전후기체확산농도적분포정황。재차기출상,진일보분석료DEM공간분변솔대독기확산농도적분포영향,발현DEM공간분변솔대독기농도분포구역유일정영향,병분석료기영향원인。결과표명,가입지형인자적고사연우모형비지전몰유고필지형인자적고사모형계산요경가정학,경첩근현실상황;동시,DEM분변솔대개진후적고사연우모형적모의영향교대,선택괄당분변솔적DEM능방조응급부문재단시간내모의출진실가고적농도분포구역,대독기설루사고적응급유일정적실제삼고개치화지도의의。
Sudden gas leakage accidents which happened frequently threaten the security of the public heavily and brought great panic to the society. In order to provide great guidance for emergency departments to imple-ment emergency rescue operations theoretically, it is necessary to discuss the model which is used to analyze the pollution of common gas leakage accident. Firstly, to adapt to simulating gas diffusion of the 3D terrain, based on the research and analysis of the typical gas leakage diffusion model, the terrain factors are introduced to re-fine the model in this thesis. Then the model is integrated with GIS, which has an advanced space displaying and spatial analysis ability, for analysis and comparison of gas concentration distribution acquired from the previous model and the improved one respectively. And on that basis, we made a further research on gas concentration dis-tribution situation under the conditions of different DEM spatial resolutions, found that the improvement of DEM spatial resolution has some impact on the gas concentration distribution in 3D terrain conditions, and we analyzed the reasons of its effects. The results of the study reveal that the improved model is more accurate and closer to the real urban 3D terrain conditions. At the same time, the improvement of DEM resolution has a big impact on the simulation of the improved model. So, choosing an appropriate DEM resolution in the right time can help emergency services simulate th gas concentration distribution area more reasonable, reliable and timely, which has a certain practical reference value and guiding significance on gas leakage accident emergency.