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    <title>Journal of Earth Science</title>
    <link>http://en.earth-science.net/</link>
    <description>Journal of Earth Science</description>
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    <syn:updateFrequency>15</syn:updateFrequency>
    <syn:updateBase>$dateUtil.getCurrentDateTime("yyyy-MM-dd HH:mm:ss","zh")</syn:updateBase>
    <dc:creator>xbb@cug.edu.cn</dc:creator>
    <dc:publisher>xbb@cug.edu.cn</dc:publisher>
    <dc:date>$dateUtil.getCurrentDateTime("yyyy-MM-dd HH:mm:ss","zh")</dc:date>
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    <prism:issn>1674-487X</prism:issn>
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		<rdf:li rdf:resource="http://en.earth-science.net/article/id/175"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/176"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/177"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/178"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/179"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/180"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/181"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/182"/><rdf:li rdf:resource="http://en.earth-science.net/article/id/183"/>		</rdf:Seq>
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    <item rdf:about="http://en.earth-science.net/article/id/175">
    <title><![CDATA[An Analysis of Groundwater in Sinjar Plain (Northwest of Iraq) Using WQI Model]]></title>
    <link>http://en.earth-science.net/article/id/175</link>    <description>
		<![CDATA[
			Bassam F Al Bassam, Ayad M Fadhil
			&lt;br/&gt;&lt;p&gt;Sinjarplain~northwestIraqhasanabundantamountofgroundwater.Duetotheimportanceofthiswatersource,thewaterqualityindex(WQI)modelwasusedintheclassificationofgroundwaterinthewesternandeasternregionsofSinjarplainforbeneficialuse.GroundwatersampleswerechemicallyanalyzedtocalculatethevaluesofWQI.Thismodelconsistsofasinglenumberoftheintegrateddeviationfromstandardquality,whichindicatestherelativeimportanceofeachrelevantvariableforbeneficialuse.TheresultsindicatethattheWQIcouldbeusedtodeterminetheparticularusesofgroundwater.ThegroundwaterintheSinjarplainismoresuitableforirrigationthanitisforlivestockdrinkinganddomesticuse.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Bassam F Al Bassam, Ayad M Fadhil
			&lt;br/&gt;&lt;p&gt;Sinjarplain~northwestIraqhasanabundantamountofgroundwater.Duetotheimportanceofthiswatersource,thewaterqualityindex(WQI)modelwasusedintheclassificationofgroundwaterinthewesternandeasternregionsofSinjarplainforbeneficialuse.GroundwatersampleswerechemicallyanalyzedtocalculatethevaluesofWQI.Thismodelconsistsofasinglenumberoftheintegrateddeviationfromstandardquality,whichindicatestherelativeimportanceofeachrelevantvariableforbeneficialuse.TheresultsindicatethattheWQIcouldbeusedtodeterminetheparticularusesofgroundwater.ThegroundwaterintheSinjarplainismoresuitableforirrigationthanitisforlivestockdrinkinganddomesticuse.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[An Analysis of Groundwater in Sinjar Plain (Northwest of Iraq) Using WQI Model]]></dc:title>
    <dc:creator><![CDATA[Bassam F Al Bassam, Ayad M Fadhil]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/175</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/176">
    <title><![CDATA[Environmental Geochemistry of Mining Activities in Panzhihua Region, Southwestern China]]></title>
    <link>http://en.earth-science.net/article/id/176</link>    <description>
		<![CDATA[
			Teng Yanguo, Tuo Xianguo, Ni Shijun, Zhang Chengjiang, Ma Yuxiao
			&lt;br/&gt;&lt;p&gt;Miningactivitieshavecreatedhugeuncoveredslopes,largeareasofganguegroundandextensivetailingsdams.ThispaperpresentstheenvironmentalgeochemistryofminingactivitiesinPanzhihuaregion.Theselectedelements(Ti,V,Mo,Ni,Pb,Cu)showsimilardistributionpatternsofconcentrationanomalyintopsoil.TheseconcentrationanomaliesarelocatedinV~Ti~magnetiteslope,ganguesdamandcoalmine.Thedistinctionbetweenanthropogeniccontaminationandnaturalbackgroundismadeavailablebytheuseoftheenrichmentfactorinthisstudyarea.TheanomaliesofEFweresmallerthanthatofconcentration.TheresultsfromEFshowthattheselectedelementsanthropogenicpollution（EF&gt;1）intopsoilwerelocatedinboththecoalminingareaandtheV~Ti~magnetiteminingarea.Inaddition,thepollutionsourcesofselectedelementscamefromV~Ti~magnetite,slag,gangues,coalandotherpollutantsfromminingactivities.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Teng Yanguo, Tuo Xianguo, Ni Shijun, Zhang Chengjiang, Ma Yuxiao
			&lt;br/&gt;&lt;p&gt;Miningactivitieshavecreatedhugeuncoveredslopes,largeareasofganguegroundandextensivetailingsdams.ThispaperpresentstheenvironmentalgeochemistryofminingactivitiesinPanzhihuaregion.Theselectedelements(Ti,V,Mo,Ni,Pb,Cu)showsimilardistributionpatternsofconcentrationanomalyintopsoil.TheseconcentrationanomaliesarelocatedinV~Ti~magnetiteslope,ganguesdamandcoalmine.Thedistinctionbetweenanthropogeniccontaminationandnaturalbackgroundismadeavailablebytheuseoftheenrichmentfactorinthisstudyarea.TheanomaliesofEFweresmallerthanthatofconcentration.TheresultsfromEFshowthattheselectedelementsanthropogenicpollution（EF&gt;1）intopsoilwerelocatedinboththecoalminingareaandtheV~Ti~magnetiteminingarea.Inaddition,thepollutionsourcesofselectedelementscamefromV~Ti~magnetite,slag,gangues,coalandotherpollutantsfromminingactivities.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[Environmental Geochemistry of Mining Activities in Panzhihua Region, Southwestern China]]></dc:title>
    <dc:creator><![CDATA[Teng Yanguo, Tuo Xianguo, Ni Shijun, Zhang Chengjiang, Ma Yuxiao]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/176</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/177">
    <title><![CDATA[Research on NonLinear Dynamic Characteristics of Structures Supported on Slide~Limited Friction Base Isolation System]]></title>
    <link>http://en.earth-science.net/article/id/177</link>    <description>
		<![CDATA[
			Fan  Jian, Tang Jiaxiang
			&lt;br/&gt;&lt;p&gt;Thispaperpresentsanewtypeofbaseisolationsystem,i.e.,slide~limitedfriction(S~LF)baseisolationsystem.Basedonthissystem,theharmonicandsubharmonicperiodicresponseofS~LFsubjectedtoharmonicmotionsisinvestigatedbyusingFourier~Galerkin~Newton(FGN)methodwithFloquettheory.ThedynamicresponseofS~LFsubjectedtoearthquakegroundmotionsiscalculatedwithahighorderprecisiondirectintegrationmethod,andthenumericalresultsarepresentedinmaximumaccelerationresponsespectraofsuperstructureandmaximumslidingdisplacementresponsespectrumform.ThecomparisonofisolatingeffectsofS~LF,pure~frictionbaseisolationsystem(P~F)andresilientfrictionbaseisolationsystem(R~FBI)showsthattheisolatingpropertyofS~LFissuperiortothoseofP~FandR~FBI.Finallybyanalyzinganengineeringexample,itisobservedthatthedistributionofthemaximumshearbetweenfloorsandabsoluteaccelerationofS~LFtoearthquakegroundmotionisverydifferentfromthatoftraditionalstructures.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Fan  Jian, Tang Jiaxiang
			&lt;br/&gt;&lt;p&gt;Thispaperpresentsanewtypeofbaseisolationsystem,i.e.,slide~limitedfriction(S~LF)baseisolationsystem.Basedonthissystem,theharmonicandsubharmonicperiodicresponseofS~LFsubjectedtoharmonicmotionsisinvestigatedbyusingFourier~Galerkin~Newton(FGN)methodwithFloquettheory.ThedynamicresponseofS~LFsubjectedtoearthquakegroundmotionsiscalculatedwithahighorderprecisiondirectintegrationmethod,andthenumericalresultsarepresentedinmaximumaccelerationresponsespectraofsuperstructureandmaximumslidingdisplacementresponsespectrumform.ThecomparisonofisolatingeffectsofS~LF,pure~frictionbaseisolationsystem(P~F)andresilientfrictionbaseisolationsystem(R~FBI)showsthattheisolatingpropertyofS~LFissuperiortothoseofP~FandR~FBI.Finallybyanalyzinganengineeringexample,itisobservedthatthedistributionofthemaximumshearbetweenfloorsandabsoluteaccelerationofS~LFtoearthquakegroundmotionisverydifferentfromthatoftraditionalstructures.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[Research on NonLinear Dynamic Characteristics of Structures Supported on Slide~Limited Friction Base Isolation System]]></dc:title>
    <dc:creator><![CDATA[Fan  Jian, Tang Jiaxiang]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/177</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/178">
    <title><![CDATA[A Test Model of Water Pressures within a Fault in Rock Slope]]></title>
    <link>http://en.earth-science.net/article/id/178</link>    <description>
		<![CDATA[
			Yang Tong, Wang Baoxue, Hu Heng
			&lt;br/&gt;&lt;p&gt;Thispaperintroducesmodeltestresultsofwaterpressureinafault,whichislocatedinaslopeandin16differentconditions.Theresultsshowthatthewaterpressuresinfaultcanbeexpressedbyalinearfunction,whichissimilartothetheoreticalmodelsuggestedbyHoek.Factorsaffectingwaterpressuresarewaterlevelintensioncrack,dipangleoffault,theheightoffillingmaterials,andthicknessoffaultzoneinsequence.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Yang Tong, Wang Baoxue, Hu Heng
			&lt;br/&gt;&lt;p&gt;Thispaperintroducesmodeltestresultsofwaterpressureinafault,whichislocatedinaslopeandin16differentconditions.Theresultsshowthatthewaterpressuresinfaultcanbeexpressedbyalinearfunction,whichissimilartothetheoreticalmodelsuggestedbyHoek.Factorsaffectingwaterpressuresarewaterlevelintensioncrack,dipangleoffault,theheightoffillingmaterials,andthicknessoffaultzoneinsequence.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[A Test Model of Water Pressures within a Fault in Rock Slope]]></dc:title>
    <dc:creator><![CDATA[Yang Tong, Wang Baoxue, Hu Heng]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/178</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/179">
    <title><![CDATA[Research on Practicability and Feasibility for a New~Type Tuned Mass Damper System—TMD]]></title>
    <link>http://en.earth-science.net/article/id/179</link>    <description>
		<![CDATA[
			Zhang  Yaoting, Tang  Jiaxiang
			&lt;br/&gt;&lt;p&gt;Basedontheprincipleoftunnedmassdamper(TMD),themethodofusinglaminatedrubberbearing(LRB)toconnectTMDwithstructureisdiscussedinthispaper.ThisisanewtypeofTMDsystem~suspendedstructure.Totestitsfunctionofquake~reductionanditspossibilityofapplication,thispaperexploresthesuspendedtopfloorthroughshakingtabletest.Inthemodeltest,anelector~hydraulicshakingtablewasused.Themainstructuremodelwasafour~storysteelframestructure.Theblocktocombatthestructuralquakewasaconcreteblock.LRBwasusedtoconnecttheblocktothemainstructure.InordertoanalyzetheefficiencyofTMD,thefundamentalfrequenciesofthemainstructureandblockofTMDweremeasuredseparatelyfirst.Thenthefrequenciesofthemainstructurewiththeblockandwithouttheblockwerecomparedrespectivelyundersineandimitativequakewaves.Thetestshowsthatthisnew~typeTMDsystemiseffectiveincombatingthestructuralquakeoftenreducingtheaccelerationofthetopfloorbymorethan25%.Becauseoftheeasyavailabilityofthemethod,itisendowedwithpracticalfeasibility&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Zhang  Yaoting, Tang  Jiaxiang
			&lt;br/&gt;&lt;p&gt;Basedontheprincipleoftunnedmassdamper(TMD),themethodofusinglaminatedrubberbearing(LRB)toconnectTMDwithstructureisdiscussedinthispaper.ThisisanewtypeofTMDsystem~suspendedstructure.Totestitsfunctionofquake~reductionanditspossibilityofapplication,thispaperexploresthesuspendedtopfloorthroughshakingtabletest.Inthemodeltest,anelector~hydraulicshakingtablewasused.Themainstructuremodelwasafour~storysteelframestructure.Theblocktocombatthestructuralquakewasaconcreteblock.LRBwasusedtoconnecttheblocktothemainstructure.InordertoanalyzetheefficiencyofTMD,thefundamentalfrequenciesofthemainstructureandblockofTMDweremeasuredseparatelyfirst.Thenthefrequenciesofthemainstructurewiththeblockandwithouttheblockwerecomparedrespectivelyundersineandimitativequakewaves.Thetestshowsthatthisnew~typeTMDsystemiseffectiveincombatingthestructuralquakeoftenreducingtheaccelerationofthetopfloorbymorethan25%.Becauseoftheeasyavailabilityofthemethod,itisendowedwithpracticalfeasibility&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[Research on Practicability and Feasibility for a New~Type Tuned Mass Damper System—TMD]]></dc:title>
    <dc:creator><![CDATA[Zhang  Yaoting, Tang  Jiaxiang]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/179</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/180">
    <title><![CDATA[Fuzzy Decision of Ground Improvement Method]]></title>
    <link>http://en.earth-science.net/article/id/180</link>    <description>
		<![CDATA[
			Feng Zhongren, Han Bing, Zhu Ruigeng
			&lt;br/&gt;&lt;p&gt;WiththerapiddevelopmentofexpresswayinChina,thegroundimprovementisbecomingmoreandmoreimportant.Thedecisionofthegroundimprovementmethodoftendependsontheexperienceofanengineer.Thispapersetsupamoduleofmultilevelfuzzydecisionofthegroundimprovementmethodintheexpresswayconstructionwhichismainlytosetupmulti~levelstructuremodule,togetvalueoftheaffectedfactorsatrulelevelandindexlevel,tosetupthecharacterindexmatrixofprojectlevelandtohaveatotalevaluationontheprojects.CombinedwiththeprojectofgroundimprovementontheSecondCinctureRoadinWuhan,acasestudyiscarriedoutwithsatisfactoryresults.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Feng Zhongren, Han Bing, Zhu Ruigeng
			&lt;br/&gt;&lt;p&gt;WiththerapiddevelopmentofexpresswayinChina,thegroundimprovementisbecomingmoreandmoreimportant.Thedecisionofthegroundimprovementmethodoftendependsontheexperienceofanengineer.Thispapersetsupamoduleofmultilevelfuzzydecisionofthegroundimprovementmethodintheexpresswayconstructionwhichismainlytosetupmulti~levelstructuremodule,togetvalueoftheaffectedfactorsatrulelevelandindexlevel,tosetupthecharacterindexmatrixofprojectlevelandtohaveatotalevaluationontheprojects.CombinedwiththeprojectofgroundimprovementontheSecondCinctureRoadinWuhan,acasestudyiscarriedoutwithsatisfactoryresults.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[Fuzzy Decision of Ground Improvement Method]]></dc:title>
    <dc:creator><![CDATA[Feng Zhongren, Han Bing, Zhu Ruigeng]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/180</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/181">
    <title><![CDATA[Applied Sequence Stratigraphy  in Nonmarine Basin of China]]></title>
    <link>http://en.earth-science.net/article/id/181</link>    <description>
		<![CDATA[
			Wei Kuisheng, Li Daliang, Zhang Shoupeng, Hao Yunqing, Du Zhenchuan, Zong Guohong, Qiu Yigang, et al.
			&lt;br/&gt;&lt;p&gt;ThispaperpresentsapreliminarysummaryoftheappliedsequencestratigraphyinnonmarinebasinsinChina.Thegeologicalandthegeophysicaldatashowthatthenonmarinesequencesresultedmainlyfrombothallocyclicandautocyclicprocesseswherethemostimportantfactorswereisolatedtectonicsandclimate.However,theenvironmentalfactorshouldhavebeencrucial.Thedepositionalbaselevelservedasthesealevelinthemarineenvironment,whilethewatertable,lakelevelandfluvialequilibriumwereprofiledinaterrigenousenvironment.Thisaccommodationvariedperiodicallywiththebaselevel,resultingintheformationofaseriesofdepositionalsequencesintermsofgenesisandspace.Basically,thebaseleveloftheinnercontinentwasnotaffectedbythechangesintherelativesealevel.Buttherewouldhavebeensomerelationsbetweenthechangeintherelativesealevelandthatinthecontinentalbaselevelduringeustacyflooding.However,asmalltimelagexistedbetweenthechangeinthemarinebasinandthatintheinnercontinentbasin.Thelakebasinissmallerthanthemarinebasin,butitsvelocityofsedimentsupplyisgreaterthanthatofthemarinebasin,therefore,thenumberofnonmarinesequencesisgreaterthanthatofmarineonesinthesameperiod.Itisimportanttorecognizethesystemtractsforthestudyofhigh~precisionorhigh~resolutionsequencestratigraphy,especiallytoanalyzethelow~standsystemstractwithitsdepositionalsystem.Thesequenceboundaryisgeneticallycharacterizedbysubaerialexposure,stratigraphictruncationandsubaqueouserosion.ThedepositionanalysisofZhanhuadepressionreveals5sequencearchitectures:alluvial~fluvial/lacustrinearchitecture,transitionalarchitectureformedbetweenhaline(mesohaline)lakeandfreshlake,marineduration~deeplacustrinearchitecture,halfdeeplacustrine~ramparchitectureandfluvial~alluvialplainarchitecture.Duringthemajordevelopmentofthenonmarinebasin,thestep~faultingbreakscontrolledthedepositionalsystem.Usually,thelow~standcomplexfan,progradingwedgeandhigh~standturbidityfanwereclosetothethirdsteppingbreak.Inthelow~standperiodthesedimentswentaroundtheincisedvalleyswhichthenwerefilledwithsandbarnearthe&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2001-04-01
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Wei Kuisheng, Li Daliang, Zhang Shoupeng, Hao Yunqing, Du Zhenchuan, Zong Guohong, Qiu Yigang, et al.
			&lt;br/&gt;&lt;p&gt;ThispaperpresentsapreliminarysummaryoftheappliedsequencestratigraphyinnonmarinebasinsinChina.Thegeologicalandthegeophysicaldatashowthatthenonmarinesequencesresultedmainlyfrombothallocyclicandautocyclicprocesseswherethemostimportantfactorswereisolatedtectonicsandclimate.However,theenvironmentalfactorshouldhavebeencrucial.Thedepositionalbaselevelservedasthesealevelinthemarineenvironment,whilethewatertable,lakelevelandfluvialequilibriumwereprofiledinaterrigenousenvironment.Thisaccommodationvariedperiodicallywiththebaselevel,resultingintheformationofaseriesofdepositionalsequencesintermsofgenesisandspace.Basically,thebaseleveloftheinnercontinentwasnotaffectedbythechangesintherelativesealevel.Buttherewouldhavebeensomerelationsbetweenthechangeintherelativesealevelandthatinthecontinentalbaselevelduringeustacyflooding.However,asmalltimelagexistedbetweenthechangeinthemarinebasinandthatintheinnercontinentbasin.Thelakebasinissmallerthanthemarinebasin,butitsvelocityofsedimentsupplyisgreaterthanthatofthemarinebasin,therefore,thenumberofnonmarinesequencesisgreaterthanthatofmarineonesinthesameperiod.Itisimportanttorecognizethesystemtractsforthestudyofhigh~precisionorhigh~resolutionsequencestratigraphy,especiallytoanalyzethelow~standsystemstractwithitsdepositionalsystem.Thesequenceboundaryisgeneticallycharacterizedbysubaerialexposure,stratigraphictruncationandsubaqueouserosion.ThedepositionanalysisofZhanhuadepressionreveals5sequencearchitectures:alluvial~fluvial/lacustrinearchitecture,transitionalarchitectureformedbetweenhaline(mesohaline)lakeandfreshlake,marineduration~deeplacustrinearchitecture,halfdeeplacustrine~ramparchitectureandfluvial~alluvialplainarchitecture.Duringthemajordevelopmentofthenonmarinebasin,thestep~faultingbreakscontrolledthedepositionalsystem.Usually,thelow~standcomplexfan,progradingwedgeandhigh~standturbidityfanwereclosetothethirdsteppingbreak.Inthelow~standperiodthesedimentswentaroundtheincisedvalleyswhichthenwerefilledwithsandbarnearthe&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2001-04-01
		]]>
	</content:encoded>
    <dc:title><![CDATA[Applied Sequence Stratigraphy  in Nonmarine Basin of China]]></dc:title>
    <dc:creator><![CDATA[Wei Kuisheng, Li Daliang, Zhang Shoupeng, Hao Yunqing, Du Zhenchuan, Zong Guohong, Qiu Yigang, et al.]]></dc:creator>
    <dc:date>2001-04-01</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2001-04-01</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/181</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/182">
    <title><![CDATA[An Improved Method for Calculating Paleoheat Flow from Vitrinite Reflectance Profiles]]></title>
    <link>http://en.earth-science.net/article/id/182</link>    <description>
		<![CDATA[
			Tang Zhonghua, Wu Yonghong, Sheng, Siew P F
			&lt;br/&gt;&lt;p&gt;BasedonthemodelsdevelopedbyLerche(1984)andPangetal.(1993),animprovedmodelforcalculatingpaleoheatflowintobasinsisinvestigated.Thenewmodelisanoptimizationproblemwiththestatevariablesgovernedbyathermalconductionequation.Ageneticalgorithmisusedtosolvethehighlynonlinearoptimizationproblem.Asanapplication,themodelisappliedtotheresearchintothehistoryofheatflowinthePearlRiverMouthbasinlocatedintheSouthChinaSea.Thenumericalanalysisshowsthatthesimulationresultsareingoodagreementwiththemeasureddataandindicatesthatthebasinmayhaveundergonethreeriftingandthermalevents.ItisalsodemonstratedthatahighRogradientreflectsaresponsetohighpaleoheatflowduringtheearly,rapidsubsidencestage,whilealowRogradientisaresultofthethermaldecayduringthethermalsubsidencebecauseofthermalcontractionofacoolinglithosphere.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Tang Zhonghua, Wu Yonghong, Sheng, Siew P F
			&lt;br/&gt;&lt;p&gt;BasedonthemodelsdevelopedbyLerche(1984)andPangetal.(1993),animprovedmodelforcalculatingpaleoheatflowintobasinsisinvestigated.Thenewmodelisanoptimizationproblemwiththestatevariablesgovernedbyathermalconductionequation.Ageneticalgorithmisusedtosolvethehighlynonlinearoptimizationproblem.Asanapplication,themodelisappliedtotheresearchintothehistoryofheatflowinthePearlRiverMouthbasinlocatedintheSouthChinaSea.Thenumericalanalysisshowsthatthesimulationresultsareingoodagreementwiththemeasureddataandindicatesthatthebasinmayhaveundergonethreeriftingandthermalevents.ItisalsodemonstratedthatahighRogradientreflectsaresponsetohighpaleoheatflowduringtheearly,rapidsubsidencestage,whilealowRogradientisaresultofthethermaldecayduringthethermalsubsidencebecauseofthermalcontractionofacoolinglithosphere.&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[An Improved Method for Calculating Paleoheat Flow from Vitrinite Reflectance Profiles]]></dc:title>
    <dc:creator><![CDATA[Tang Zhonghua, Wu Yonghong, Sheng, Siew P F]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/182</prism:url>	<prism:startingPage></prism:startingPage>
  </item>
    <item rdf:about="http://en.earth-science.net/article/id/183">
    <title><![CDATA[Model Tests of Pile Defect Detection]]></title>
    <link>http://en.earth-science.net/article/id/183</link>    <description>
		<![CDATA[
			Li Guocheng, Wang Jingtao
			&lt;br/&gt;&lt;p&gt;&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</description>
    <content:encoded>
		<![CDATA[
			Li Guocheng, Wang Jingtao
			&lt;br/&gt;&lt;p&gt;&lt;/p&gt;
			      					&lt;br/&gt;Journal of Earth Science. 2001 12(4): . Published: 2018-07-15
		]]>
	</content:encoded>
    <dc:title><![CDATA[Model Tests of Pile Defect Detection]]></dc:title>
    <dc:creator><![CDATA[Li Guocheng, Wang Jingtao]]></dc:creator>
    <dc:date>2018-07-15</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Journal of Earth Science. 2001 12(4): .</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:</dc:identifier>
    <prism:doi></prism:doi>
    <prism:publicationName>Journal of Earth Science</prism:publicationName>
    <prism:volume>12</prism:volume>
    <prism:number>4</prism:number>
    <prism:publicationDate>2018-07-15</prism:publicationDate>
	<prism:url>http://en.earth-science.net/article/id/183</prism:url>	<prism:startingPage></prism:startingPage>
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