In this paper,a fast step heterodyne light-induced thermoelastic spectroscopy(SH-LITES)sensor using a high-frequency quartz tuning fork(QTF)with resonant frequency of~100 kHz is reported for the first time.The theoret...In this paper,a fast step heterodyne light-induced thermoelastic spectroscopy(SH-LITES)sensor using a high-frequency quartz tuning fork(QTF)with resonant frequency of~100 kHz is reported for the first time.The theoretical principle of heterodyne LITES(H-LITES)signal generation is analyzed firstly,and an acetylene(C_(2)H_(2))H-LITES sensor is established to verify its performance.Experimental comparisons between the high-frequency QTF and a standard commercial QTF with resonant frequency of~32.768 kHz reveal that the high-frequency QTF exhibits a tenfold faster response time.Specifically,the H-LITES sensor with this QTF achieves a 33 ms measurement cycle,90%shorter than commercial counterparts.Furthermore,The SH-LITES technique is proposed to further shorten the scanning time to 15 ms,which achieves the shortest LITES measurement time known to date.To demonstrate its advantages in dynamic gas detection,an H_(2)O-LITES system integrating both QTF types is constructed for real-time monitoring of H_(2)O concentration during different respiration patterns.Comparative measurements show that the SH-LITES more accurately captures dynamic H_(2)O concentration fluctuations during respiration,outperforming the commercial QTF-based H-LITES sensor in rapid response scenarios.展开更多
In this work, we introduce position-resolved surface characterization and nanofabrication using an optical microscope(OM) combined with a nanopipette-based quartz tuning fork atomic force microscope(nanopipette/QTF-AF...In this work, we introduce position-resolved surface characterization and nanofabrication using an optical microscope(OM) combined with a nanopipette-based quartz tuning fork atomic force microscope(nanopipette/QTF-AFM) system. This system is used to accurately determine substrate position and nanoscale phenomena under ambient conditions. Solutions consisting of 5 nm Au nanoparticles, nanowires, and polydimethylsiloxane(PDMS) are deposited onto the substrate through the nano/microaperture of a pulled pipette. Nano/microscale patterning is performed using a nanopipette/QTF-AFM, while position is resolved by monitoring the substrate with a custom OM. With this tool, one can perform surface characterization(force spectroscopy/microscopy) using the quartz tuning fork(QTF) sensor. Nanofabrication is achieved by accurately positioning target materials on the surface, and on-demand delivery and patterning of various solutions for molecular architecture.展开更多
Nonlinear wave loads can induce low-frequency and high-frequency resonance motions of a moored platform in deep water. For the analysis of the nonlinear response of an offshore platform under the action of irregular w...Nonlinear wave loads can induce low-frequency and high-frequency resonance motions of a moored platform in deep water. For the analysis of the nonlinear response of an offshore platform under the action of irregular waves, the most widely used method in practice is the Cummins method, in which the second-order exciting forces in the time domain are computed by a two-term Volterra series model based on incident waves, first-order body motion response, and quadratic transfer functions(QTFs). QTFs are bichromatic waves acting on a body and are computed in the frequency domain in advance. For moving bodies, QTFs are related to the first-order body response, which is to be determined in the simulation process of body motion response but is unknown in the computation procedure of QTFs. In solving this problem, Teng and Cong(2017) proposed a method to divide the QTFs into different components,which are unrelated to the body response. With the application of the new QTF components, a modified Cummins method can be developed for the simulation of the nonlinear response of a moored floating platform. This paper presents a review of the theory.展开更多
Gas sensing technology is widely applied in various fields,including environmental monitoring,industrial process control,medical diagnostics,safety warnings,and more.As a detection element,the quartz tuning fork(QTF)o...Gas sensing technology is widely applied in various fields,including environmental monitoring,industrial process control,medical diagnostics,safety warnings,and more.As a detection element,the quartz tuning fork(QTF)offers advantages such as high-quality factor(Q-factor),strong noise immunity,compact size,and low cost.Notably,its resonant characteristics significantly enhance system signal strength.Two spectroscopic techniques based on QTF detection,Quartz-enhanced photoacoustic spectroscopy(QEPAS)and light-induced thermoelastic spectroscopy(LITES),are currently research hotspots in the field of spectral sensing.This paper provides a comprehensive and detailed review and highlights pivotal innovations in these two QTF-based spectroscopic techniques.For QEPAS,these encompass high-power excitation methods,novel excitation sources,advanced QTF detection elements,and acoustic wave amplification strategies.Regarding LITES,the researches on optical cavity-enhanced approaches,modified QTF improvement mechanisms,integration with heterodyne demodulation technique,and combination with QEPAS were analyzed.These advances have enabled quartz-enhanced laser spectroscopy to achieve detection limits ranging from parts-per-billion(ppb)to parts-per-trillion(ppt)levels for trace gases such as methane(CH_(4)),acetylene(C_(2)H_(2)),carbon monoxide(CO),and so on.Additionally,prospects for future technological developments are also discussed in the concluding section.展开更多
本文采用数值计算方法对浅水中海洋平台支持船(OSV)的锚泊定位性能开展研究.首先,基于三维频域势流理论,对一艘OSV不同水深的水动力性能开展分析,计算了水动力系数、运动幅值响应算子、一阶波浪力和二阶波浪力.由于浅水中非线性效应显著...本文采用数值计算方法对浅水中海洋平台支持船(OSV)的锚泊定位性能开展研究.首先,基于三维频域势流理论,对一艘OSV不同水深的水动力性能开展分析,计算了水动力系数、运动幅值响应算子、一阶波浪力和二阶波浪力.由于浅水中非线性效应显著,本文采用中场公式计算了该OSV全二阶波浪力传递函数(Full Quadratic Transfer Function,简称全QTF).然后,本文对不同水深下锚泊系统的水平刚度开展了分析,计算了不同水深下锚泊系统的水平刚度,研究了水深对锚泊系统水平刚度的影响.最后,采用准动态方法对不同水深下的OSV和锚泊系统开展时域分析,研究了水深对船体运动性能和锚索张力的影响.展开更多
Objective To observe the clinical efficacy of Qinggan Tongru Formula(QTF)and probiotics(Clostridium butyricum Capsules)alone or in combination for lactational acute mastitis(AM),and to explore their effects on breast ...Objective To observe the clinical efficacy of Qinggan Tongru Formula(QTF)and probiotics(Clostridium butyricum Capsules)alone or in combination for lactational acute mastitis(AM),and to explore their effects on breast milk microbiota.Methods A total of 177 patients with AM during lactation(Gan-Wei stagnant heat syndrome)who visited the outpatient department of First Affiliated Hospital.展开更多
基金financial supports from the National Natural Science Foundation of China(Grant No.62335006,62275065,624B2050,62022032,and 62405078)Open Subject of Hebei Key Laboratory of Advanced Laser Technology and Equipment(HBKL-ALTE2025001)+2 种基金Heilongjiang Postdoctoral Fund(Grant No.LBH-Z23144 and LBH-Z24155)Natural Science Foundation of Heilongjiang Province(Grant No.LH2024F031)China Postdoctoral Science Foundation(Grant No.2024M764172).
文摘In this paper,a fast step heterodyne light-induced thermoelastic spectroscopy(SH-LITES)sensor using a high-frequency quartz tuning fork(QTF)with resonant frequency of~100 kHz is reported for the first time.The theoretical principle of heterodyne LITES(H-LITES)signal generation is analyzed firstly,and an acetylene(C_(2)H_(2))H-LITES sensor is established to verify its performance.Experimental comparisons between the high-frequency QTF and a standard commercial QTF with resonant frequency of~32.768 kHz reveal that the high-frequency QTF exhibits a tenfold faster response time.Specifically,the H-LITES sensor with this QTF achieves a 33 ms measurement cycle,90%shorter than commercial counterparts.Furthermore,The SH-LITES technique is proposed to further shorten the scanning time to 15 ms,which achieves the shortest LITES measurement time known to date.To demonstrate its advantages in dynamic gas detection,an H_(2)O-LITES system integrating both QTF types is constructed for real-time monitoring of H_(2)O concentration during different respiration patterns.Comparative measurements show that the SH-LITES more accurately captures dynamic H_(2)O concentration fluctuations during respiration,outperforming the commercial QTF-based H-LITES sensor in rapid response scenarios.
基金supported by the National Research Foundation of Korea (NRF) grant funded by the Korea government (MSIP) (2013-056344)Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education,Science and Technology (2013R1A6A3A03063900)+1 种基金support from Center for Nano-Liquidsupport from the National Science Foundation OISE Grant #0853104
文摘In this work, we introduce position-resolved surface characterization and nanofabrication using an optical microscope(OM) combined with a nanopipette-based quartz tuning fork atomic force microscope(nanopipette/QTF-AFM) system. This system is used to accurately determine substrate position and nanoscale phenomena under ambient conditions. Solutions consisting of 5 nm Au nanoparticles, nanowires, and polydimethylsiloxane(PDMS) are deposited onto the substrate through the nano/microaperture of a pulled pipette. Nano/microscale patterning is performed using a nanopipette/QTF-AFM, while position is resolved by monitoring the substrate with a custom OM. With this tool, one can perform surface characterization(force spectroscopy/microscopy) using the quartz tuning fork(QTF) sensor. Nanofabrication is achieved by accurately positioning target materials on the surface, and on-demand delivery and patterning of various solutions for molecular architecture.
基金the National Key R&D Program of China (Grant No.2016YFE0200100)the National Natural Science Foundation of China (Grant Nos.51490672 and 51479026).
文摘Nonlinear wave loads can induce low-frequency and high-frequency resonance motions of a moored platform in deep water. For the analysis of the nonlinear response of an offshore platform under the action of irregular waves, the most widely used method in practice is the Cummins method, in which the second-order exciting forces in the time domain are computed by a two-term Volterra series model based on incident waves, first-order body motion response, and quadratic transfer functions(QTFs). QTFs are bichromatic waves acting on a body and are computed in the frequency domain in advance. For moving bodies, QTFs are related to the first-order body response, which is to be determined in the simulation process of body motion response but is unknown in the computation procedure of QTFs. In solving this problem, Teng and Cong(2017) proposed a method to divide the QTFs into different components,which are unrelated to the body response. With the application of the new QTF components, a modified Cummins method can be developed for the simulation of the nonlinear response of a moored floating platform. This paper presents a review of the theory.
基金supports from the National Natural Science Foundation of China(Grant No.62335006,62275065,62022032,62405078,and 62505066)Open Subject of Hebei Key Laboratory of Advanced Laser Technology and Equipment(HBKL-ALTE2025001)+2 种基金Heilongjiang Postdoctoral Fund(Grant No.LBH-Z23144 and LBH-Z24155)Natural Science Foundation of Heilongjiang Province(Grant No.LH2024F031)China Postdoctoral Science Foundation(Grant No.2024M764172).
文摘Gas sensing technology is widely applied in various fields,including environmental monitoring,industrial process control,medical diagnostics,safety warnings,and more.As a detection element,the quartz tuning fork(QTF)offers advantages such as high-quality factor(Q-factor),strong noise immunity,compact size,and low cost.Notably,its resonant characteristics significantly enhance system signal strength.Two spectroscopic techniques based on QTF detection,Quartz-enhanced photoacoustic spectroscopy(QEPAS)and light-induced thermoelastic spectroscopy(LITES),are currently research hotspots in the field of spectral sensing.This paper provides a comprehensive and detailed review and highlights pivotal innovations in these two QTF-based spectroscopic techniques.For QEPAS,these encompass high-power excitation methods,novel excitation sources,advanced QTF detection elements,and acoustic wave amplification strategies.Regarding LITES,the researches on optical cavity-enhanced approaches,modified QTF improvement mechanisms,integration with heterodyne demodulation technique,and combination with QEPAS were analyzed.These advances have enabled quartz-enhanced laser spectroscopy to achieve detection limits ranging from parts-per-billion(ppb)to parts-per-trillion(ppt)levels for trace gases such as methane(CH_(4)),acetylene(C_(2)H_(2)),carbon monoxide(CO),and so on.Additionally,prospects for future technological developments are also discussed in the concluding section.
文摘本文采用数值计算方法对浅水中海洋平台支持船(OSV)的锚泊定位性能开展研究.首先,基于三维频域势流理论,对一艘OSV不同水深的水动力性能开展分析,计算了水动力系数、运动幅值响应算子、一阶波浪力和二阶波浪力.由于浅水中非线性效应显著,本文采用中场公式计算了该OSV全二阶波浪力传递函数(Full Quadratic Transfer Function,简称全QTF).然后,本文对不同水深下锚泊系统的水平刚度开展了分析,计算了不同水深下锚泊系统的水平刚度,研究了水深对锚泊系统水平刚度的影响.最后,采用准动态方法对不同水深下的OSV和锚泊系统开展时域分析,研究了水深对船体运动性能和锚索张力的影响.
文摘Objective To observe the clinical efficacy of Qinggan Tongru Formula(QTF)and probiotics(Clostridium butyricum Capsules)alone or in combination for lactational acute mastitis(AM),and to explore their effects on breast milk microbiota.Methods A total of 177 patients with AM during lactation(Gan-Wei stagnant heat syndrome)who visited the outpatient department of First Affiliated Hospital.