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The Impact of a Heterogeneous Surface on Spatiotemporal Uncertainties of Sensible Heat, Latent Heat, and CO<sub>2</sub>Flux Measured over the Secondary Forest
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作者 Nanami Sakai Daisuke Komori +1 位作者 masafumi kon Wonsik Kim 《Journal of Water Resource and Protection》 2020年第3期171-182,共12页
The turbulent fluxes, such as sensible and latent heat fluxes and CO2 flux, are globally observed over various terrestrial areas in order to understand the interaction between biosphere and atmosphere. Although the tu... The turbulent fluxes, such as sensible and latent heat fluxes and CO2 flux, are globally observed over various terrestrial areas in order to understand the interaction between biosphere and atmosphere. Although the turbulent flux observations are generally performed on a horizontally homogeneous surface, the spatial distribution of the soil moisture is not homogeneous even on cultivated land with homogeneous vegetation, indicating that the development of each plant would be different and that the plant physiology, such as photosynthesis and growth, would be heterogeneous. In this study, to clarify the impact of a heterogeneous surface on spatiotemporal uncertainty of turbulent fluxes, a simultaneous flux observation experiment was conducted at different heights (20 m and 30 m) above the ground surface in a secondary seasonal tropical forest located in the Tak Province, Thailand. We defined ε as the spatial uncertainty of the turbulent flow flux, as proposed by Kim et al. (2011b) [1], and observed that ε of CO2 flux was high, whereas ε of sensible and latent heat fluxes were low. This is likely to be caused by spatial uncertainty such as a heterogeneous surface. The CO2 environment was heterogeneous;however, sensible and latent heat environments were homogeneous because the source area received insolation uniformly. Therefore, the analytical results for the CO2 flux presented a different pattern from those exhibited by the analytical results of the latent and sensible heat fluxes. 展开更多
关键词 EDDY COVARIANCE Fractional Uncertainty Monin-Obukhov Similarity Theory Simultaneous Flux Observation
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GATA4 mutations are uncommon in patients with 46,XY disorders of sex development without heart anomaly
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作者 Maki Igarashi Kentaro Mizuno +5 位作者 masafumi kon Satoshi Narumi Yoshiyuki Kojima Yutaro Hayashi Tsutomu Ogata Maki Fukami 《Asian Journal of Andrology》 SCIE CAS CSCD 2018年第6期629-631,共3页
Dear Editor, Disorders of sex development (DSDs) are a group of conditions in which chromosomal, gonadal, or anatomical sex is atypical.1 DSD in genetic males (46,XY DSD) primarily results from impaired androgen ... Dear Editor, Disorders of sex development (DSDs) are a group of conditions in which chromosomal, gonadal, or anatomical sex is atypical.1 DSD in genetic males (46,XY DSD) primarily results from impaired androgen production or action or perturbed genital morphogenesis? The current understanding of the genetic basis of 46,XY DSD remains fragmentary. For example, although more than 15 genes have been implicated in the development ofnonsyndromic hypospadias,2 one of the most common forms of 46,XY DSD,~ mutations in these genes account for 〈20% of the cases.3 展开更多
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