The sand architecture interpretation and modeling of the different orders sedimentary bodies are of great significance to the efficient development of the unconventional reservoir. However, sand architecture interpretation and modeling using a small amount of observation information are extraordinarily difficult. The X36 gas field in Xihu Sag was taken as an example to study the distribution and superimposition characteristics of sandbodies under the influence of tides. A set of architecture characterization and modeling methods suitable for the condition of few wells was proposed. Firstly, a variety of seismic attributes from the original seismic data were extracted. And the correlations between seismic attributes and sandstone thickness interpreted by logging were fitted. Then, the seismic attributes with high correlation were classified and integrated to calculate the fusion seismic attributes. The fusion seismic attribute has a higher correlation with sandstone thickness. The boundary of the sandstone in the fusion seismic attribute is clearer than a single attribute. The sand body distribution model of the study area was established with the constraints of fusion seismic attribute and the distance attribute volume. The results showed that the sand body distribution in the model was more consistent with the sand body development model under the influence of the tide. The results can guide architecture characterization and remaining oil potential tapping of the oil and gas fields offshore.